id	sid	tid	token	lemma	pos
dss-63	1	1	microsoft	microsoft	PROPN
dss-63	1	2	word	word	PROPN
dss-63	1	3	1-15_63.docx	1-15_63.docx	NUM
dss-63	1	4	defense	defense	NOUN
dss-63	1	5	and	and	CCONJ
dss-63	1	6	security	security	NOUN
dss-63	1	7	studies	study	NOUN
dss-63	1	8	issn	issn	VERB
dss-63	1	9	2744	2744	NUM
dss-63	1	10	-	-	SYM
dss-63	1	11	1741	1741	NUM
dss-63	1	12	vol	vol	NOUN
dss-63	1	13	.	.	PROPN
dss-63	2	1	1	1	NUM
dss-63	2	2	,	,	PUNCT
dss-63	2	3	no	no	INTJ
dss-63	2	4	.	.	NOUN
dss-63	2	5	1	1	NUM
dss-63	2	6	,	,	PUNCT
dss-63	2	7	december	december	PROPN
dss-63	2	8	2020	2020	NUM
dss-63	2	9	,	,	PUNCT
dss-63	2	10	pp.1	pp.1	NOUN
dss-63	2	11	-	-	PUNCT
dss-63	2	12	15	15	NUM
dss-63	2	13	original	original	ADJ
dss-63	2	14	research	research	NOUN
dss-63	2	15	https://doi.org/10.37868/dss.v1i1.63	https://doi.org/10.37868/dss.v1i1.63	PROPN
dss-63	2	16	this	this	DET
dss-63	2	17	work	work	NOUN
dss-63	2	18	is	be	AUX
dss-63	2	19	licensed	license	VERB
dss-63	2	20	under	under	ADP
dss-63	2	21	a	a	DET
dss-63	2	22	creative	creative	ADJ
dss-63	2	23	commons	common	NOUN
dss-63	2	24	attribution	attribution	NOUN
dss-63	2	25	license	license	NOUN
dss-63	2	26	(	(	PUNCT
dss-63	2	27	https://creativecommons.org/licenses/by/4.0/	https://creativecommons.org/licenses/by/4.0/	PROPN
dss-63	2	28	)	)	PUNCT
dss-63	2	29	that	that	PRON
dss-63	2	30	allows	allow	VERB
dss-63	2	31	others	other	NOUN
dss-63	2	32	to	to	PART
dss-63	2	33	share	share	VERB
dss-63	2	34	and	and	CCONJ
dss-63	2	35	adapt	adapt	VERB
dss-63	2	36	the	the	DET
dss-63	2	37	material	material	NOUN
dss-63	2	38	for	for	ADP
dss-63	2	39	any	any	DET
dss-63	2	40	purpose	purpose	NOUN
dss-63	2	41	(	(	PUNCT
dss-63	2	42	even	even	ADV
dss-63	2	43	commercially	commercially	ADV
dss-63	2	44	)	)	PUNCT
dss-63	2	45	,	,	PUNCT
dss-63	2	46	in	in	ADP
dss-63	2	47	any	any	DET
dss-63	2	48	medium	medium	NOUN
dss-63	2	49	with	with	ADP
dss-63	2	50	an	an	DET
dss-63	2	51	acknowledgement	acknowledgement	NOUN
dss-63	2	52	of	of	ADP
dss-63	2	53	the	the	DET
dss-63	2	54	work	work	NOUN
dss-63	2	55	's	's	PART
dss-63	2	56	authorship	authorship	NOUN
dss-63	2	57	and	and	CCONJ
dss-63	2	58	initial	initial	ADJ
dss-63	2	59	publication	publication	NOUN
dss-63	2	60	in	in	ADP
dss-63	2	61	this	this	DET
dss-63	2	62	journal	journal	NOUN
dss-63	2	63	.	.	PUNCT
dss-63	3	1	1	1	NUM
dss-63	3	2	axial	axial	ADJ
dss-63	3	3	force	force	NOUN
dss-63	3	4	coefficient	coefficient	NOUN
dss-63	3	5	of	of	ADP
dss-63	3	6	apfsds	apfsds	PROPN
dss-63	3	7	projectile	projectile	NOUN
dss-63	3	8	ammar	ammar	PROPN
dss-63	3	9	trakić1	trakić1	PROPN
dss-63	3	10	1	1	NUM
dss-63	3	11	defense	defense	NOUN
dss-63	3	12	technologies	technology	NOUN
dss-63	3	13	department	department	PROPN
dss-63	3	14	,	,	PUNCT
dss-63	3	15	mechanical	mechanical	ADJ
dss-63	3	16	engineering	engineering	NOUN
dss-63	3	17	faculty	faculty	NOUN
dss-63	3	18	,	,	PUNCT
dss-63	3	19	university	university	NOUN
dss-63	3	20	of	of	ADP
dss-63	3	21	sarajevo	sarajevo	PROPN
dss-63	3	22	;	;	PUNCT
dss-63	3	23	bosnia	bosnia	PROPN
dss-63	3	24	and	and	CCONJ
dss-63	3	25	herzegovina	herzegovina	PROPN
dss-63	3	26	*	*	PUNCT
dss-63	3	27	ammar.trakic@hotmail.com	ammar.trakic@hotmail.com	X
dss-63	4	1	©	©	ADP
dss-63	4	2	the	the	DET
dss-63	4	3	author	author	NOUN
dss-63	4	4	2020	2020	NUM
dss-63	4	5	.	.	PUNCT
dss-63	5	1	published	publish	VERB
dss-63	5	2	by	by	ADP
dss-63	5	3	arda	arda	PROPN
dss-63	5	4	.	.	PUNCT
dss-63	6	1	abstract	abstract	ADJ
dss-63	6	2	armor	armor	NOUN
dss-63	6	3	-	-	PUNCT
dss-63	6	4	piercing	pierce	VERB
dss-63	6	5	ammunition	ammunition	NOUN
dss-63	6	6	is	be	AUX
dss-63	6	7	primarily	primarily	ADV
dss-63	6	8	used	use	VERB
dss-63	6	9	to	to	PART
dss-63	6	10	combat	combat	VERB
dss-63	6	11	against	against	ADP
dss-63	6	12	heavy	heavy	ADJ
dss-63	6	13	armored	armored	ADJ
dss-63	6	14	targets	target	NOUN
dss-63	6	15	(	(	PUNCT
dss-63	6	16	tanks	tank	NOUN
dss-63	6	17	)	)	PUNCT
dss-63	6	18	,	,	PUNCT
dss-63	6	19	but	but	CCONJ
dss-63	6	20	targets	target	NOUN
dss-63	6	21	can	can	AUX
dss-63	6	22	be	be	AUX
dss-63	6	23	light	light	ADJ
dss-63	6	24	armored	armored	ADJ
dss-63	6	25	vehicles	vehicle	NOUN
dss-63	6	26	,	,	PUNCT
dss-63	6	27	aircraft	aircraft	NOUN
dss-63	6	28	,	,	PUNCT
dss-63	6	29	warehouse	warehouse	NOUN
dss-63	6	30	,	,	PUNCT
dss-63	6	31	structures	structure	NOUN
dss-63	6	32	,	,	PUNCT
dss-63	6	33	etc	etc	X
dss-63	6	34	.	.	X
dss-63	7	1	it	it	PRON
dss-63	7	2	has	have	AUX
dss-63	7	3	been	be	AUX
dss-63	7	4	shown	show	VERB
dss-63	7	5	that	that	SCONJ
dss-63	7	6	the	the	DET
dss-63	7	7	most	most	ADV
dss-63	7	8	effective	effective	ADJ
dss-63	7	9	type	type	NOUN
dss-63	7	10	of	of	ADP
dss-63	7	11	anti	anti	ADJ
dss-63	7	12	-	-	ADJ
dss-63	7	13	tank	tank	ADJ
dss-63	7	14	ammunition	ammunition	NOUN
dss-63	7	15	in	in	ADP
dss-63	7	16	the	the	DET
dss-63	7	17	world	world	NOUN
dss-63	7	18	is	be	AUX
dss-63	7	19	the	the	DET
dss-63	7	20	apfsds	apfsds	NOUN
dss-63	7	21	ammunition	ammunition	NOUN
dss-63	7	22	(	(	PUNCT
dss-63	7	23	armor	armor	NOUN
dss-63	7	24	piercing	pierce	VERB
dss-63	7	25	fin	fin	NOUN
dss-63	7	26	stabilized	stabilize	VERB
dss-63	7	27	discarding	discard	VERB
dss-63	7	28	sabot	sabot	NOUN
dss-63	7	29	)	)	PUNCT
dss-63	7	30	.	.	PUNCT
dss-63	8	1	the	the	DET
dss-63	8	2	apfsds	apfsds	NOUN
dss-63	8	3	projectile	projectile	NOUN
dss-63	8	4	flies	fly	VERB
dss-63	8	5	to	to	ADP
dss-63	8	6	the	the	DET
dss-63	8	7	target	target	NOUN
dss-63	8	8	and	and	CCONJ
dss-63	8	9	with	with	ADP
dss-63	8	10	his	his	PRON
dss-63	8	11	kinetic	kinetic	ADJ
dss-63	8	12	energy	energy	NOUN
dss-63	8	13	acts	act	NOUN
dss-63	8	14	on	on	ADP
dss-63	8	15	the	the	DET
dss-63	8	16	target	target	NOUN
dss-63	8	17	,	,	PUNCT
dss-63	8	18	that	that	ADV
dss-63	8	19	is	is	ADV
dss-63	8	20	,	,	PUNCT
dss-63	8	21	penetrates	penetrate	VERB
dss-63	8	22	through	through	ADP
dss-63	8	23	armor	armor	NOUN
dss-63	8	24	and	and	CCONJ
dss-63	8	25	disables	disable	VERB
dss-63	8	26	the	the	DET
dss-63	8	27	tank	tank	NOUN
dss-63	8	28	and	and	CCONJ
dss-63	8	29	his	his	PRON
dss-63	8	30	crew	crew	NOUN
dss-63	8	31	.	.	PUNCT
dss-63	9	1	since	since	SCONJ
dss-63	9	2	the	the	DET
dss-63	9	3	projectile	projectile	NOUN
dss-63	9	4	destroys	destroy	VERB
dss-63	9	5	target	target	NOUN
dss-63	9	6	with	with	ADP
dss-63	9	7	his	his	PRON
dss-63	9	8	kinetic	kinetic	ADJ
dss-63	9	9	energy	energy	NOUN
dss-63	9	10	,	,	PUNCT
dss-63	9	11	then	then	ADV
dss-63	9	12	it	it	PRON
dss-63	9	13	is	be	AUX
dss-63	9	14	necessary	necessary	ADJ
dss-63	9	15	for	for	SCONJ
dss-63	9	16	the	the	DET
dss-63	9	17	projectile	projectile	NOUN
dss-63	9	18	to	to	PART
dss-63	9	19	have	have	VERB
dss-63	9	20	the	the	DET
dss-63	9	21	high	high	ADJ
dss-63	9	22	impact	impact	NOUN
dss-63	9	23	velocity	velocity	NOUN
dss-63	9	24	.	.	PUNCT
dss-63	10	1	the	the	DET
dss-63	10	2	decrease	decrease	NOUN
dss-63	10	3	in	in	ADP
dss-63	10	4	the	the	DET
dss-63	10	5	velocity	velocity	NOUN
dss-63	10	6	of	of	ADP
dss-63	10	7	a	a	DET
dss-63	10	8	projectile	projectile	NOUN
dss-63	10	9	,	,	PUNCT
dss-63	10	10	during	during	ADP
dss-63	10	11	flight	flight	NOUN
dss-63	10	12	,	,	PUNCT
dss-63	10	13	is	be	AUX
dss-63	10	14	mainly	mainly	ADV
dss-63	10	15	influenced	influence	VERB
dss-63	10	16	by	by	ADP
dss-63	10	17	aerodynamic	aerodynamic	ADJ
dss-63	10	18	forces	force	NOUN
dss-63	10	19	.	.	PUNCT
dss-63	11	1	the	the	DET
dss-63	11	2	most	most	ADV
dss-63	11	3	dominant	dominant	ADJ
dss-63	11	4	is	be	AUX
dss-63	11	5	the	the	DET
dss-63	11	6	axial	axial	ADJ
dss-63	11	7	force	force	NOUN
dss-63	11	8	due	due	ADP
dss-63	11	9	to	to	ADP
dss-63	11	10	the	the	DET
dss-63	11	11	laid	lay	VERB
dss-63	11	12	trajectory	trajectory	NOUN
dss-63	11	13	of	of	ADP
dss-63	11	14	the	the	DET
dss-63	11	15	projectile	projectile	NOUN
dss-63	11	16	.	.	PUNCT
dss-63	12	1	by	by	ADP
dss-63	12	2	knowing	know	VERB
dss-63	12	3	the	the	DET
dss-63	12	4	axial	axial	ADJ
dss-63	12	5	force	force	NOUN
dss-63	12	6	(	(	PUNCT
dss-63	12	7	axial	axial	ADJ
dss-63	12	8	force	force	NOUN
dss-63	12	9	coefficient	coefficient	NOUN
dss-63	12	10	)	)	PUNCT
dss-63	12	11	,	,	PUNCT
dss-63	12	12	it	it	PRON
dss-63	12	13	is	be	AUX
dss-63	12	14	possible	possible	ADJ
dss-63	12	15	to	to	PART
dss-63	12	16	predict	predict	VERB
dss-63	12	17	the	the	DET
dss-63	12	18	impact	impact	NOUN
dss-63	12	19	velocity	velocity	NOUN
dss-63	12	20	of	of	ADP
dss-63	12	21	the	the	DET
dss-63	12	22	projectile	projectile	NOUN
dss-63	12	23	,	,	PUNCT
dss-63	12	24	by	by	ADP
dss-63	12	25	external	external	ADJ
dss-63	12	26	ballistic	ballistic	ADJ
dss-63	12	27	calculation	calculation	NOUN
dss-63	12	28	,	,	PUNCT
dss-63	12	29	in	in	ADP
dss-63	12	30	function	function	NOUN
dss-63	12	31	of	of	ADP
dss-63	12	32	the	the	DET
dss-63	12	33	distance	distance	NOUN
dss-63	12	34	of	of	ADP
dss-63	12	35	the	the	DET
dss-63	12	36	target	target	NOUN
dss-63	12	37	,	,	PUNCT
dss-63	12	38	and	and	CCONJ
dss-63	12	39	to	to	PART
dss-63	12	40	define	define	VERB
dss-63	12	41	the	the	DET
dss-63	12	42	maximum	maximum	ADJ
dss-63	12	43	effective	effective	ADJ
dss-63	12	44	range	range	NOUN
dss-63	12	45	from	from	ADP
dss-63	12	46	the	the	DET
dss-63	12	47	aspect	aspect	NOUN
dss-63	12	48	of	of	ADP
dss-63	12	49	terminal	terminal	ADJ
dss-63	12	50	ballistics	ballistic	NOUN
dss-63	12	51	.	.	PUNCT
dss-63	13	1	in	in	ADP
dss-63	13	2	this	this	DET
dss-63	13	3	paper	paper	NOUN
dss-63	13	4	two	two	NUM
dss-63	13	5	models	model	NOUN
dss-63	13	6	will	will	AUX
dss-63	13	7	be	be	AUX
dss-63	13	8	presented	present	VERB
dss-63	13	9	for	for	ADP
dss-63	13	10	predicting	predict	VERB
dss-63	13	11	axial	axial	ADJ
dss-63	13	12	force	force	NOUN
dss-63	13	13	(	(	PUNCT
dss-63	13	14	the	the	DET
dss-63	13	15	axial	axial	ADJ
dss-63	13	16	force	force	NOUN
dss-63	13	17	coefficient	coefficient	NOUN
dss-63	13	18	)	)	PUNCT
dss-63	13	19	of	of	ADP
dss-63	13	20	an	an	DET
dss-63	13	21	apfsds	apfsds	NOUN
dss-63	13	22	projectile	projectile	NOUN
dss-63	13	23	after	after	ADP
dss-63	13	24	discarding	discard	VERB
dss-63	13	25	sabot	sabot	NOUN
dss-63	13	26	.	.	PUNCT
dss-63	14	1	the	the	DET
dss-63	14	2	first	first	ADJ
dss-63	14	3	model	model	NOUN
dss-63	14	4	is	be	AUX
dss-63	14	5	defined	define	VERB
dss-63	14	6	in	in	ADP
dss-63	14	7	stanag	stanag	ADJ
dss-63	14	8	4655	4655	NUM
dss-63	14	9	ed.1	ed.1	NOUN
dss-63	14	10	.	.	PUNCT
dss-63	15	1	this	this	DET
dss-63	15	2	model	model	NOUN
dss-63	15	3	is	be	AUX
dss-63	15	4	used	use	VERB
dss-63	15	5	to	to	PART
dss-63	15	6	predict	predict	VERB
dss-63	15	7	the	the	DET
dss-63	15	8	axial	axial	ADJ
dss-63	15	9	force	force	NOUN
dss-63	15	10	coefficient	coefficient	NOUN
dss-63	15	11	for	for	ADP
dss-63	15	12	all	all	DET
dss-63	15	13	types	type	NOUN
dss-63	15	14	of	of	ADP
dss-63	15	15	conventional	conventional	ADJ
dss-63	15	16	projectiles	projectile	NOUN
dss-63	15	17	.	.	PUNCT
dss-63	16	1	the	the	DET
dss-63	16	2	second	second	ADJ
dss-63	16	3	model	model	NOUN
dss-63	16	4	for	for	ADP
dss-63	16	5	predicting	predict	VERB
dss-63	16	6	the	the	DET
dss-63	16	7	axial	axial	ADJ
dss-63	16	8	force	force	NOUN
dss-63	16	9	coefficient	coefficient	NOUN
dss-63	16	10	of	of	ADP
dss-63	16	11	an	an	DET
dss-63	16	12	apfsds	apfsds	NOUN
dss-63	16	13	projectile	projectile	NOUN
dss-63	16	14	,	,	PUNCT
dss-63	16	15	which	which	PRON
dss-63	16	16	is	be	AUX
dss-63	16	17	presented	present	VERB
dss-63	16	18	in	in	ADP
dss-63	16	19	the	the	DET
dss-63	16	20	paper	paper	NOUN
dss-63	16	21	,	,	PUNCT
dss-63	16	22	is	be	AUX
dss-63	16	23	the	the	DET
dss-63	16	24	cfd	cfd	NOUN
dss-63	16	25	model	model	NOUN
dss-63	16	26	(	(	PUNCT
dss-63	16	27	eng	eng	PROPN
dss-63	16	28	.	.	PROPN
dss-63	16	29	computed	compute	VERB
dss-63	16	30	fluid	fluid	ADJ
dss-63	16	31	dynamics	dynamic	NOUN
dss-63	16	32	)	)	PUNCT
dss-63	16	33	.	.	PUNCT
dss-63	17	1	keywords	keyword	NOUN
dss-63	17	2	:	:	PUNCT
dss-63	17	3	apfsds	apfsds	ADJ
dss-63	17	4	,	,	PUNCT
dss-63	17	5	axial	axial	ADJ
dss-63	17	6	force	force	NOUN
dss-63	17	7	coefficient	coefficient	NOUN
dss-63	17	8	,	,	PUNCT
dss-63	17	9	stanag	stanag	VERB
dss-63	17	10	4655	4655	NUM
dss-63	17	11	ed.1	ed.1	NOUN
dss-63	17	12	,	,	PUNCT
dss-63	17	13	cfd	cfd	NOUN
dss-63	17	14	,	,	PUNCT
dss-63	17	15	prodas	prodas	PROPN
dss-63	17	16	1	1	NUM
dss-63	17	17	.	.	PUNCT
dss-63	18	1	introduction	introduction	NOUN
dss-63	18	2	ammunition	ammunition	NOUN
dss-63	18	3	based	base	VERB
dss-63	18	4	on	on	ADP
dss-63	18	5	the	the	DET
dss-63	18	6	use	use	NOUN
dss-63	18	7	of	of	ADP
dss-63	18	8	kinetic	kinetic	ADJ
dss-63	18	9	energy	energy	NOUN
dss-63	18	10	(	(	PUNCT
dss-63	18	11	ke	ke	NOUN
dss-63	18	12	)	)	PUNCT
dss-63	18	13	penetrates	penetrate	VERB
dss-63	18	14	through	through	ADP
dss-63	18	15	targets	target	NOUN
dss-63	18	16	primarily	primarily	ADV
dss-63	18	17	with	with	ADP
dss-63	18	18	the	the	DET
dss-63	18	19	energy	energy	NOUN
dss-63	18	20	of	of	ADP
dss-63	18	21	a	a	DET
dss-63	18	22	projectile	projectile	NOUN
dss-63	18	23	body	body	NOUN
dss-63	18	24	or	or	CCONJ
dss-63	18	25	sub	sub	NOUN
dss-63	18	26	-	-	ADJ
dss-63	18	27	projectile	projectile	ADJ
dss-63	18	28	(	(	PUNCT
dss-63	18	29	penetrator	penetrator	NOUN
dss-63	18	30	)	)	PUNCT
dss-63	18	31	,	,	PUNCT
dss-63	18	32	which	which	PRON
dss-63	18	33	is	be	AUX
dss-63	18	34	made	make	VERB
dss-63	18	35	of	of	ADP
dss-63	18	36	high	high	ADJ
dss-63	18	37	-	-	PUNCT
dss-63	18	38	density	density	NOUN
dss-63	18	39	metal	metal	NOUN
dss-63	18	40	.	.	PUNCT
dss-63	19	1	the	the	DET
dss-63	19	2	efficiency	efficiency	NOUN
dss-63	19	3	of	of	ADP
dss-63	19	4	this	this	DET
dss-63	19	5	ammunition	ammunition	NOUN
dss-63	19	6	depends	depend	VERB
dss-63	19	7	on	on	ADP
dss-63	19	8	the	the	DET
dss-63	19	9	impact	impact	NOUN
dss-63	19	10	velocity	velocity	NOUN
dss-63	19	11	of	of	ADP
dss-63	19	12	the	the	DET
dss-63	19	13	projectile	projectile	NOUN
dss-63	19	14	at	at	ADP
dss-63	19	15	the	the	DET
dss-63	19	16	target	target	NOUN
dss-63	19	17	,	,	PUNCT
dss-63	19	18	the	the	DET
dss-63	19	19	length	length	NOUN
dss-63	19	20	,	,	PUNCT
dss-63	19	21	diameter	diameter	NOUN
dss-63	19	22	and	and	CCONJ
dss-63	19	23	density	density	NOUN
dss-63	19	24	of	of	ADP
dss-63	19	25	the	the	DET
dss-63	19	26	penetrator	penetrator	NOUN
dss-63	19	27	.	.	PUNCT
dss-63	20	1	a	a	DET
dss-63	20	2	representative	representative	NOUN
dss-63	20	3	of	of	ADP
dss-63	20	4	modern	modern	ADJ
dss-63	20	5	kinetic	kinetic	ADJ
dss-63	20	6	energy	energy	NOUN
dss-63	20	7	ammunition	ammunition	NOUN
dss-63	20	8	,	,	PUNCT
dss-63	20	9	which	which	PRON
dss-63	20	10	is	be	AUX
dss-63	20	11	mostly	mostly	ADV
dss-63	20	12	used	use	VERB
dss-63	20	13	today	today	NOUN
dss-63	20	14	in	in	ADP
dss-63	20	15	armies	army	NOUN
dss-63	20	16	around	around	ADP
dss-63	20	17	the	the	DET
dss-63	20	18	world	world	NOUN
dss-63	20	19	,	,	PUNCT
dss-63	20	20	is	be	AUX
dss-63	20	21	apfsds	apfsds	NOUN
dss-63	20	22	ammunition	ammunition	NOUN
dss-63	20	23	(	(	PUNCT
dss-63	20	24	armor	armor	NOUN
dss-63	20	25	piercing	pierce	VERB
dss-63	20	26	fin	fin	NOUN
dss-63	20	27	stabilized	stabilize	VERB
dss-63	20	28	discarding	discard	VERB
dss-63	20	29	sabot	sabot	NOUN
dss-63	20	30	)	)	PUNCT
dss-63	20	31	,	,	PUNCT
dss-63	20	32	which	which	PRON
dss-63	20	33	is	be	AUX
dss-63	20	34	made	make	VERB
dss-63	20	35	of	of	ADP
dss-63	20	36	an	an	DET
dss-63	20	37	alloy	alloy	NOUN
dss-63	20	38	of	of	ADP
dss-63	20	39	tungsten	tungsten	NOUN
dss-63	20	40	or	or	CCONJ
dss-63	20	41	depleted	depleted	ADJ
dss-63	20	42	uranium	uranium	NOUN
dss-63	20	43	[	[	X
dss-63	20	44	1	1	NUM
dss-63	20	45	]	]	PUNCT
dss-63	20	46	.	.	PUNCT
dss-63	21	1	the	the	DET
dss-63	21	2	components	component	NOUN
dss-63	21	3	of	of	ADP
dss-63	21	4	modern	modern	ADJ
dss-63	21	5	armor	armor	NOUN
dss-63	21	6	piercing	pierce	VERB
dss-63	21	7	fin	fin	NOUN
dss-63	21	8	stabilized	stabilize	VERB
dss-63	21	9	discarding	discard	VERB
dss-63	21	10	sabot	sabot	ADJ
dss-63	21	11	ammunition	ammunition	NOUN
dss-63	21	12	are	be	AUX
dss-63	21	13	shown	show	VERB
dss-63	21	14	schematicallyy	schematicallyy	ADJ
dss-63	21	15	in	in	ADP
dss-63	21	16	figure	figure	NOUN
dss-63	21	17	1	1	NUM
dss-63	21	18	:	:	SYM
dss-63	21	19	1	1	NUM
dss-63	21	20	.	.	X
dss-63	21	21	penetration	penetration	NOUN
dss-63	21	22	with	with	ADP
dss-63	21	23	fin	fin	NOUN
dss-63	21	24	stabilizer	stabilizer	NOUN
dss-63	21	25	,	,	PUNCT
dss-63	21	26	2	2	NUM
dss-63	21	27	.	.	X
dss-63	21	28	sabot	sabot	NOUN
dss-63	21	29	,	,	PUNCT
dss-63	21	30	3	3	X
dss-63	21	31	.	.	PUNCT
dss-63	21	32	combustible	combustible	ADJ
dss-63	21	33	case	case	NOUN
dss-63	21	34	,	,	PUNCT
dss-63	21	35	4	4	X
dss-63	21	36	.	.	PUNCT
dss-63	21	37	propellant	propellant	NOUN
dss-63	21	38	,	,	PUNCT
dss-63	21	39	5	5	NUM
dss-63	21	40	.	.	PUNCT
dss-63	21	41	primer	primer	NOUN
dss-63	21	42	assembly	assembly	NOUN
dss-63	21	43	,	,	PUNCT
dss-63	21	44	and	and	CCONJ
dss-63	21	45	6	6	NUM
dss-63	21	46	.	.	NOUN
dss-63	21	47	case	case	NOUN
dss-63	21	48	base	base	NOUN
dss-63	21	49	.	.	PUNCT
dss-63	22	1	dss	dss	NOUN
dss-63	22	2	vol	vol	NOUN
dss-63	22	3	.	.	PROPN
dss-63	23	1	1	1	NUM
dss-63	23	2	,	,	PUNCT
dss-63	23	3	no	no	INTJ
dss-63	23	4	.	.	NOUN
dss-63	23	5	1	1	NUM
dss-63	23	6	,	,	PUNCT
dss-63	23	7	december	december	PROPN
dss-63	23	8	2020	2020	NUM
dss-63	23	9	,	,	PUNCT
dss-63	23	10	pp.1	pp.1	NOUN
dss-63	23	11	-	-	PUNCT
dss-63	23	12	15	15	NUM
dss-63	23	13	2	2	NUM
dss-63	23	14	figure	figure	NOUN
dss-63	23	15	1	1	NUM
dss-63	23	16	.	.	PUNCT
dss-63	23	17	main	main	ADJ
dss-63	23	18	components	component	NOUN
dss-63	23	19	of	of	ADP
dss-63	23	20	apfsds	apfsds	NOUN
dss-63	23	21	ammunition	ammunition	NOUN
dss-63	23	22	[	[	X
dss-63	23	23	2	2	NUM
dss-63	23	24	]	]	PUNCT
dss-63	23	25	during	during	ADP
dss-63	23	26	the	the	DET
dss-63	23	27	movement	movement	NOUN
dss-63	23	28	of	of	ADP
dss-63	23	29	the	the	DET
dss-63	23	30	apfsds	apfsds	NOUN
dss-63	23	31	projectile	projectile	NOUN
dss-63	23	32	through	through	ADP
dss-63	23	33	the	the	DET
dss-63	23	34	barrel	barrel	NOUN
dss-63	23	35	of	of	ADP
dss-63	23	36	the	the	DET
dss-63	23	37	weapon	weapon	NOUN
dss-63	23	38	,	,	PUNCT
dss-63	23	39	the	the	DET
dss-63	23	40	energy	energy	NOUN
dss-63	23	41	of	of	ADP
dss-63	23	42	the	the	DET
dss-63	23	43	propellant	propellant	NOUN
dss-63	23	44	charge	charge	NOUN
dss-63	23	45	acts	act	VERB
dss-63	23	46	on	on	ADP
dss-63	23	47	the	the	DET
dss-63	23	48	bottom	bottom	NOUN
dss-63	23	49	of	of	ADP
dss-63	23	50	the	the	DET
dss-63	23	51	projectile	projectile	NOUN
dss-63	23	52	(	(	PUNCT
dss-63	23	53	the	the	DET
dss-63	23	54	penetrator	penetrator	NOUN
dss-63	23	55	is	be	AUX
dss-63	23	56	still	still	ADV
dss-63	23	57	connected	connect	VERB
dss-63	23	58	to	to	ADP
dss-63	23	59	the	the	DET
dss-63	23	60	sabot	sabot	NOUN
dss-63	23	61	)	)	PUNCT
dss-63	23	62	and	and	CCONJ
dss-63	23	63	drives	drive	VERB
dss-63	23	64	it	it	PRON
dss-63	23	65	.	.	PUNCT
dss-63	24	1	after	after	SCONJ
dss-63	24	2	the	the	DET
dss-63	24	3	projectile	projectile	NOUN
dss-63	24	4	comes	come	VERB
dss-63	24	5	out	out	ADP
dss-63	24	6	of	of	ADP
dss-63	24	7	the	the	DET
dss-63	24	8	barrel	barrel	NOUN
dss-63	24	9	,	,	PUNCT
dss-63	24	10	due	due	ADP
dss-63	24	11	to	to	ADP
dss-63	24	12	the	the	DET
dss-63	24	13	difference	difference	NOUN
dss-63	24	14	in	in	ADP
dss-63	24	15	resistance	resistance	NOUN
dss-63	24	16	and	and	CCONJ
dss-63	24	17	mass	mass	NOUN
dss-63	24	18	of	of	ADP
dss-63	24	19	the	the	DET
dss-63	24	20	sabot	sabot	NOUN
dss-63	24	21	and	and	CCONJ
dss-63	24	22	penetrator	penetrator	NOUN
dss-63	24	23	,	,	PUNCT
dss-63	24	24	the	the	DET
dss-63	24	25	sabot	sabot	NOUN
dss-63	24	26	separates	separate	VERB
dss-63	24	27	and	and	CCONJ
dss-63	24	28	the	the	DET
dss-63	24	29	penetrator	penetrator	NOUN
dss-63	24	30	continues	continue	VERB
dss-63	24	31	to	to	PART
dss-63	24	32	fly	fly	VERB
dss-63	24	33	towards	towards	ADP
dss-63	24	34	the	the	DET
dss-63	24	35	target	target	NOUN
dss-63	24	36	(	(	PUNCT
dss-63	24	37	figure	figure	NOUN
dss-63	24	38	2	2	NUM
dss-63	24	39	)	)	PUNCT
dss-63	24	40	.	.	PUNCT
dss-63	25	1	when	when	SCONJ
dss-63	25	2	moving	move	VERB
dss-63	25	3	through	through	ADP
dss-63	25	4	the	the	DET
dss-63	25	5	barrel	barrel	NOUN
dss-63	25	6	of	of	ADP
dss-63	25	7	the	the	DET
dss-63	25	8	cannon	cannon	NOUN
dss-63	25	9	,	,	PUNCT
dss-63	25	10	the	the	DET
dss-63	25	11	projectile	projectile	NOUN
dss-63	25	12	with	with	ADP
dss-63	25	13	the	the	DET
dss-63	25	14	sabot	sabot	NOUN
dss-63	25	15	reaches	reach	VERB
dss-63	25	16	supersonic	supersonic	ADJ
dss-63	25	17	velocities	velocity	NOUN
dss-63	25	18	(	(	PUNCT
dss-63	25	19	up	up	ADP
dss-63	25	20	to	to	PART
dss-63	25	21	5	5	NUM
dss-63	25	22	mach	mach	NOUN
dss-63	25	23	)	)	PUNCT
dss-63	25	24	.	.	PUNCT
dss-63	26	1	apfsds	apfsds	NOUN
dss-63	26	2	projectiles	projectile	NOUN
dss-63	26	3	are	be	AUX
dss-63	26	4	statically	statically	ADV
dss-63	26	5	stabilized	stabilize	VERB
dss-63	26	6	projectiles	projectile	NOUN
dss-63	26	7	.	.	PUNCT
dss-63	27	1	stabilization	stabilization	NOUN
dss-63	27	2	is	be	AUX
dss-63	27	3	provided	provide	VERB
dss-63	27	4	using	use	VERB
dss-63	27	5	aerodynamic	aerodynamic	ADJ
dss-63	27	6	surfaceswings	surfaceswing	NOUN
dss-63	27	7	.	.	PUNCT
dss-63	28	1	when	when	SCONJ
dss-63	28	2	determining	determine	VERB
dss-63	28	3	the	the	DET
dss-63	28	4	axial	axial	ADJ
dss-63	28	5	force	force	NOUN
dss-63	28	6	(	(	PUNCT
dss-63	28	7	axial	axial	ADJ
dss-63	28	8	force	force	NOUN
dss-63	28	9	coefficient	coefficient	NOUN
dss-63	28	10	)	)	PUNCT
dss-63	28	11	,	,	PUNCT
dss-63	28	12	the	the	DET
dss-63	28	13	projectile	projectile	NOUN
dss-63	28	14	body	body	NOUN
dss-63	28	15	and	and	CCONJ
dss-63	28	16	the	the	DET
dss-63	28	17	wings	wing	NOUN
dss-63	28	18	are	be	AUX
dss-63	28	19	observed	observe	VERB
dss-63	28	20	separately	separately	ADV
dss-63	28	21	.	.	PUNCT
dss-63	29	1	the	the	DET
dss-63	29	2	sum	sum	NOUN
dss-63	29	3	of	of	ADP
dss-63	29	4	these	these	DET
dss-63	29	5	two	two	NUM
dss-63	29	6	components	component	NOUN
dss-63	29	7	of	of	ADP
dss-63	29	8	the	the	DET
dss-63	29	9	axial	axial	ADJ
dss-63	29	10	forces	force	NOUN
dss-63	29	11	on	on	ADP
dss-63	29	12	the	the	DET
dss-63	29	13	apfsds	apfsds	NOUN
dss-63	29	14	projectile	projectile	NOUN
dss-63	29	15	gives	give	VERB
dss-63	29	16	the	the	DET
dss-63	29	17	total	total	ADJ
dss-63	29	18	axial	axial	ADJ
dss-63	29	19	force	force	NOUN
dss-63	29	20	(	(	PUNCT
dss-63	29	21	axial	axial	ADJ
dss-63	29	22	force	force	NOUN
dss-63	29	23	coefficient	coefficient	NOUN
dss-63	29	24	)	)	PUNCT
dss-63	30	1	[	[	X
dss-63	30	2	4	4	NUM
dss-63	30	3	]	]	PUNCT
dss-63	30	4	.	.	PUNCT
dss-63	31	1	figure	figure	NOUN
dss-63	31	2	2	2	NUM
dss-63	31	3	.	.	PUNCT
dss-63	31	4	process	process	NOUN
dss-63	31	5	of	of	ADP
dss-63	31	6	discarding	discard	VERB
dss-63	31	7	sabot	sabot	NOUN
dss-63	31	8	from	from	ADP
dss-63	31	9	apfsds	apfsds	NOUN
dss-63	31	10	projectile	projectile	NOUN
dss-63	32	1	[	[	X
dss-63	32	2	3	3	NUM
dss-63	32	3	]	]	SYM
dss-63	32	4	2	2	NUM
dss-63	32	5	.	.	NOUN
dss-63	32	6	models	model	NOUN
dss-63	32	7	for	for	ADP
dss-63	32	8	prediction	prediction	NOUN
dss-63	32	9	of	of	ADP
dss-63	32	10	coefficient	coefficient	NOUN
dss-63	32	11	of	of	ADP
dss-63	32	12	axial	axial	ADJ
dss-63	32	13	force	force	NOUN
dss-63	32	14	there	there	PRON
dss-63	32	15	are	be	VERB
dss-63	32	16	many	many	ADJ
dss-63	32	17	methods	method	NOUN
dss-63	32	18	for	for	ADP
dss-63	32	19	predicting	predict	VERB
dss-63	32	20	the	the	DET
dss-63	32	21	axial	axial	ADJ
dss-63	32	22	force	force	NOUN
dss-63	32	23	coefficient	coefficient	NOUN
dss-63	32	24	of	of	ADP
dss-63	32	25	apfsds	apfsds	NOUN
dss-63	32	26	projectiles	projectile	NOUN
dss-63	32	27	,	,	PUNCT
dss-63	32	28	but	but	CCONJ
dss-63	32	29	all	all	PRON
dss-63	32	30	of	of	ADP
dss-63	32	31	them	they	PRON
dss-63	32	32	are	be	AUX
dss-63	32	33	based	base	VERB
dss-63	32	34	on	on	ADP
dss-63	32	35	the	the	DET
dss-63	32	36	application	application	NOUN
dss-63	32	37	of	of	ADP
dss-63	32	38	three	three	NUM
dss-63	32	39	general	general	ADJ
dss-63	32	40	methods	method	NOUN
dss-63	32	41	:	:	PUNCT
dss-63	32	42	1	1	X
dss-63	32	43	.	.	X
dss-63	32	44	experimental	experimental	ADJ
dss-63	32	45	(	(	PUNCT
dss-63	32	46	wind	wind	NOUN
dss-63	32	47	tunnel	tunnel	NOUN
dss-63	32	48	or	or	CCONJ
dss-63	32	49	polygon	polygon	PROPN
dss-63	32	50	)	)	PUNCT
dss-63	32	51	,	,	PUNCT
dss-63	32	52	2	2	X
dss-63	32	53	.	.	X
dss-63	32	54	theoretical	theoretical	ADJ
dss-63	32	55	,	,	PUNCT
dss-63	32	56	and	and	CCONJ
dss-63	32	57	3	3	X
dss-63	32	58	.	.	NOUN
dss-63	32	59	numerical	numerical	PROPN
dss-63	32	60	(	(	PUNCT
dss-63	32	61	cfd	cfd	NOUN
dss-63	32	62	computational	computational	ADJ
dss-63	32	63	fluid	fluid	NOUN
dss-63	32	64	dynamics	dynamic	NOUN
dss-63	32	65	)	)	PUNCT
dss-63	32	66	.	.	PUNCT
dss-63	33	1	dss	dss	NOUN
dss-63	33	2	vol	vol	NOUN
dss-63	33	3	.	.	PROPN
dss-63	34	1	1	1	NUM
dss-63	34	2	,	,	PUNCT
dss-63	34	3	no	no	INTJ
dss-63	34	4	.	.	NOUN
dss-63	34	5	1	1	NUM
dss-63	34	6	,	,	PUNCT
dss-63	34	7	december	december	PROPN
dss-63	34	8	2020	2020	NUM
dss-63	34	9	,	,	PUNCT
dss-63	34	10	pp.1	pp.1	NOUN
dss-63	34	11	-	-	PUNCT
dss-63	34	12	15	15	NUM
dss-63	34	13	3	3	NUM
dss-63	34	14	experimental	experimental	ADJ
dss-63	34	15	methods	method	NOUN
dss-63	34	16	determine	determine	VERB
dss-63	34	17	aerodynamic	aerodynamic	ADJ
dss-63	34	18	coefficients	coefficient	NOUN
dss-63	34	19	in	in	ADP
dss-63	34	20	an	an	DET
dss-63	34	21	air	air	NOUN
dss-63	34	22	(	(	PUNCT
dss-63	34	23	aero	aero	NOUN
dss-63	34	24	)	)	PUNCT
dss-63	34	25	tunnel	tunnel	NOUN
dss-63	34	26	or	or	CCONJ
dss-63	34	27	on	on	ADP
dss-63	34	28	the	the	DET
dss-63	34	29	basis	basis	NOUN
dss-63	34	30	of	of	ADP
dss-63	34	31	measuring	measure	VERB
dss-63	34	32	the	the	DET
dss-63	34	33	movement	movement	NOUN
dss-63	34	34	of	of	ADP
dss-63	34	35	a	a	DET
dss-63	34	36	projectile	projectile	NOUN
dss-63	34	37	in	in	ADP
dss-63	34	38	flight	flight	NOUN
dss-63	34	39	(	(	PUNCT
dss-63	34	40	as	as	ADP
dss-63	34	41	a	a	DET
dss-63	34	42	material	material	NOUN
dss-63	34	43	point	point	NOUN
dss-63	34	44	or	or	CCONJ
dss-63	34	45	a	a	DET
dss-63	34	46	rigid	rigid	ADJ
dss-63	34	47	body	body	NOUN
dss-63	34	48	)	)	PUNCT
dss-63	34	49	.	.	PUNCT
dss-63	35	1	this	this	DET
dss-63	35	2	method	method	NOUN
dss-63	35	3	gives	give	VERB
dss-63	35	4	the	the	DET
dss-63	35	5	most	most	ADV
dss-63	35	6	realistic	realistic	ADJ
dss-63	35	7	values	value	NOUN
dss-63	35	8	for	for	ADP
dss-63	35	9	the	the	DET
dss-63	35	10	axial	axial	ADJ
dss-63	35	11	force	force	NOUN
dss-63	35	12	coefficient	coefficient	NOUN
dss-63	35	13	;	;	PUNCT
dss-63	35	14	however	however	ADV
dss-63	35	15	,	,	PUNCT
dss-63	35	16	the	the	DET
dss-63	35	17	disadvantages	disadvantage	NOUN
dss-63	35	18	of	of	ADP
dss-63	35	19	the	the	DET
dss-63	35	20	tunnel	tunnel	NOUN
dss-63	35	21	experiment	experiment	NOUN
dss-63	35	22	are	be	AUX
dss-63	35	23	[	[	X
dss-63	35	24	5	5	NUM
dss-63	35	25	]	]	NUM
dss-63	35	26	:	:	PUNCT
dss-63	35	27			X
dss-63	35	28	high	high	ADJ
dss-63	35	29	price	price	NOUN
dss-63	35	30	,	,	PUNCT
dss-63	35	31			NOUN
dss-63	35	32	scaling	scale	VERB
dss-63	35	33	problems	problem	NOUN
dss-63	35	34	if	if	SCONJ
dss-63	35	35	the	the	DET
dss-63	35	36	model	model	NOUN
dss-63	35	37	is	be	AUX
dss-63	35	38	not	not	PART
dss-63	35	39	life	life	NOUN
dss-63	35	40	-	-	PUNCT
dss-63	35	41	size	size	NOUN
dss-63	35	42	,	,	PUNCT
dss-63	35	43			NOUN
dss-63	35	44	interference	interference	NOUN
dss-63	35	45	from	from	ADP
dss-63	35	46	tunnel	tunnel	NOUN
dss-63	35	47	walls	wall	NOUN
dss-63	35	48	,	,	PUNCT
dss-63	35	49			DET
dss-63	35	50	measurement	measurement	NOUN
dss-63	35	51	difficulties	difficulty	NOUN
dss-63	35	52	.	.	PUNCT
dss-63	36	1	assumptions	assumption	NOUN
dss-63	36	2	and	and	CCONJ
dss-63	36	3	simplifications	simplification	NOUN
dss-63	36	4	are	be	AUX
dss-63	36	5	necessary	necessary	ADJ
dss-63	36	6	in	in	ADP
dss-63	36	7	theoretical	theoretical	ADJ
dss-63	36	8	methods	method	NOUN
dss-63	36	9	for	for	ADP
dss-63	36	10	the	the	DET
dss-63	36	11	solving	solving	NOUN
dss-63	36	12	problems	problem	NOUN
dss-63	36	13	.	.	PUNCT
dss-63	37	1	this	this	PRON
dss-63	37	2	includes	include	VERB
dss-63	37	3	simplifying	simplify	VERB
dss-63	37	4	geometry	geometry	NOUN
dss-63	37	5	and	and	CCONJ
dss-63	37	6	simplifying	simplify	VERB
dss-63	37	7	equations	equation	NOUN
dss-63	37	8	.	.	PUNCT
dss-63	38	1	equations	equation	NOUN
dss-63	38	2	known	know	VERB
dss-63	38	3	as	as	ADP
dss-63	38	4	navier	navier	NOUN
dss-63	38	5	-	-	PUNCT
dss-63	38	6	stokes	stoke	NOUN
dss-63	38	7	equations	equation	NOUN
dss-63	38	8	,	,	PUNCT
dss-63	38	9	along	along	ADP
dss-63	38	10	with	with	ADP
dss-63	38	11	the	the	DET
dss-63	38	12	energy	energy	NOUN
dss-63	38	13	equation	equation	NOUN
dss-63	38	14	and	and	CCONJ
dss-63	38	15	the	the	DET
dss-63	38	16	continuity	continuity	NOUN
dss-63	38	17	equation	equation	NOUN
dss-63	38	18	,	,	PUNCT
dss-63	38	19	describe	describe	VERB
dss-63	38	20	the	the	DET
dss-63	38	21	flow	flow	NOUN
dss-63	38	22	of	of	ADP
dss-63	38	23	fluid	fluid	NOUN
dss-63	38	24	around	around	ADP
dss-63	38	25	a	a	DET
dss-63	38	26	body	body	NOUN
dss-63	38	27	.	.	PUNCT
dss-63	39	1	they	they	PRON
dss-63	39	2	are	be	AUX
dss-63	39	3	analytically	analytically	ADV
dss-63	39	4	unsolvable	unsolvable	ADJ
dss-63	39	5	in	in	ADP
dss-63	39	6	closed	closed	ADJ
dss-63	39	7	form	form	NOUN
dss-63	39	8	,	,	PUNCT
dss-63	39	9	but	but	CCONJ
dss-63	39	10	can	can	AUX
dss-63	39	11	be	be	AUX
dss-63	39	12	simplified	simplify	VERB
dss-63	39	13	for	for	ADP
dss-63	39	14	specific	specific	ADJ
dss-63	39	15	geometry	geometry	NOUN
dss-63	39	16	or	or	CCONJ
dss-63	39	17	flight	flight	NOUN
dss-63	39	18	conditions	condition	NOUN
dss-63	39	19	[	[	X
dss-63	39	20	5	5	NUM
dss-63	39	21	]	]	PUNCT
dss-63	39	22	.	.	PUNCT
dss-63	40	1	numerical	numerical	ADJ
dss-63	40	2	methods	method	NOUN
dss-63	40	3	are	be	AUX
dss-63	40	4	new	new	ADJ
dss-63	40	5	;	;	PUNCT
dss-63	40	6	they	they	PRON
dss-63	40	7	have	have	AUX
dss-63	40	8	been	be	AUX
dss-63	40	9	used	use	VERB
dss-63	40	10	since	since	SCONJ
dss-63	40	11	the	the	DET
dss-63	40	12	advent	advent	NOUN
dss-63	40	13	of	of	ADP
dss-63	40	14	computers	computer	NOUN
dss-63	40	15	during	during	ADP
dss-63	40	16	world	world	PROPN
dss-63	40	17	war	war	PROPN
dss-63	40	18	ii	ii	PROPN
dss-63	40	19	.	.	PUNCT
dss-63	41	1	advanced	advanced	ADJ
dss-63	41	2	cfd	cfd	NOUN
dss-63	41	3	codes	code	NOUN
dss-63	41	4	numerically	numerically	ADV
dss-63	41	5	solve	solve	VERB
dss-63	41	6	navier	navier	NOUN
dss-63	41	7	-	-	PUNCT
dss-63	41	8	stokes	stoke	NOUN
dss-63	41	9	equations	equation	NOUN
dss-63	41	10	and	and	CCONJ
dss-63	41	11	can	can	AUX
dss-63	41	12	show	show	VERB
dss-63	41	13	the	the	DET
dss-63	41	14	complete	complete	ADJ
dss-63	41	15	flow	flow	NOUN
dss-63	41	16	field	field	NOUN
dss-63	41	17	around	around	ADP
dss-63	41	18	an	an	DET
dss-63	41	19	object	object	NOUN
dss-63	41	20	for	for	ADP
dss-63	41	21	specific	specific	ADJ
dss-63	41	22	flight	flight	NOUN
dss-63	41	23	conditions	condition	NOUN
dss-63	41	24	.	.	PUNCT
dss-63	42	1	with	with	ADP
dss-63	42	2	these	these	DET
dss-63	42	3	methods	method	NOUN
dss-63	42	4	,	,	PUNCT
dss-63	42	5	problems	problem	NOUN
dss-63	42	6	arise	arise	VERB
dss-63	42	7	in	in	ADP
dss-63	42	8	determining	determine	VERB
dss-63	42	9	the	the	DET
dss-63	42	10	boundary	boundary	ADJ
dss-63	42	11	conditions	condition	NOUN
dss-63	42	12	,	,	PUNCT
dss-63	42	13	because	because	SCONJ
dss-63	42	14	the	the	DET
dss-63	42	15	initial	initial	ADJ
dss-63	42	16	conditions	condition	NOUN
dss-63	42	17	must	must	AUX
dss-63	42	18	be	be	AUX
dss-63	42	19	defined	define	VERB
dss-63	42	20	with	with	ADP
dss-63	42	21	great	great	ADJ
dss-63	42	22	accuracy	accuracy	NOUN
dss-63	43	1	[	[	X
dss-63	43	2	5	5	NUM
dss-63	43	3	]	]	PUNCT
dss-63	43	4	.	.	PUNCT
dss-63	44	1	in	in	ADP
dss-63	44	2	the	the	DET
dss-63	44	3	continuation	continuation	NOUN
dss-63	44	4	of	of	ADP
dss-63	44	5	this	this	DET
dss-63	44	6	chapter	chapter	NOUN
dss-63	44	7	,	,	PUNCT
dss-63	44	8	two	two	NUM
dss-63	44	9	models	model	NOUN
dss-63	44	10	for	for	ADP
dss-63	44	11	predicting	predict	VERB
dss-63	44	12	the	the	DET
dss-63	44	13	axial	axial	ADJ
dss-63	44	14	force	force	NOUN
dss-63	44	15	coefficient	coefficient	NOUN
dss-63	44	16	apfsds	apfsds	NOUN
dss-63	44	17	projectiles	projectile	NOUN
dss-63	44	18	will	will	AUX
dss-63	44	19	be	be	AUX
dss-63	44	20	presented	present	VERB
dss-63	44	21	.	.	PUNCT
dss-63	45	1	the	the	DET
dss-63	45	2	first	first	ADJ
dss-63	45	3	model	model	NOUN
dss-63	45	4	is	be	AUX
dss-63	45	5	presented	present	VERB
dss-63	45	6	in	in	ADP
dss-63	45	7	the	the	DET
dss-63	45	8	stanag	stanag	ADJ
dss-63	45	9	4655	4655	NUM
dss-63	45	10	ed.1	ed.1	PROPN
dss-63	45	11	standard	standard	NOUN
dss-63	45	12	.	.	PUNCT
dss-63	46	1	the	the	DET
dss-63	46	2	second	second	ADJ
dss-63	46	3	model	model	NOUN
dss-63	46	4	for	for	ADP
dss-63	46	5	predicting	predict	VERB
dss-63	46	6	the	the	DET
dss-63	46	7	axial	axial	ADJ
dss-63	46	8	force	force	NOUN
dss-63	46	9	coefficient	coefficient	NOUN
dss-63	46	10	of	of	ADP
dss-63	46	11	an	an	DET
dss-63	46	12	apfsds	apfsds	NOUN
dss-63	46	13	projectile	projectile	NOUN
dss-63	46	14	is	be	AUX
dss-63	46	15	the	the	DET
dss-63	46	16	numerical	numerical	ADJ
dss-63	46	17	model	model	NOUN
dss-63	46	18	(	(	PUNCT
dss-63	46	19	cfd	cfd	NOUN
dss-63	46	20	)	)	PUNCT
dss-63	46	21	.	.	PUNCT
dss-63	47	1	the	the	DET
dss-63	47	2	program	program	NOUN
dss-63	47	3	to	to	PART
dss-63	47	4	be	be	AUX
dss-63	47	5	used	use	VERB
dss-63	47	6	for	for	ADP
dss-63	47	7	the	the	DET
dss-63	47	8	numerical	numerical	PROPN
dss-63	47	9	simulation	simulation	PROPN
dss-63	47	10	of	of	ADP
dss-63	47	11	projectile	projectile	NOUN
dss-63	47	12	flow	flow	NOUN
dss-63	47	13	is	be	AUX
dss-63	47	14	ansys	ansys	PROPN
dss-63	47	15	fluent	fluent	ADJ
dss-63	47	16	.	.	PUNCT
dss-63	48	1	the	the	DET
dss-63	48	2	presentation	presentation	NOUN
dss-63	48	3	of	of	ADP
dss-63	48	4	the	the	DET
dss-63	48	5	models	model	NOUN
dss-63	48	6	as	as	ADV
dss-63	48	7	well	well	ADV
dss-63	48	8	as	as	ADP
dss-63	48	9	the	the	DET
dss-63	48	10	results	result	NOUN
dss-63	48	11	of	of	ADP
dss-63	48	12	the	the	DET
dss-63	48	13	calculations	calculation	NOUN
dss-63	48	14	will	will	AUX
dss-63	48	15	be	be	AUX
dss-63	48	16	shown	show	VERB
dss-63	48	17	below	below	ADP
dss-63	48	18	.	.	PUNCT
dss-63	49	1	2.1	2.1	NUM
dss-63	49	2	.	.	PUNCT
dss-63	49	3	model	model	NOUN
dss-63	49	4	defined	define	VERB
dss-63	49	5	in	in	ADP
dss-63	49	6	standard	standard	ADJ
dss-63	49	7	stanag	stanag	PROPN
dss-63	49	8	4655	4655	NUM
dss-63	49	9	(	(	PUNCT
dss-63	49	10	ed.1	ed.1	PROPN
dss-63	49	11	)	)	PUNCT
dss-63	49	12	the	the	DET
dss-63	49	13	standard	standard	NOUN
dss-63	49	14	,	,	PUNCT
dss-63	49	15	stanag	stanag	VERB
dss-63	49	16	4655	4655	NUM
dss-63	49	17	,	,	PUNCT
dss-63	49	18	shows	show	VERB
dss-63	49	19	an	an	DET
dss-63	49	20	engineering	engineering	NOUN
dss-63	49	21	model	model	NOUN
dss-63	49	22	for	for	ADP
dss-63	49	23	prediction	prediction	NOUN
dss-63	49	24	of	of	ADP
dss-63	49	25	the	the	DET
dss-63	49	26	aerodynamic	aerodynamic	ADJ
dss-63	49	27	coefficients	coefficient	NOUN
dss-63	49	28	of	of	ADP
dss-63	49	29	conventional	conventional	ADJ
dss-63	49	30	projectiles	projectile	NOUN
dss-63	49	31	.	.	PUNCT
dss-63	50	1	the	the	DET
dss-63	50	2	details	detail	NOUN
dss-63	50	3	of	of	ADP
dss-63	50	4	the	the	DET
dss-63	50	5	standard	standard	NOUN
dss-63	50	6	are	be	AUX
dss-63	50	7	given	give	VERB
dss-63	50	8	and	and	CCONJ
dss-63	50	9	are	be	AUX
dss-63	50	10	divided	divide	VERB
dss-63	50	11	into	into	ADP
dss-63	50	12	three	three	NUM
dss-63	50	13	parts	part	NOUN
dss-63	51	1	[	[	X
dss-63	51	2	6	6	NUM
dss-63	51	3	]	]	SYM
dss-63	51	4	:	:	PUNCT
dss-63	51	5	1	1	X
dss-63	51	6	.	.	X
dss-63	51	7	body	body	NOUN
dss-63	51	8	aerodynamics	aerodynamic	NOUN
dss-63	51	9	2	2	NUM
dss-63	51	10	.	.	X
dss-63	51	11	fin	fin	NOUN
dss-63	51	12	aerodynamics	aerodynamic	NOUN
dss-63	51	13	3	3	NUM
dss-63	51	14	.	.	PUNCT
dss-63	51	15	generalized	generalize	VERB
dss-63	51	16	yaw	yaw	NOUN
dss-63	51	17	aerodynamics	aerodynamic	NOUN
dss-63	51	18	the	the	DET
dss-63	51	19	axial	axial	ADJ
dss-63	51	20	force	force	NOUN
dss-63	51	21	of	of	ADP
dss-63	51	22	a	a	DET
dss-63	51	23	projectile	projectile	NOUN
dss-63	51	24	can	can	AUX
dss-63	51	25	be	be	AUX
dss-63	51	26	divided	divide	VERB
dss-63	51	27	into	into	ADP
dss-63	51	28	two	two	NUM
dss-63	51	29	parts	part	NOUN
dss-63	51	30	:	:	PUNCT
dss-63	51	31	pressure	pressure	NOUN
dss-63	51	32	axial	axial	ADJ
dss-63	51	33	force	force	NOUN
dss-63	51	34	and	and	CCONJ
dss-63	51	35	viscous	viscous	ADJ
dss-63	51	36	(	(	PUNCT
dss-63	51	37	friction	friction	NOUN
dss-63	51	38	)	)	PUNCT
dss-63	51	39	axial	axial	ADJ
dss-63	51	40	force	force	NOUN
dss-63	51	41	.	.	PUNCT
dss-63	52	1	the	the	DET
dss-63	52	2	complete	complete	ADJ
dss-63	52	3	axial	axial	ADJ
dss-63	52	4	force	force	NOUN
dss-63	52	5	coefficient	coefficient	NOUN
dss-63	52	6	cx	cx	PROPN
dss-63	52	7	is	be	AUX
dss-63	52	8	finally	finally	ADV
dss-63	52	9	obtained	obtain	VERB
dss-63	52	10	by	by	ADP
dss-63	52	11	summing	sum	VERB
dss-63	52	12	up	up	ADP
dss-63	52	13	the	the	DET
dss-63	52	14	relevant	relevant	ADJ
dss-63	52	15	,	,	PUNCT
dss-63	52	16	separately	separately	ADV
dss-63	52	17	calculated	calculate	VERB
dss-63	52	18	pressure	pressure	NOUN
dss-63	52	19	axial	axial	ADJ
dss-63	52	20	force	force	NOUN
dss-63	52	21	components	component	NOUN
dss-63	52	22	and	and	CCONJ
dss-63	52	23	the	the	DET
dss-63	52	24	viscous	viscous	ADJ
dss-63	52	25	axial	axial	ADJ
dss-63	52	26	force	force	NOUN
dss-63	52	27	obtained	obtain	VERB
dss-63	52	28	for	for	ADP
dss-63	52	29	entire	entire	ADJ
dss-63	52	30	wetted	wet	VERB
dss-63	52	31	area	area	NOUN
dss-63	52	32	.	.	PUNCT
dss-63	53	1	the	the	DET
dss-63	53	2	total	total	ADJ
dss-63	53	3	axial	axial	ADJ
dss-63	53	4	force	force	NOUN
dss-63	53	5	coefficient	coefficient	NOUN
dss-63	53	6	of	of	ADP
dss-63	53	7	apfsds	apfsds	NOUN
dss-63	53	8	projectile	projectile	NOUN
dss-63	53	9	(	(	PUNCT
dss-63	53	10	without	without	ADP
dss-63	53	11	sabot	sabot	NOUN
dss-63	53	12	)	)	PUNCT
dss-63	53	13	is	be	AUX
dss-63	53	14	[	[	X
dss-63	53	15	6	6	NUM
dss-63	53	16	]	]	SYM
dss-63	53	17	:	:	PUNCT
dss-63	53	18	𝐶	𝐶	PROPN
dss-63	53	19	=	=	PUNCT
dss-63	53	20	𝐶	𝐶	PROPN
dss-63	53	21	+	+	CCONJ
dss-63	53	22	𝐶	𝐶	PROPN
dss-63	53	23	(	(	PUNCT
dss-63	53	24	1	1	NUM
dss-63	53	25	)	)	PUNCT
dss-63	53	26	where	where	SCONJ
dss-63	53	27	𝐶	𝐶	PROPN
dss-63	53	28	is	be	AUX
dss-63	53	29	axial	axial	ADJ
dss-63	53	30	force	force	NOUN
dss-63	53	31	coefficient	coefficient	NOUN
dss-63	53	32	of	of	ADP
dss-63	53	33	projectile	projectile	NOUN
dss-63	53	34	body	body	NOUN
dss-63	53	35	and	and	CCONJ
dss-63	53	36	𝐶	𝐶	PROPN
dss-63	53	37	is	be	AUX
dss-63	53	38	axial	axial	ADJ
dss-63	53	39	force	force	NOUN
dss-63	53	40	coefficient	coefficient	NOUN
dss-63	53	41	of	of	ADP
dss-63	53	42	fins	fin	NOUN
dss-63	53	43	.	.	PUNCT
dss-63	54	1	2.1.1	2.1.1	X
dss-63	54	2	.	.	PUNCT
dss-63	54	3	axial	axial	ADJ
dss-63	54	4	force	force	NOUN
dss-63	54	5	computation	computation	NOUN
dss-63	54	6	methods	method	NOUN
dss-63	54	7	for	for	ADP
dss-63	54	8	projectile	projectile	NOUN
dss-63	54	9	body	body	NOUN
dss-63	54	10	the	the	DET
dss-63	54	11	axial	axial	ADJ
dss-63	54	12	force	force	NOUN
dss-63	54	13	of	of	ADP
dss-63	54	14	a	a	DET
dss-63	54	15	projectile	projectile	NOUN
dss-63	54	16	consists	consist	VERB
dss-63	54	17	of	of	ADP
dss-63	54	18	the	the	DET
dss-63	54	19	pressure	pressure	NOUN
dss-63	54	20	axial	axial	ADJ
dss-63	54	21	force	force	NOUN
dss-63	54	22	of	of	ADP
dss-63	54	23	the	the	DET
dss-63	54	24	nose	nose	NOUN
dss-63	54	25	,	,	PUNCT
dss-63	54	26	base	base	NOUN
dss-63	54	27	(	(	PUNCT
dss-63	54	28	including	include	VERB
dss-63	54	29	possible	possible	ADJ
dss-63	54	30	tail	tail	NOUN
dss-63	54	31	boom	boom	NOUN
dss-63	54	32	)	)	PUNCT
dss-63	54	33	,	,	PUNCT
dss-63	54	34	protruding	protrude	VERB
dss-63	54	35	(	(	PUNCT
dss-63	54	36	driving	drive	VERB
dss-63	54	37	band	band	NOUN
dss-63	54	38	,	,	PUNCT
dss-63	54	39	grooves	groove	NOUN
dss-63	54	40	and	and	CCONJ
dss-63	54	41	steps	step	NOUN
dss-63	54	42	)	)	PUNCT
dss-63	54	43	,	,	PUNCT
dss-63	54	44	and	and	CCONJ
dss-63	54	45	of	of	ADP
dss-63	54	46	the	the	DET
dss-63	54	47	viscous	viscous	ADJ
dss-63	54	48	axial	axial	ADJ
dss-63	54	49	force	force	NOUN
dss-63	54	50	as	as	ADP
dss-63	54	51	a	a	DET
dss-63	54	52	sum	sum	NOUN
dss-63	54	53	of	of	ADP
dss-63	54	54	the	the	DET
dss-63	54	55	following	follow	VERB
dss-63	54	56	form	form	NOUN
dss-63	54	57	[	[	X
dss-63	54	58	6	6	NUM
dss-63	54	59	]	]	SYM
dss-63	54	60	:	:	PUNCT
dss-63	54	61	𝐶	𝐶	PROPN
dss-63	54	62	=	=	PUNCT
dss-63	54	63	𝐶	𝐶	PROPN
dss-63	54	64	+	+	CCONJ
dss-63	54	65	𝐶	𝐶	PROPN
dss-63	54	66	+	+	CCONJ
dss-63	54	67	𝐶	𝐶	PROPN
dss-63	54	68	+	+	CCONJ
dss-63	54	69	𝐶	𝐶	PROPN
dss-63	54	70	(	(	PUNCT
dss-63	54	71	2	2	NUM
dss-63	54	72	)	)	PUNCT
dss-63	54	73	where	where	SCONJ
dss-63	54	74	𝐶	𝐶	PROPN
dss-63	54	75	is	be	AUX
dss-63	54	76	axial	axial	ADJ
dss-63	54	77	force	force	NOUN
dss-63	54	78	coefficient	coefficient	NOUN
dss-63	54	79	of	of	ADP
dss-63	54	80	the	the	DET
dss-63	54	81	nose	nose	NOUN
dss-63	54	82	,	,	PUNCT
dss-63	54	83	𝐶	𝐶	PROPN
dss-63	54	84	is	be	AUX
dss-63	54	85	axial	axial	ADJ
dss-63	54	86	force	force	NOUN
dss-63	54	87	coefficient	coefficient	NOUN
dss-63	54	88	of	of	ADP
dss-63	54	89	the	the	DET
dss-63	54	90	base	base	NOUN
dss-63	54	91	,	,	PUNCT
dss-63	54	92	𝐶	𝐶	PROPN
dss-63	54	93	is	be	AUX
dss-63	54	94	axial	axial	ADJ
dss-63	54	95	force	force	NOUN
dss-63	54	96	coefficient	coefficient	NOUN
dss-63	54	97	of	of	ADP
dss-63	54	98	the	the	DET
dss-63	54	99	protruding	protruding	NOUN
dss-63	54	100	and	and	CCONJ
dss-63	54	101	𝐶	𝐶	PROPN
dss-63	54	102	is	be	AUX
dss-63	54	103	viscous	viscous	ADJ
dss-63	54	104	axial	axial	ADJ
dss-63	54	105	force	force	NOUN
dss-63	54	106	coefficient	coefficient	NOUN
dss-63	54	107	.	.	PUNCT
dss-63	55	1	the	the	DET
dss-63	55	2	axial	axial	ADJ
dss-63	55	3	force	force	NOUN
dss-63	55	4	coefficient	coefficient	NOUN
dss-63	55	5	of	of	ADP
dss-63	55	6	the	the	DET
dss-63	55	7	nose	nose	NOUN
dss-63	55	8	at	at	ADP
dss-63	55	9	supersonic	supersonic	ADJ
dss-63	55	10	region	region	NOUN
dss-63	55	11	for	for	ADP
dss-63	55	12	a	a	DET
dss-63	55	13	cone	cone	NOUN
dss-63	55	14	is	be	AUX
dss-63	55	15	calculated	calculate	VERB
dss-63	55	16	according	accord	VERB
dss-63	55	17	to	to	ADP
dss-63	55	18	the	the	DET
dss-63	55	19	formula	formula	NOUN
dss-63	55	20	(	(	PUNCT
dss-63	55	21	3	3	X
dss-63	55	22	)	)	PUNCT
dss-63	55	23	giving	give	VERB
dss-63	55	24	the	the	DET
dss-63	55	25	pressure	pressure	NOUN
dss-63	55	26	coefficient	coefficient	NOUN
dss-63	55	27	on	on	ADP
dss-63	55	28	the	the	DET
dss-63	55	29	nose	nose	NOUN
dss-63	55	30	surface	surface	NOUN
dss-63	56	1	[	[	X
dss-63	56	2	6	6	NUM
dss-63	56	3	]	]	PUNCT
dss-63	56	4	.	.	PUNCT
dss-63	57	1	the	the	DET
dss-63	57	2	second	second	ADJ
dss-63	57	3	term	term	NOUN
dss-63	57	4	takes	take	VERB
dss-63	57	5	into	into	ADP
dss-63	57	6	account	account	NOUN
dss-63	57	7	the	the	DET
dss-63	57	8	nose	nose	NOUN
dss-63	57	9	shape	shape	NOUN
dss-63	57	10	on	on	ADP
dss-63	57	11	drag	drag	NOUN
dss-63	57	12	force	force	NOUN
dss-63	57	13	(	(	PUNCT
dss-63	57	14	see	see	VERB
dss-63	57	15	fig	fig	NOUN
dss-63	57	16	.	.	PUNCT
dss-63	58	1	3	3	NUM
dss-63	58	2	)	)	PUNCT
dss-63	58	3	.	.	PUNCT
dss-63	59	1	𝐶	𝐶	PROPN
dss-63	59	2	=	=	SYM
dss-63	59	3	𝐶	𝐶	PROPN
dss-63	59	4	=	=	PUNCT
dss-63	59	5	𝑘	𝑘	PROPN
dss-63	59	6	sin	sin	NOUN
dss-63	59	7	𝜀	𝜀	NOUN
dss-63	59	8	+	+	CCONJ
dss-63	59	9	𝑘	𝑘	DET
dss-63	59	10	sin	sin	NOUN
dss-63	59	11	𝜀	𝜀	PROPN
dss-63	59	12	(	(	PUNCT
dss-63	59	13	cos	cos	PROPN
dss-63	59	14	𝜀	𝜀	PROPN
dss-63	59	15	)	)	PUNCT
dss-63	59	16	(	(	PUNCT
dss-63	59	17	,	,	PUNCT
dss-63	59	18	,	,	PUNCT
dss-63	59	19	)	)	PUNCT
dss-63	59	20	𝑀	𝑀	PROPN
dss-63	60	1	+	+	CCONJ
dss-63	60	2	[	[	X
dss-63	60	3	𝑅𝑅(1	𝑅𝑅(1	PROPN
dss-63	60	4	−	−	PROPN
dss-63	60	5	𝑅𝑅	𝑅𝑅	PROPN
dss-63	60	6	)	)	PUNCT
dss-63	60	7	]	]	PUNCT
dss-63	60	8	,	,	PUNCT
dss-63	60	9	cos	cos	PROPN
dss-63	60	10	𝜀	𝜀	PROPN
dss-63	60	11	(	(	PUNCT
dss-63	60	12	𝑀	𝑀	PROPN
dss-63	60	13	≥	≥	NOUN
dss-63	60	14	1	1	NUM
dss-63	60	15	)	)	PUNCT
dss-63	60	16	(	(	PUNCT
dss-63	60	17	3	3	X
dss-63	60	18	)	)	PUNCT
dss-63	60	19	the	the	DET
dss-63	60	20	coefficient	coefficient	NOUN
dss-63	60	21	k1	k1	NOUN
dss-63	60	22	is	be	AUX
dss-63	60	23	an	an	DET
dss-63	60	24	average	average	ADJ
dss-63	60	25	pressure	pressure	NOUN
dss-63	60	26	coefficient	coefficient	NOUN
dss-63	60	27	on	on	ADP
dss-63	60	28	a	a	DET
dss-63	60	29	blunt	blunt	ADJ
dss-63	60	30	projectile	projectile	NOUN
dss-63	60	31	face	face	NOUN
dss-63	60	32	behind	behind	ADP
dss-63	60	33	a	a	DET
dss-63	60	34	normal	normal	ADJ
dss-63	60	35	shock	shock	NOUN
dss-63	60	36	wave	wave	NOUN
dss-63	60	37	and	and	CCONJ
dss-63	60	38	the	the	DET
dss-63	60	39	coefficient	coefficient	PROPN
dss-63	60	40	k2	k2	PROPN
dss-63	60	41	takes	take	VERB
dss-63	60	42	into	into	ADP
dss-63	60	43	account	account	NOUN
dss-63	60	44	the	the	DET
dss-63	60	45	shape	shape	NOUN
dss-63	60	46	of	of	ADP
dss-63	60	47	the	the	DET
dss-63	60	48	nose	nose	NOUN
dss-63	60	49	as	as	ADP
dss-63	60	50	a	a	DET
dss-63	60	51	function	function	NOUN
dss-63	60	52	of	of	ADP
dss-63	60	53	radius	radius	NOUN
dss-63	60	54	ratio	ratio	NOUN
dss-63	60	55	parameter	parameter	NOUN
dss-63	60	56	rr	rr	PROPN
dss-63	61	1	[	[	X
dss-63	61	2	6	6	NUM
dss-63	61	3	]	]	PUNCT
dss-63	61	4	.	.	PUNCT
dss-63	62	1	dss	dss	NOUN
dss-63	62	2	vol	vol	NOUN
dss-63	62	3	.	.	PROPN
dss-63	63	1	1	1	NUM
dss-63	63	2	,	,	PUNCT
dss-63	63	3	no	no	INTJ
dss-63	63	4	.	.	NOUN
dss-63	63	5	1	1	NUM
dss-63	63	6	,	,	PUNCT
dss-63	63	7	december	december	PROPN
dss-63	63	8	2020	2020	NUM
dss-63	63	9	,	,	PUNCT
dss-63	63	10	pp.1	pp.1	NOUN
dss-63	63	11	-	-	PUNCT
dss-63	63	12	15	15	NUM
dss-63	63	13	4	4	NUM
dss-63	63	14	figure	figure	NOUN
dss-63	63	15	3	3	NUM
dss-63	63	16	.	.	PUNCT
dss-63	63	17	variable	variable	PROPN
dss-63	63	18	rr	rr	PROPN
dss-63	63	19	(	(	PUNCT
dss-63	63	20	radius	radius	NOUN
dss-63	63	21	ratio	ratio	NOUN
dss-63	63	22	)	)	PUNCT
dss-63	64	1	[	[	X
dss-63	64	2	6	6	NUM
dss-63	64	3	]	]	PUNCT
dss-63	64	4	the	the	DET
dss-63	64	5	coefficient	coefficient	NOUN
dss-63	64	6	k1	k1	PROPN
dss-63	64	7	is	be	AUX
dss-63	64	8	computed	compute	VERB
dss-63	64	9	from	from	ADP
dss-63	64	10	(	(	PUNCT
dss-63	64	11	4	4	NUM
dss-63	64	12	)	)	PUNCT
dss-63	64	13	,	,	PUNCT
dss-63	64	14	and	and	CCONJ
dss-63	64	15	the	the	DET
dss-63	64	16	coefficient	coefficient	NOUN
dss-63	64	17	k2	k2	PROPN
dss-63	64	18	is	be	AUX
dss-63	64	19	computed	compute	VERB
dss-63	64	20	according	accord	VERB
dss-63	64	21	to	to	ADP
dss-63	64	22	(	(	PUNCT
dss-63	64	23	5	5	NUM
dss-63	64	24	)	)	PUNCT
dss-63	64	25	.	.	PUNCT
dss-63	65	1	the	the	DET
dss-63	65	2	radius	radius	PROPN
dss-63	65	3	ratio	ratio	PROPN
dss-63	65	4	rr	rr	PROPN
dss-63	65	5	in	in	ADP
dss-63	65	6	the	the	DET
dss-63	65	7	formulae	formulae	NOUN
dss-63	65	8	is	be	AUX
dss-63	65	9	an	an	DET
dss-63	65	10	inverse	inverse	NOUN
dss-63	65	11	of	of	ADP
dss-63	65	12	the	the	DET
dss-63	65	13	ratio	ratio	NOUN
dss-63	65	14	of	of	ADP
dss-63	65	15	the	the	DET
dss-63	65	16	true	true	ADJ
dss-63	65	17	radius	radius	NOUN
dss-63	65	18	of	of	ADP
dss-63	65	19	curvature	curvature	NOUN
dss-63	65	20	and	and	CCONJ
dss-63	65	21	the	the	DET
dss-63	65	22	tangent	tangent	ADJ
dss-63	65	23	-	-	PUNCT
dss-63	65	24	ogive	ogive	ADJ
dss-63	65	25	radius	radius	NOUN
dss-63	65	26	r	r	NOUN
dss-63	65	27	’	'	PUNCT
dss-63	65	28	(	(	PUNCT
dss-63	65	29	formula	formula	NOUN
dss-63	65	30	6	6	NUM
dss-63	65	31	)	)	PUNCT
dss-63	65	32	.	.	PUNCT
dss-63	66	1	the	the	DET
dss-63	66	2	nose	nose	NOUN
dss-63	66	3	contour	contour	NOUN
dss-63	66	4	line	line	NOUN
dss-63	66	5	is	be	AUX
dss-63	66	6	to	to	PART
dss-63	66	7	be	be	AUX
dss-63	66	8	extended	extend	VERB
dss-63	66	9	to	to	ADP
dss-63	66	10	the	the	DET
dss-63	66	11	projectile	projectile	ADJ
dss-63	66	12	center	center	NOUN
dss-63	66	13	line	line	NOUN
dss-63	66	14	in	in	ADP
dss-63	66	15	case	case	NOUN
dss-63	66	16	of	of	ADP
dss-63	66	17	blunted	blunt	VERB
dss-63	66	18	nose	nose	NOUN
dss-63	66	19	(	(	PUNCT
dss-63	66	20	see	see	VERB
dss-63	66	21	figure	figure	NOUN
dss-63	66	22	3	3	NUM
dss-63	66	23	)	)	PUNCT
dss-63	66	24	.	.	PUNCT
dss-63	67	1	the	the	DET
dss-63	67	2	extended	extended	ADJ
dss-63	67	3	nose	nose	NOUN
dss-63	67	4	length	length	NOUN
dss-63	67	5	is	be	AUX
dss-63	67	6	used	use	VERB
dss-63	67	7	in	in	ADP
dss-63	67	8	formula	formula	NOUN
dss-63	67	9	(	(	PUNCT
dss-63	67	10	6	6	NUM
dss-63	67	11	)	)	PUNCT
dss-63	67	12	.	.	PUNCT
dss-63	68	1	the	the	DET
dss-63	68	2	ratio	ratio	NOUN
dss-63	68	3	rr	rr	PROPN
dss-63	68	4	is	be	AUX
dss-63	68	5	zero	zero	NUM
dss-63	68	6	for	for	ADP
dss-63	68	7	cones	cone	NOUN
dss-63	68	8	[	[	X
dss-63	68	9	6	6	NUM
dss-63	68	10	]	]	PUNCT
dss-63	68	11	.	.	PUNCT
dss-63	69	1	𝑘	𝑘	X
dss-63	69	2	=	=	SYM
dss-63	69	3	5	5	NUM
dss-63	69	4	3	3	NUM
dss-63	69	5	−	−	NOUN
dss-63	69	6	2	2	NUM
dss-63	69	7	3	3	NUM
dss-63	69	8	𝑀√	𝑀√	X
dss-63	69	9	(	(	PUNCT
dss-63	69	10	𝑀	𝑀	PROPN
dss-63	69	11	≥	≥	NOUN
dss-63	69	12	1	1	NUM
dss-63	69	13	)	)	PUNCT
dss-63	69	14	(	(	PUNCT
dss-63	69	15	4	4	X
dss-63	69	16	)	)	PUNCT
dss-63	70	1	𝑘	𝑘	NOUN
dss-63	70	2	=	=	SYM
dss-63	70	3	0,9	0,9	NUM
dss-63	70	4	−	−	NUM
dss-63	70	5	0,9𝑅𝑅	0,9𝑅𝑅	NOUN
dss-63	71	1	+	+	CCONJ
dss-63	71	2	𝑅𝑅	𝑅𝑅	PROPN
dss-63	71	3	(	(	PUNCT
dss-63	71	4	5	5	NUM
dss-63	71	5	)	)	PUNCT
dss-63	71	6	𝑟	𝑟	NOUN
dss-63	71	7	,	,	PUNCT
dss-63	71	8	=	=	SYM
dss-63	71	9	𝑙	𝑙	NOUN
dss-63	71	10	,	,	PUNCT
dss-63	71	11	𝑑	𝑑	PROPN
dss-63	71	12	+	+	PROPN
dss-63	71	13	𝑑	𝑑	PROPN
dss-63	71	14	4	4	NUM
dss-63	71	15	(	(	PUNCT
dss-63	71	16	6	6	NUM
dss-63	71	17	)	)	PUNCT
dss-63	71	18	the	the	DET
dss-63	71	19	axial	axial	ADJ
dss-63	71	20	force	force	NOUN
dss-63	71	21	coefficient	coefficient	NOUN
dss-63	71	22	of	of	ADP
dss-63	71	23	the	the	DET
dss-63	71	24	base	base	NOUN
dss-63	71	25	𝑪𝒙𝒃	𝑪𝒙𝒃	PROPN
dss-63	71	26	is	be	AUX
dss-63	71	27	computed	compute	VERB
dss-63	71	28	from	from	ADP
dss-63	71	29	formula	formula	NOUN
dss-63	71	30	(	(	PUNCT
dss-63	71	31	7	7	NUM
dss-63	71	32	)	)	PUNCT
dss-63	72	1	[	[	X
dss-63	72	2	6	6	NUM
dss-63	72	3	]	]	SYM
dss-63	72	4	:	:	PUNCT
dss-63	72	5	𝐶	𝐶	X
dss-63	72	6	=	=	PUNCT
dss-63	73	1	−𝐶	−𝐶	PROPN
dss-63	73	2	𝑑	𝑑	PROPN
dss-63	73	3	𝑑	𝑑	PROPN
dss-63	73	4	(	(	PUNCT
dss-63	73	5	7	7	NUM
dss-63	73	6	)	)	PUNCT
dss-63	73	7	the	the	DET
dss-63	73	8	pressure	pressure	NOUN
dss-63	73	9	coefficient	coefficient	NOUN
dss-63	73	10	𝐶	𝐶	PROPN
dss-63	73	11	is	be	AUX
dss-63	73	12	computed	compute	VERB
dss-63	73	13	as	as	ADP
dss-63	73	14	[	[	X
dss-63	73	15	6	6	NUM
dss-63	73	16	]	]	SYM
dss-63	73	17	:	:	PUNCT
dss-63	73	18	𝐶	𝐶	PROPN
dss-63	73	19	=	=	PROPN
dss-63	73	20	𝐶	𝐶	PROPN
dss-63	73	21	𝑑	𝑑	PROPN
dss-63	73	22	𝑑	𝑑	NOUN
dss-63	73	23	𝑥	𝑥	NOUN
dss-63	73	24	=	=	SYM
dss-63	73	25	2	2	NUM
dss-63	73	26	when	when	SCONJ
dss-63	73	27	𝑀𝑎	𝑀𝑎	PROPN
dss-63	73	28	<	<	X
dss-63	73	29	0.9	0.9	NUM
dss-63	73	30	,	,	PUNCT
dss-63	73	31	otherwise	otherwise	ADV
dss-63	73	32	1	1	NUM
dss-63	73	33	(	(	PUNCT
dss-63	73	34	8)	8)	NUM
dss-63	73	35	the	the	DET
dss-63	73	36	pressure	pressure	NOUN
dss-63	73	37	coefficient	coefficient	NOUN
dss-63	73	38	on	on	ADP
dss-63	73	39	the	the	DET
dss-63	73	40	base	base	NOUN
dss-63	73	41	of	of	ADP
dss-63	73	42	a	a	DET
dss-63	73	43	long	long	ADJ
dss-63	73	44	cylinder	cylinder	NOUN
dss-63	73	45	𝐶	𝐶	PROPN
dss-63	73	46	is	be	AUX
dss-63	73	47	computed	compute	VERB
dss-63	73	48	at	at	ADP
dss-63	73	49	supersonic	supersonic	ADJ
dss-63	73	50	speeds	speed	NOUN
dss-63	73	51	(	(	PUNCT
dss-63	73	52	1.1	1.1	NUM
dss-63	73	53	<	<	X
dss-63	73	54	ma	ma	PROPN
dss-63	73	55	)	)	PUNCT
dss-63	74	1	[	[	X
dss-63	74	2	6	6	NUM
dss-63	74	3	]	]	SYM
dss-63	74	4	:	:	PUNCT
dss-63	74	5	𝐶	𝐶	PROPN
dss-63	74	6	=	=	SYM
dss-63	74	7	−0,31𝑒	−0,31𝑒	PROPN
dss-63	74	8	,	,	PUNCT
dss-63	74	9	(	(	PUNCT
dss-63	74	10	9	9	X
dss-63	74	11	)	)	PUNCT
dss-63	74	12	viscous	viscous	ADJ
dss-63	74	13	axial	axial	ADJ
dss-63	74	14	force	force	NOUN
dss-63	74	15	coefficient	coefficient	NOUN
dss-63	74	16	𝑪𝒙𝒇	𝑪𝒙𝒇	NOUN
dss-63	74	17	is	be	AUX
dss-63	74	18	calculated	calculate	VERB
dss-63	74	19	by	by	ADP
dss-63	74	20	formula	formula	NOUN
dss-63	74	21	[	[	X
dss-63	74	22	6	6	NUM
dss-63	74	23	]	]	SYM
dss-63	74	24	:	:	PUNCT
dss-63	74	25	𝐶	𝐶	PROPN
dss-63	74	26	=	=	SYM
dss-63	74	27	𝐶	𝐶	PROPN
dss-63	74	28	𝑆	𝑆	PROPN
dss-63	74	29	𝑆	𝑆	PROPN
dss-63	74	30	(	(	PUNCT
dss-63	74	31	10	10	NUM
dss-63	74	32	)	)	PUNCT
dss-63	74	33	where	where	SCONJ
dss-63	74	34	𝐶	𝐶	PROPN
dss-63	74	35	is	be	AUX
dss-63	74	36	average	average	ADJ
dss-63	74	37	friction	friction	NOUN
dss-63	74	38	coefficient	coefficient	NOUN
dss-63	74	39	(	(	PUNCT
dss-63	74	40	11	11	NUM
dss-63	74	41	or	or	CCONJ
dss-63	74	42	12	12	NUM
dss-63	74	43	)	)	PUNCT
dss-63	74	44	for	for	ADP
dss-63	74	45	a	a	DET
dss-63	74	46	smooth	smooth	ADJ
dss-63	74	47	flat	flat	NOUN
dss-63	74	48	,	,	PUNCT
dss-63	74	49	𝑆	𝑆	PROPN
dss-63	74	50	is	be	AUX
dss-63	74	51	computed	compute	VERB
dss-63	74	52	wetted	wet	VERB
dss-63	74	53	surface	surface	NOUN
dss-63	74	54	area	area	NOUN
dss-63	74	55	and	and	CCONJ
dss-63	74	56	s	s	NOUN
dss-63	74	57	is	be	AUX
dss-63	74	58	reference	reference	NOUN
dss-63	74	59	area	area	NOUN
dss-63	74	60	.	.	PUNCT
dss-63	75	1	the	the	DET
dss-63	75	2	turbulent	turbulent	ADJ
dss-63	75	3	boundary	boundary	ADJ
dss-63	75	4	-	-	PUNCT
dss-63	75	5	layer	layer	NOUN
dss-63	75	6	friction	friction	NOUN
dss-63	75	7	coefficient	coefficient	NOUN
dss-63	75	8	𝐶	𝐶	PROPN
dss-63	75	9	is	be	AUX
dss-63	75	10	computed	compute	VERB
dss-63	75	11	by	by	ADP
dss-63	75	12	equation	equation	NOUN
dss-63	75	13	[	[	X
dss-63	75	14	6	6	NUM
dss-63	75	15	]	]	X
dss-63	75	16	:	:	PUNCT
dss-63	75	17	𝐶	𝐶	PROPN
dss-63	75	18	=	=	SYM
dss-63	75	19	0,455	0,455	NUM
dss-63	75	20	(	(	PUNCT
dss-63	75	21	log	log	NOUN
dss-63	75	22	𝑅𝑒	𝑅𝑒	PROPN
dss-63	75	23	)	)	PUNCT
dss-63	75	24	,	,	PUNCT
dss-63	75	25	(	(	PUNCT
dss-63	75	26	1	1	NUM
dss-63	75	27	+	+	SYM
dss-63	75	28	0,21𝑀	0,21𝑀	NUM
dss-63	75	29	)	)	PUNCT
dss-63	75	30	,	,	PUNCT
dss-63	75	31	(	(	PUNCT
dss-63	75	32	11	11	NUM
dss-63	75	33	)	)	PUNCT
dss-63	75	34	where	where	SCONJ
dss-63	75	35	𝑅𝑒	𝑅𝑒	PROPN
dss-63	75	36	is	be	AUX
dss-63	75	37	reynolds	reynolds	PROPN
dss-63	75	38	number	number	NOUN
dss-63	75	39	,	,	PUNCT
dss-63	76	1	𝑙	𝑙	PRON
dss-63	76	2	is	be	AUX
dss-63	76	3	projectile	projectile	NOUN
dss-63	76	4	/	/	SYM
dss-63	76	5	nose	nose	NOUN
dss-63	76	6	length	length	NOUN
dss-63	76	7	and	and	CCONJ
dss-63	76	8	𝑣	𝑣	PROPN
dss-63	76	9	is	be	AUX
dss-63	76	10	kinematic	kinematic	ADJ
dss-63	76	11	viscosity	viscosity	NOUN
dss-63	76	12	.	.	PUNCT
dss-63	77	1	the	the	DET
dss-63	77	2	laminar	laminar	ADJ
dss-63	77	3	boundary	boundary	ADJ
dss-63	77	4	-	-	PUNCT
dss-63	77	5	layer	layer	NOUN
dss-63	77	6	friction	friction	NOUN
dss-63	77	7	coefficient	coefficient	NOUN
dss-63	77	8	𝐶	𝐶	PROPN
dss-63	77	9	is	be	AUX
dss-63	77	10	computed	compute	VERB
dss-63	77	11	by	by	ADP
dss-63	77	12	equation	equation	NOUN
dss-63	77	13	[	[	X
dss-63	77	14	6	6	NUM
dss-63	77	15	]	]	X
dss-63	77	16	:	:	PUNCT
dss-63	77	17	𝐶	𝐶	PROPN
dss-63	77	18	=	=	SYM
dss-63	77	19	1,328	1,328	NUM
dss-63	77	20	√𝑅𝑒	√𝑅𝑒	NOUN
dss-63	77	21	(	(	PUNCT
dss-63	77	22	1	1	NUM
dss-63	77	23	+	+	SYM
dss-63	77	24	0,21𝑀	0,21𝑀	NUM
dss-63	77	25	)	)	PUNCT
dss-63	77	26	,	,	PUNCT
dss-63	77	27	(	(	PUNCT
dss-63	77	28	12	12	NUM
dss-63	77	29	)	)	PUNCT
dss-63	77	30	dss	dss	NOUN
dss-63	77	31	vol	vol	NOUN
dss-63	77	32	.	.	PROPN
dss-63	78	1	1	1	NUM
dss-63	78	2	,	,	PUNCT
dss-63	78	3	no	no	INTJ
dss-63	78	4	.	.	NOUN
dss-63	78	5	1	1	NUM
dss-63	78	6	,	,	PUNCT
dss-63	78	7	december	december	PROPN
dss-63	78	8	2020	2020	NUM
dss-63	78	9	,	,	PUNCT
dss-63	78	10	pp.1	pp.1	NOUN
dss-63	78	11	-	-	PUNCT
dss-63	78	12	15	15	NUM
dss-63	78	13	5	5	NUM
dss-63	78	14	the	the	DET
dss-63	78	15	kinematic	kinematic	ADJ
dss-63	78	16	viscosity	viscosity	NOUN
dss-63	78	17	𝑣	𝑣	NOUN
dss-63	78	18	is	be	AUX
dss-63	78	19	computed	compute	VERB
dss-63	78	20	from	from	ADP
dss-63	78	21	[	[	X
dss-63	78	22	6	6	NUM
dss-63	78	23	]	]	PUNCT
dss-63	78	24	:	:	PUNCT
dss-63	78	25	𝑣	𝑣	X
dss-63	78	26	=	=	PUNCT
dss-63	78	27	𝜇	𝜇	X
dss-63	78	28	𝜌	𝜌	X
dss-63	78	29	(	(	PUNCT
dss-63	78	30	13	13	NUM
dss-63	78	31	)	)	PUNCT
dss-63	78	32	the	the	DET
dss-63	78	33	air	air	NOUN
dss-63	78	34	density	density	NOUN
dss-63	78	35	ρ	ρ	PROPN
dss-63	78	36	is	be	AUX
dss-63	78	37	computed	compute	VERB
dss-63	78	38	according	accord	VERB
dss-63	78	39	to	to	ADP
dss-63	78	40	icao	icao	PROPN
dss-63	78	41	standard	standard	PROPN
dss-63	78	42	atmosphere	atmosphere	PROPN
dss-63	78	43	.	.	PUNCT
dss-63	79	1	the	the	DET
dss-63	79	2	dynamic	dynamic	ADJ
dss-63	79	3	viscosity	viscosity	NOUN
dss-63	79	4	μ	μ	NOUN
dss-63	79	5	is	be	AUX
dss-63	79	6	obtained	obtain	VERB
dss-63	79	7	from	from	ADP
dss-63	79	8	the	the	DET
dss-63	79	9	sutherland	sutherland	NOUN
dss-63	79	10	formula	formula	NOUN
dss-63	79	11	[	[	X
dss-63	79	12	6	6	NUM
dss-63	79	13	]	]	PUNCT
dss-63	79	14	:	:	PUNCT
dss-63	79	15	𝜇	𝜇	ADP
dss-63	79	16	=	=	PROPN
dss-63	79	17	𝐶	𝐶	PROPN
dss-63	79	18	𝑇	𝑇	PROPN
dss-63	79	19	,	,	PUNCT
dss-63	79	20	𝑇	𝑇	PROPN
dss-63	79	21	+	+	CCONJ
dss-63	79	22	𝐶	𝐶	PROPN
dss-63	79	23	(	(	PUNCT
dss-63	79	24	14	14	NUM
dss-63	79	25	)	)	PUNCT
dss-63	79	26	where	where	SCONJ
dss-63	79	27	𝐶	𝐶	PROPN
dss-63	79	28	=	=	SYM
dss-63	79	29	1,458𝑒	1,458𝑒	PROPN
dss-63	79	30	/	/	SYM
dss-63	79	31	,	,	PUNCT
dss-63	79	32	𝐶	𝐶	PROPN
dss-63	79	33	=	=	PUNCT
dss-63	79	34	110,4	110,4	PROPN
dss-63	80	1	[	[	X
dss-63	80	2	𝐾	𝐾	X
dss-63	80	3	]	]	PUNCT
dss-63	80	4	and	and	CCONJ
dss-63	80	5	t	t	PROPN
dss-63	80	6	is	be	AUX
dss-63	80	7	air	air	NOUN
dss-63	80	8	temperature	temperature	NOUN
dss-63	80	9	,	,	PUNCT
dss-63	80	10	obtained	obtain	VERB
dss-63	80	11	from	from	ADP
dss-63	80	12	icao	icao	PROPN
dss-63	80	13	atmosphere	atmosphere	PROPN
dss-63	80	14	model	model	NOUN
dss-63	80	15	.	.	PUNCT
dss-63	81	1	the	the	DET
dss-63	81	2	axial	axial	ADJ
dss-63	81	3	force	force	NOUN
dss-63	81	4	coefficient	coefficient	NOUN
dss-63	81	5	of	of	ADP
dss-63	81	6	protruding	protrude	VERB
dss-63	81	7	𝑪𝒙𝒑𝒓	𝑪𝒙𝒑𝒓	PROPN
dss-63	81	8	is	be	AUX
dss-63	81	9	computed	compute	VERB
dss-63	81	10	by	by	ADP
dss-63	81	11	estimating	estimate	VERB
dss-63	81	12	the	the	DET
dss-63	81	13	forward	forward	ADJ
dss-63	81	14	and	and	CCONJ
dss-63	81	15	backward	backward	ADV
dss-63	81	16	facing	face	VERB
dss-63	81	17	surface	surface	NOUN
dss-63	81	18	pressure	pressure	NOUN
dss-63	81	19	drag	drag	VERB
dss-63	81	20	separately	separately	ADV
dss-63	82	1	[	[	X
dss-63	82	2	6	6	NUM
dss-63	82	3	]	]	SYM
dss-63	82	4	:	:	PUNCT
dss-63	82	5	𝐶	𝐶	PROPN
dss-63	82	6	=	=	PUNCT
dss-63	82	7	𝐶	𝐶	PROPN
dss-63	82	8	+	+	CCONJ
dss-63	82	9	∆𝐶	∆𝐶	PROPN
dss-63	82	10	(	(	PUNCT
dss-63	82	11	15	15	NUM
dss-63	82	12	)	)	PUNCT
dss-63	82	13	the	the	DET
dss-63	82	14	pressure	pressure	NOUN
dss-63	82	15	coefficient	coefficient	NOUN
dss-63	82	16	sum	sum	NOUN
dss-63	82	17	(	(	PUNCT
dss-63	82	18	of	of	ADP
dss-63	82	19	the	the	DET
dss-63	82	20	backward	backward	ADJ
dss-63	82	21	and	and	CCONJ
dss-63	82	22	forward	forward	ADV
dss-63	82	23	facing	face	VERB
dss-63	82	24	parts	part	NOUN
dss-63	82	25	)	)	PUNCT
dss-63	82	26	𝐶	𝐶	PROPN
dss-63	82	27	will	will	AUX
dss-63	82	28	change	change	VERB
dss-63	82	29	linearly	linearly	ADV
dss-63	82	30	between	between	ADP
dss-63	82	31	the	the	DET
dss-63	82	32	sum	sum	NOUN
dss-63	82	33	and	and	CCONJ
dss-63	82	34	0	0	NUM
dss-63	82	35	when	when	SCONJ
dss-63	82	36	the	the	DET
dss-63	82	37	ratio	ratio	NOUN
dss-63	82	38	e	e	PROPN
dss-63	82	39	/	/	SYM
dss-63	82	40	h	h	NOUN
dss-63	82	41	(	(	PUNCT
dss-63	82	42	width	width	ADJ
dss-63	82	43	/	/	SYM
dss-63	82	44	depth	depth	NOUN
dss-63	82	45	of	of	ADP
dss-63	82	46	groove	groove	NOUN
dss-63	82	47	)	)	PUNCT
dss-63	82	48	goes	go	VERB
dss-63	82	49	from	from	ADP
dss-63	82	50	7	7	NUM
dss-63	82	51	to	to	ADP
dss-63	82	52	0	0	NUM
dss-63	83	1	[	[	X
dss-63	83	2	6	6	NUM
dss-63	83	3	]	]	PUNCT
dss-63	83	4	.	.	PUNCT
dss-63	84	1	𝐶	𝐶	X
dss-63	84	2	=	=	PUNCT
dss-63	84	3	𝑒	𝑒	PROPN
dss-63	84	4	7ℎ	7ℎ	NUM
dss-63	84	5	𝐶	𝐶	PROPN
dss-63	84	6	𝑒	𝑒	VERB
dss-63	84	7	ℎ	ℎ	ADP
dss-63	84	8	<	<	X
dss-63	84	9	7	7	NUM
dss-63	84	10	(	(	PUNCT
dss-63	84	11	16	16	NUM
dss-63	84	12	)	)	PUNCT
dss-63	84	13	the	the	DET
dss-63	84	14	formulae	formulae	NOUN
dss-63	84	15	for	for	ADP
dss-63	84	16	the	the	DET
dss-63	84	17	pressure	pressure	NOUN
dss-63	84	18	coefficients	coefficient	NOUN
dss-63	84	19	at	at	ADP
dss-63	84	20	velocities	velocity	NOUN
dss-63	84	21	above	above	ADP
dss-63	84	22	speed	speed	NOUN
dss-63	84	23	of	of	ADP
dss-63	84	24	sound	sound	NOUN
dss-63	84	25	are	be	AUX
dss-63	84	26	[	[	X
dss-63	84	27	6	6	NUM
dss-63	84	28	]	]	SYM
dss-63	84	29	:	:	PUNCT
dss-63	84	30	𝐶	𝐶	PROPN
dss-63	84	31	=	=	SYM
dss-63	84	32	(	(	PUNCT
dss-63	84	33	−0,067(𝑀	−0,067(𝑀	X
dss-63	84	34	−	−	PROPN
dss-63	84	35	1	1	NUM
dss-63	84	36	)	)	PUNCT
dss-63	84	37	+	+	NUM
dss-63	84	38	0,4	0,4	NOUN
dss-63	84	39	)	)	PUNCT
dss-63	84	40	sin	sin	NOUN
dss-63	84	41	𝜗	𝜗	NOUN
dss-63	84	42	(	(	PUNCT
dss-63	84	43	17	17	NUM
dss-63	84	44	)	)	PUNCT
dss-63	84	45	𝐶	𝐶	NOUN
dss-63	84	46	=	=	SYM
dss-63	84	47	−0,65𝑀	−0,65𝑀	PROPN
dss-63	84	48	,	,	PUNCT
dss-63	84	49	(	(	PUNCT
dss-63	84	50	18	18	NUM
dss-63	84	51	)	)	PUNCT
dss-63	84	52	where	where	SCONJ
dss-63	84	53	𝜗	𝜗	NOUN
dss-63	84	54	is	be	AUX
dss-63	84	55	angle	angle	NOUN
dss-63	84	56	of	of	ADP
dss-63	84	57	grove	grove	PROPN
dss-63	84	58	profile	profile	PROPN
dss-63	84	59	.	.	PUNCT
dss-63	85	1	certain	certain	ADJ
dss-63	85	2	types	type	NOUN
dss-63	85	3	of	of	ADP
dss-63	85	4	finned	finned	ADJ
dss-63	85	5	projectiles	projectile	NOUN
dss-63	85	6	have	have	VERB
dss-63	85	7	a	a	DET
dss-63	85	8	relatively	relatively	ADV
dss-63	85	9	large	large	ADJ
dss-63	85	10	groove	groove	NOUN
dss-63	85	11	pattern	pattern	NOUN
dss-63	85	12	on	on	ADP
dss-63	85	13	the	the	DET
dss-63	85	14	surface	surface	NOUN
dss-63	85	15	of	of	ADP
dss-63	85	16	the	the	DET
dss-63	85	17	cylindrical	cylindrical	ADJ
dss-63	85	18	part	part	NOUN
dss-63	85	19	of	of	ADP
dss-63	85	20	body	body	NOUN
dss-63	85	21	.	.	PUNCT
dss-63	86	1	these	these	DET
dss-63	86	2	grooves	groove	NOUN
dss-63	86	3	are	be	AUX
dss-63	86	4	needed	need	VERB
dss-63	86	5	at	at	ADP
dss-63	86	6	the	the	DET
dss-63	86	7	internal	internal	ADJ
dss-63	86	8	ballistic	ballistic	ADJ
dss-63	86	9	phase	phase	NOUN
dss-63	86	10	and	and	CCONJ
dss-63	86	11	after	after	ADP
dss-63	86	12	launch	launch	NOUN
dss-63	86	13	,	,	PUNCT
dss-63	86	14	the	the	DET
dss-63	86	15	grooves	groove	NOUN
dss-63	86	16	cause	cause	VERB
dss-63	86	17	an	an	DET
dss-63	86	18	unfavorable	unfavorable	ADJ
dss-63	86	19	flow	flow	NOUN
dss-63	86	20	retarding	retarding	NOUN
dss-63	86	21	effect	effect	NOUN
dss-63	86	22	.	.	PUNCT
dss-63	87	1	the	the	DET
dss-63	87	2	axial	axial	ADJ
dss-63	87	3	force	force	NOUN
dss-63	87	4	coefficient	coefficient	NOUN
dss-63	87	5	of	of	ADP
dss-63	87	6	excessive	excessive	ADJ
dss-63	87	7	amount	amount	NOUN
dss-63	87	8	of	of	ADP
dss-63	87	9	grooves	groove	NOUN
dss-63	87	10	(	(	PUNCT
dss-63	87	11	see	see	VERB
dss-63	87	12	figure	figure	NOUN
dss-63	87	13	4	4	NUM
dss-63	87	14	)	)	PUNCT
dss-63	87	15	is	be	AUX
dss-63	87	16	computed	compute	VERB
dss-63	87	17	in	in	ADP
dss-63	87	18	from	from	ADP
dss-63	87	19	formula	formula	NOUN
dss-63	87	20	[	[	X
dss-63	87	21	6	6	NUM
dss-63	87	22	]	]	SYM
dss-63	87	23	:	:	PUNCT
dss-63	87	24	∆𝐶	∆𝐶	PROPN
dss-63	87	25	=	=	SYM
dss-63	88	1	1,6	1,6	NUM
dss-63	88	2	𝑙	𝑙	SYM
dss-63	88	3	𝑙	𝑙	X
dss-63	88	4	𝐶	𝐶	PROPN
dss-63	88	5	(	(	PUNCT
dss-63	88	6	𝐶	𝐶	PROPN
dss-63	88	7	−	−	PROPN
dss-63	88	8	1	1	NUM
dss-63	88	9	)	)	PUNCT
dss-63	88	10	(	(	PUNCT
dss-63	88	11	19	19	NUM
dss-63	88	12	)	)	PUNCT
dss-63	88	13	the	the	DET
dss-63	88	14	coefficient	coefficient	NOUN
dss-63	88	15	𝐶	𝐶	PROPN
dss-63	88	16	is	be	AUX
dss-63	88	17	the	the	DET
dss-63	88	18	viscous	viscous	ADJ
dss-63	88	19	drag	drag	NOUN
dss-63	88	20	coefficient	coefficient	NOUN
dss-63	88	21	(	(	PUNCT
dss-63	88	22	equation	equation	NOUN
dss-63	88	23	10	10	NUM
dss-63	88	24	)	)	PUNCT
dss-63	88	25	of	of	ADP
dss-63	88	26	body	body	NOUN
dss-63	88	27	cylinder	cylinder	NOUN
dss-63	88	28	part	part	NOUN
dss-63	88	29	and	and	CCONJ
dss-63	88	30	the	the	DET
dss-63	88	31	coefficient	coefficient	NOUN
dss-63	88	32	𝐶	𝐶	PROPN
dss-63	88	33	is	be	AUX
dss-63	88	34	used	use	VERB
dss-63	88	35	to	to	PART
dss-63	88	36	take	take	VERB
dss-63	88	37	into	into	ADP
dss-63	88	38	account	account	NOUN
dss-63	88	39	the	the	DET
dss-63	88	40	groove	groove	NOUN
dss-63	88	41	depth	depth	NOUN
dss-63	88	42	on	on	ADP
dss-63	88	43	drag	drag	NOUN
dss-63	88	44	.	.	PUNCT
dss-63	89	1	the	the	DET
dss-63	89	2	coefficient	coefficient	NOUN
dss-63	89	3	is	be	AUX
dss-63	89	4	the	the	DET
dss-63	89	5	surface	surface	NOUN
dss-63	89	6	area	area	NOUN
dss-63	89	7	ratio	ratio	NOUN
dss-63	89	8	of	of	ADP
dss-63	89	9	grooved	groove	VERB
dss-63	89	10	cylinder	cylinder	NOUN
dss-63	89	11	length	length	NOUN
dss-63	89	12	to	to	ADP
dss-63	89	13	that	that	PRON
dss-63	89	14	of	of	ADP
dss-63	89	15	same	same	ADJ
dss-63	89	16	length	length	NOUN
dss-63	89	17	cylinder	cylinder	NOUN
dss-63	89	18	without	without	ADP
dss-63	89	19	grooves	groove	NOUN
dss-63	89	20	;	;	PUNCT
dss-63	89	21	the	the	DET
dss-63	89	22	incremental	incremental	ADJ
dss-63	89	23	drag	drag	NOUN
dss-63	89	24	will	will	AUX
dss-63	89	25	be	be	AUX
dss-63	89	26	zero	zero	NUM
dss-63	89	27	in	in	ADP
dss-63	89	28	case	case	NOUN
dss-63	89	29	the	the	DET
dss-63	89	30	surface	surface	NOUN
dss-63	89	31	coefficient	coefficient	NOUN
dss-63	89	32	𝐶	𝐶	PROPN
dss-63	89	33	is	be	AUX
dss-63	89	34	1	1	NUM
dss-63	90	1	[	[	X
dss-63	90	2	6	6	NUM
dss-63	90	3	]	]	PUNCT
dss-63	90	4	.	.	PUNCT
dss-63	91	1	figure	figure	NOUN
dss-63	91	2	4	4	NUM
dss-63	91	3	.	.	PUNCT
dss-63	91	4	groove	groove	NOUN
dss-63	91	5	pattern	pattern	NOUN
dss-63	91	6	area	area	NOUN
dss-63	91	7	on	on	ADP
dss-63	91	8	the	the	DET
dss-63	91	9	surface	surface	NOUN
dss-63	91	10	of	of	ADP
dss-63	91	11	the	the	DET
dss-63	91	12	cylindrical	cylindrical	ADJ
dss-63	91	13	part	part	NOUN
dss-63	91	14	of	of	ADP
dss-63	91	15	body	body	NOUN
dss-63	91	16	[	[	X
dss-63	91	17	6	6	NUM
dss-63	91	18	]	]	PUNCT
dss-63	91	19	dss	dss	NOUN
dss-63	91	20	vol	vol	NOUN
dss-63	91	21	.	.	PROPN
dss-63	92	1	1	1	NUM
dss-63	92	2	,	,	PUNCT
dss-63	92	3	no	no	INTJ
dss-63	92	4	.	.	NOUN
dss-63	92	5	1	1	NUM
dss-63	92	6	,	,	PUNCT
dss-63	92	7	december	december	PROPN
dss-63	92	8	2020	2020	NUM
dss-63	92	9	,	,	PUNCT
dss-63	92	10	pp.1	pp.1	NOUN
dss-63	92	11	-	-	PUNCT
dss-63	92	12	15	15	NUM
dss-63	92	13	6	6	NUM
dss-63	92	14	2.1.2	2.1.2	NUM
dss-63	92	15	.	.	PUNCT
dss-63	92	16	axial	axial	ADJ
dss-63	92	17	force	force	NOUN
dss-63	92	18	computation	computation	NOUN
dss-63	92	19	methods	method	NOUN
dss-63	92	20	for	for	ADP
dss-63	92	21	projectile	projectile	NOUN
dss-63	92	22	fins	fin	NOUN
dss-63	92	23	the	the	DET
dss-63	92	24	axial	axial	ADJ
dss-63	92	25	force	force	NOUN
dss-63	92	26	coefficient	coefficient	NOUN
dss-63	92	27	of	of	ADP
dss-63	92	28	fins	fin	NOUN
dss-63	92	29	(	(	PUNCT
dss-63	92	30	𝐶	𝐶	PROPN
dss-63	92	31	)	)	PUNCT
dss-63	92	32	is	be	AUX
dss-63	92	33	computed	compute	VERB
dss-63	92	34	in	in	ADP
dss-63	92	35	the	the	DET
dss-63	92	36	function	function	NOUN
dss-63	92	37	of	of	ADP
dss-63	92	38	mach	mach	NOUN
dss-63	92	39	number	number	NOUN
dss-63	92	40	,	,	PUNCT
dss-63	92	41	but	but	CCONJ
dss-63	92	42	also	also	ADV
dss-63	92	43	some	some	DET
dss-63	92	44	effect	effect	NOUN
dss-63	92	45	of	of	ADP
dss-63	92	46	reynolds	reynold	NOUN
dss-63	92	47	number	number	NOUN
dss-63	92	48	is	be	AUX
dss-63	92	49	introduced	introduce	VERB
dss-63	92	50	via	via	ADP
dss-63	92	51	skin	skin	NOUN
dss-63	92	52	friction	friction	NOUN
dss-63	92	53	.	.	PUNCT
dss-63	93	1	the	the	DET
dss-63	93	2	reference	reference	NOUN
dss-63	93	3	area	area	NOUN
dss-63	93	4	is	be	AUX
dss-63	93	5	a	a	DET
dss-63	93	6	circle	circle	NOUN
dss-63	93	7	area	area	NOUN
dss-63	93	8	based	base	VERB
dss-63	93	9	on	on	ADP
dss-63	93	10	the	the	DET
dss-63	93	11	diameter	diameter	NOUN
dss-63	93	12	of	of	ADP
dss-63	93	13	the	the	DET
dss-63	93	14	projectile	projectile	ADJ
dss-63	93	15	cylindrical	cylindrical	ADJ
dss-63	93	16	part	part	NOUN
dss-63	93	17	.	.	PUNCT
dss-63	94	1	the	the	DET
dss-63	94	2	axial	axial	ADJ
dss-63	94	3	force	force	NOUN
dss-63	94	4	coefficient	coefficient	NOUN
dss-63	94	5	of	of	ADP
dss-63	94	6	fins	fin	NOUN
dss-63	94	7	consists	consist	VERB
dss-63	94	8	of	of	ADP
dss-63	94	9	the	the	DET
dss-63	94	10	wave	wave	NOUN
dss-63	94	11	drag	drag	NOUN
dss-63	94	12	(	(	PUNCT
dss-63	94	13	𝐶	𝐶	PROPN
dss-63	94	14	)	)	PUNCT
dss-63	94	15	,	,	PUNCT
dss-63	94	16	axial	axial	ADJ
dss-63	94	17	force	force	NOUN
dss-63	94	18	coefficient	coefficient	NOUN
dss-63	94	19	of	of	ADP
dss-63	94	20	leading	lead	VERB
dss-63	94	21	edge	edge	NOUN
dss-63	94	22	(	(	PUNCT
dss-63	94	23	𝐶	𝐶	PROPN
dss-63	94	24	)	)	PUNCT
dss-63	94	25	,	,	PUNCT
dss-63	94	26	axial	axial	ADJ
dss-63	94	27	force	force	NOUN
dss-63	94	28	coefficient	coefficient	NOUN
dss-63	94	29	of	of	ADP
dss-63	94	30	trailing	trail	VERB
dss-63	94	31	edge	edge	NOUN
dss-63	94	32	(	(	PUNCT
dss-63	94	33	𝐶	𝐶	PROPN
dss-63	94	34	)	)	PUNCT
dss-63	94	35	and	and	CCONJ
dss-63	94	36	viscous	viscous	ADJ
dss-63	94	37	force	force	NOUN
dss-63	94	38	coefficient	coefficient	NOUN
dss-63	94	39	of	of	ADP
dss-63	94	40	fins	fin	NOUN
dss-63	94	41	(	(	PUNCT
dss-63	94	42	𝐶	𝐶	PROPN
dss-63	94	43	)	)	PUNCT
dss-63	94	44	as	as	ADP
dss-63	94	45	a	a	DET
dss-63	94	46	sum	sum	NOUN
dss-63	94	47	of	of	ADP
dss-63	94	48	the	the	DET
dss-63	94	49	following	follow	VERB
dss-63	94	50	form	form	NOUN
dss-63	94	51	[	[	X
dss-63	94	52	6	6	NUM
dss-63	94	53	]	]	SYM
dss-63	94	54	:	:	PUNCT
dss-63	94	55	𝐶	𝐶	PROPN
dss-63	94	56	=	=	PUNCT
dss-63	94	57	𝐶	𝐶	PROPN
dss-63	94	58	+	+	CCONJ
dss-63	94	59	𝐶	𝐶	PROPN
dss-63	94	60	+	+	CCONJ
dss-63	94	61	𝐶	𝐶	PROPN
dss-63	94	62	+	+	CCONJ
dss-63	94	63	𝐶	𝐶	PROPN
dss-63	94	64	(	(	PUNCT
dss-63	94	65	20	20	NUM
dss-63	94	66	)	)	PUNCT
dss-63	94	67	the	the	DET
dss-63	94	68	wave	wave	NOUN
dss-63	94	69	drag	drag	NOUN
dss-63	94	70	at	at	ADP
dss-63	94	71	supersonic	supersonic	ADJ
dss-63	94	72	speeds	speed	NOUN
dss-63	94	73	for	for	ADP
dss-63	94	74	fins	fin	NOUN
dss-63	94	75	with	with	ADP
dss-63	94	76	sharp	sharp	ADJ
dss-63	94	77	leading	leading	ADJ
dss-63	94	78	/	/	SYM
dss-63	94	79	tailing	tail	VERB
dss-63	94	80	edges	edge	NOUN
dss-63	94	81	(	(	PUNCT
dss-63	94	82	see	see	VERB
dss-63	94	83	fig	fig	NOUN
dss-63	94	84	.	.	PUNCT
dss-63	95	1	5	5	NUM
dss-63	95	2	)	)	PUNCT
dss-63	95	3	is	be	AUX
dss-63	95	4	calculated	calculate	VERB
dss-63	95	5	according	accord	VERB
dss-63	95	6	to	to	ADP
dss-63	95	7	the	the	DET
dss-63	95	8	formula	formula	NOUN
dss-63	95	9	(	(	PUNCT
dss-63	95	10	21	21	NUM
dss-63	95	11	)	)	PUNCT
dss-63	96	1	[	[	X
dss-63	96	2	6	6	NUM
dss-63	96	3	]	]	SYM
dss-63	96	4	:	:	PUNCT
dss-63	96	5	𝐶	𝐶	X
dss-63	96	6	=	=	SYM
dss-63	96	7	𝑛	𝑛	PROPN
dss-63	96	8	𝐾	𝐾	PROPN
dss-63	96	9	𝑀	𝑀	PROPN
dss-63	96	10	𝑡	𝑡	PROPN
dss-63	96	11	𝑐	𝑐	PROPN
dss-63	96	12	𝑆	𝑆	PROPN
dss-63	96	13	𝑆	𝑆	PROPN
dss-63	96	14	(	(	PUNCT
dss-63	96	15	21	21	NUM
dss-63	96	16	)	)	PUNCT
dss-63	96	17	where	where	SCONJ
dss-63	96	18	:	:	PUNCT
dss-63	96	19	k	k	X
dss-63	96	20	is	be	AUX
dss-63	96	21	shape	shape	NOUN
dss-63	96	22	correction	correction	NOUN
dss-63	96	23	factor	factor	NOUN
dss-63	96	24	(	(	PUNCT
dss-63	96	25	see	see	VERB
dss-63	96	26	fig	fig	NOUN
dss-63	96	27	.	.	PUNCT
dss-63	97	1	5	5	NUM
dss-63	97	2	)	)	PUNCT
dss-63	98	1	,	,	PUNCT
dss-63	98	2	is	be	AUX
dss-63	98	3	average	average	ADJ
dss-63	98	4	fin	fin	NOUN
dss-63	98	5	thickness	thickness	NOUN
dss-63	98	6	ratio	ratio	NOUN
dss-63	98	7	,	,	PUNCT
dss-63	98	8	s	s	PART
dss-63	98	9	is	be	AUX
dss-63	98	10	reference	reference	NOUN
dss-63	98	11	area	area	NOUN
dss-63	98	12	,	,	PUNCT
dss-63	98	13	𝑆	𝑆	PROPN
dss-63	98	14	is	be	AUX
dss-63	98	15	fin	fin	NOUN
dss-63	98	16	area	area	NOUN
dss-63	98	17	(	(	PUNCT
dss-63	98	18	see	see	VERB
dss-63	98	19	fig	fig	NOUN
dss-63	98	20	.	.	PUNCT
dss-63	99	1	6	6	NUM
dss-63	99	2	)	)	PUNCT
dss-63	99	3	,	,	PUNCT
dss-63	99	4	𝑛	𝑛	PROPN
dss-63	99	5	is	be	AUX
dss-63	99	6	number	number	NOUN
dss-63	99	7	of	of	ADP
dss-63	99	8	fins	fin	NOUN
dss-63	99	9	.	.	PUNCT
dss-63	100	1	figure	figure	NOUN
dss-63	100	2	5	5	NUM
dss-63	100	3	.	.	PUNCT
dss-63	100	4	airfoil	airfoil	NOUN
dss-63	100	5	shape	shape	NOUN
dss-63	100	6	correction	correction	NOUN
dss-63	100	7	factor	factor	NOUN
dss-63	100	8	k	k	PROPN
dss-63	101	1	[	[	X
dss-63	101	2	6	6	NUM
dss-63	101	3	]	]	PUNCT
dss-63	101	4	figure	figure	NOUN
dss-63	101	5	6	6	NUM
dss-63	101	6	.	.	PUNCT
dss-63	101	7	projected	project	VERB
dss-63	101	8	area	area	NOUN
dss-63	101	9	of	of	ADP
dss-63	101	10	fins	fin	NOUN
dss-63	101	11	[	[	X
dss-63	101	12	6	6	NUM
dss-63	101	13	]	]	PUNCT
dss-63	101	14	the	the	DET
dss-63	101	15	formula	formula	NOUN
dss-63	101	16	(	(	PUNCT
dss-63	101	17	21	21	NUM
dss-63	101	18	)	)	PUNCT
dss-63	101	19	is	be	AUX
dss-63	101	20	applied	apply	VERB
dss-63	101	21	when	when	SCONJ
dss-63	101	22	mle	mle	PROPN
dss-63	101	23	≥	≥	PROPN
dss-63	101	24	1	1	NUM
dss-63	101	25	(	(	PUNCT
dss-63	101	26	mach	mach	NOUN
dss-63	101	27	number	number	NOUN
dss-63	101	28	normal	normal	ADJ
dss-63	101	29	to	to	ADP
dss-63	101	30	leading	leading	ADJ
dss-63	101	31	edge	edge	NOUN
dss-63	101	32	)	)	PUNCT
dss-63	101	33	.	.	PUNCT
dss-63	102	1	mle	mle	PROPN
dss-63	102	2	is	be	AUX
dss-63	102	3	supersonic	supersonic	ADJ
dss-63	102	4	if	if	SCONJ
dss-63	102	5	μ	μ	NUM
dss-63	102	6	˃	˃	PROPN
dss-63	102	7	˄lefin	˄lefin	NOUN
dss-63	102	8	,	,	PUNCT
dss-63	102	9	where	where	SCONJ
dss-63	102	10	˄lefi	˄lefi	PROPN
dss-63	102	11	is	be	AUX
dss-63	102	12	sweep	sweep	VERB
dss-63	102	13	angle	angle	NOUN
dss-63	102	14	of	of	ADP
dss-63	102	15	fin	fin	NOUN
dss-63	102	16	leading	lead	VERB
dss-63	102	17	edge	edge	NOUN
dss-63	102	18	(	(	PUNCT
dss-63	102	19	see	see	VERB
dss-63	102	20	fig	fig	NOUN
dss-63	102	21	.	.	PUNCT
dss-63	103	1	7	7	NUM
dss-63	103	2	)	)	PUNCT
dss-63	103	3	.	.	PUNCT
dss-63	104	1	the	the	DET
dss-63	104	2	mach	mach	PROPN
dss-63	104	3	angle	angle	PROPN
dss-63	104	4	μ	μ	PROPN
dss-63	104	5	is	be	AUX
dss-63	104	6	then	then	ADV
dss-63	104	7	computed	compute	VERB
dss-63	104	8	from	from	ADP
dss-63	104	9	expression	expression	NOUN
dss-63	104	10	[	[	X
dss-63	104	11	6	6	NUM
dss-63	104	12	]	]	PUNCT
dss-63	104	13	:	:	PUNCT
dss-63	104	14	𝜇	𝜇	SCONJ
dss-63	104	15	=	=	X
dss-63	104	16	𝑎𝑟𝑐𝑠𝑖𝑛	𝑎𝑟𝑐𝑠𝑖𝑛	PROPN
dss-63	104	17	1	1	NUM
dss-63	104	18	𝑀	𝑀	PROPN
dss-63	104	19	(	(	PUNCT
dss-63	104	20	22	22	NUM
dss-63	104	21	)	)	PUNCT
dss-63	104	22	the	the	DET
dss-63	104	23	drag	drag	NOUN
dss-63	104	24	coefficient	coefficient	NOUN
dss-63	104	25	value	value	NOUN
dss-63	104	26	is	be	AUX
dss-63	104	27	taken	take	VERB
dss-63	104	28	to	to	PART
dss-63	104	29	be	be	AUX
dss-63	104	30	constant	constant	ADJ
dss-63	104	31	down	down	ADP
dss-63	104	32	to	to	ADP
dss-63	104	33	free	free	ADJ
dss-63	104	34	-	-	PUNCT
dss-63	104	35	stream	stream	NOUN
dss-63	104	36	mach	mach	NOUN
dss-63	104	37	number	number	NOUN
dss-63	104	38	1	1	NUM
dss-63	104	39	if	if	SCONJ
dss-63	104	40	μ	μ	PROPN
dss-63	104	41			PROPN
dss-63	105	1	˄lefin	˄lefin	NOUN
dss-63	106	1	[	[	X
dss-63	106	2	6	6	NUM
dss-63	106	3	]	]	PUNCT
dss-63	106	4	.	.	PUNCT
dss-63	107	1	figure	figure	NOUN
dss-63	107	2	7	7	NUM
dss-63	107	3	.	.	PUNCT
dss-63	107	4	exposed	expose	VERB
dss-63	107	5	wing	wing	NOUN
dss-63	107	6	geometry	geometry	NOUN
dss-63	107	7	without	without	ADP
dss-63	107	8	body	body	NOUN
dss-63	107	9	[	[	X
dss-63	107	10	6	6	NUM
dss-63	107	11	]	]	PUNCT
dss-63	107	12	fig	fig	NOUN
dss-63	107	13	.	.	PUNCT
dss-63	108	1	8	8	NUM
dss-63	108	2	.	.	X
dss-63	108	3	schematic	schematic	ADJ
dss-63	108	4	of	of	ADP
dss-63	108	5	fin	fin	NOUN
dss-63	108	6	blunt	blunt	ADJ
dss-63	108	7	leading	leading	ADJ
dss-63	108	8	edge	edge	NOUN
dss-63	108	9	geom	geom	NOUN
dss-63	108	10	.	.	PUNCT
dss-63	109	1	[	[	X
dss-63	109	2	6	6	NUM
dss-63	109	3	]	]	X
dss-63	109	4	axial	axial	ADJ
dss-63	109	5	force	force	NOUN
dss-63	109	6	coefficient	coefficient	NOUN
dss-63	109	7	of	of	ADP
dss-63	109	8	leading	lead	VERB
dss-63	109	9	edge	edge	NOUN
dss-63	109	10	is	be	AUX
dss-63	109	11	obtained	obtain	VERB
dss-63	109	12	by	by	ADP
dss-63	109	13	multiplying	multiply	VERB
dss-63	109	14	𝐶	𝐶	PROPN
dss-63	109	15	by	by	ADP
dss-63	109	16	the	the	DET
dss-63	109	17	number	number	NOUN
dss-63	109	18	of	of	ADP
dss-63	109	19	fins	fin	NOUN
dss-63	109	20	(	(	PUNCT
dss-63	109	21	𝑛	𝑛	PROPN
dss-63	109	22	)	)	PUNCT
dss-63	109	23	,	,	PUNCT
dss-63	109	24	taking	take	VERB
dss-63	109	25	the	the	DET
dss-63	109	26	reference	reference	NOUN
dss-63	109	27	area	area	NOUN
dss-63	109	28	(	(	PUNCT
dss-63	109	29	s	s	NOUN
dss-63	109	30	)	)	PUNCT
dss-63	109	31	and	and	CCONJ
dss-63	109	32	fin	fin	NOUN
dss-63	109	33	dimensions	dimension	NOUN
dss-63	109	34	(	(	PUNCT
dss-63	109	35	fig	fig	NOUN
dss-63	109	36	.	.	PUNCT
dss-63	110	1	8)	8)	NUM
dss-63	110	2	into	into	ADP
dss-63	110	3	account	account	NOUN
dss-63	111	1	[	[	X
dss-63	111	2	6	6	NUM
dss-63	111	3	]	]	SYM
dss-63	111	4	:	:	PUNCT
dss-63	111	5	𝐶	𝐶	PROPN
dss-63	111	6	=	=	SYM
dss-63	111	7	𝐶	𝐶	PROPN
dss-63	111	8	𝑡	𝑡	PROPN
dss-63	111	9	𝑏	𝑏	NOUN
dss-63	111	10	𝑆	𝑆	PROPN
dss-63	111	11	𝑛	𝑛	PROPN
dss-63	111	12	(	(	PUNCT
dss-63	111	13	23	23	NUM
dss-63	111	14	)	)	PUNCT
dss-63	111	15	dss	dss	NOUN
dss-63	111	16	vol	vol	NOUN
dss-63	111	17	.	.	PROPN
dss-63	111	18	1	1	NUM
dss-63	111	19	,	,	PUNCT
dss-63	111	20	no	no	INTJ
dss-63	111	21	.	.	NOUN
dss-63	111	22	1	1	NUM
dss-63	111	23	,	,	PUNCT
dss-63	111	24	december	december	PROPN
dss-63	111	25	2020	2020	NUM
dss-63	111	26	,	,	PUNCT
dss-63	111	27	pp.1	pp.1	NOUN
dss-63	111	28	-	-	SYM
dss-63	111	29	15	15	NUM
dss-63	111	30	7	7	NUM
dss-63	111	31	the	the	DET
dss-63	111	32	blunt	blunt	ADJ
dss-63	111	33	leading	leading	ADJ
dss-63	111	34	edge	edge	NOUN
dss-63	111	35	average	average	ADJ
dss-63	111	36	pressure	pressure	NOUN
dss-63	111	37	coefficient	coefficient	NOUN
dss-63	111	38	𝐶	𝐶	PROPN
dss-63	111	39	is	be	AUX
dss-63	111	40	estimated	estimate	VERB
dss-63	111	41	by	by	ADP
dss-63	111	42	utilizing	utilize	VERB
dss-63	111	43	formula	formula	NOUN
dss-63	111	44	(	(	PUNCT
dss-63	111	45	24	24	NUM
dss-63	111	46	)	)	PUNCT
dss-63	112	1	[	[	X
dss-63	112	2	6	6	NUM
dss-63	112	3	]	]	SYM
dss-63	112	4	:	:	PUNCT
dss-63	112	5	𝐶	𝐶	PROPN
dss-63	112	6	=	=	SYM
dss-63	112	7	cos	cos	PROPN
dss-63	112	8	˄	˄	PROPN
dss-63	112	9	𝐶	𝐶	PROPN
dss-63	112	10	(	(	PUNCT
dss-63	112	11	24	24	NUM
dss-63	112	12	)	)	PUNCT
dss-63	112	13	parameter	parameter	NOUN
dss-63	112	14	𝐶	𝐶	PROPN
dss-63	112	15	is	be	AUX
dss-63	112	16	estimated	estimate	VERB
dss-63	112	17	by	by	ADP
dss-63	112	18	utilizing	utilize	VERB
dss-63	112	19	formula	formula	NOUN
dss-63	113	1	[	[	X
dss-63	113	2	6	6	NUM
dss-63	113	3	]	]	SYM
dss-63	113	4	:	:	PUNCT
dss-63	113	5	𝐶	𝐶	PROPN
dss-63	113	6	=	=	SYM
dss-63	113	7	𝑘1	𝑘1	PROPN
dss-63	113	8	(	(	PUNCT
dss-63	113	9	25	25	NUM
dss-63	113	10	)	)	PUNCT
dss-63	113	11	axial	axial	ADJ
dss-63	113	12	force	force	NOUN
dss-63	113	13	coefficient	coefficient	NOUN
dss-63	113	14	of	of	ADP
dss-63	113	15	trailing	trail	VERB
dss-63	113	16	edge	edge	NOUN
dss-63	113	17	is	be	AUX
dss-63	113	18	obtained	obtain	VERB
dss-63	113	19	by	by	ADP
dss-63	113	20	multiplying	multiply	VERB
dss-63	113	21	it	it	PRON
dss-63	113	22	by	by	ADP
dss-63	113	23	the	the	DET
dss-63	113	24	number	number	NOUN
dss-63	113	25	of	of	ADP
dss-63	113	26	fins	fin	NOUN
dss-63	113	27	(	(	PUNCT
dss-63	113	28	𝑛	𝑛	PROPN
dss-63	113	29	)	)	PUNCT
dss-63	113	30	,	,	PUNCT
dss-63	113	31	taking	take	VERB
dss-63	113	32	the	the	DET
dss-63	113	33	reference	reference	NOUN
dss-63	113	34	area	area	NOUN
dss-63	113	35	(	(	PUNCT
dss-63	113	36	s	s	NOUN
dss-63	113	37	)	)	PUNCT
dss-63	113	38	and	and	CCONJ
dss-63	113	39	fin	fin	NOUN
dss-63	113	40	dimensions	dimension	NOUN
dss-63	113	41	(	(	PUNCT
dss-63	113	42	fig	fig	NOUN
dss-63	113	43	.	.	PUNCT
dss-63	114	1	9	9	NUM
dss-63	114	2	)	)	PUNCT
dss-63	114	3	into	into	ADP
dss-63	114	4	account	account	NOUN
dss-63	114	5	[	[	X
dss-63	114	6	6	6	NUM
dss-63	114	7	]	]	SYM
dss-63	114	8	:	:	PUNCT
dss-63	114	9	𝐶	𝐶	PROPN
dss-63	114	10	=	=	SYM
dss-63	114	11	𝐶	𝐶	PROPN
dss-63	114	12	𝑡	𝑡	PROPN
dss-63	114	13	𝑏	𝑏	NOUN
dss-63	114	14	𝑆	𝑆	PROPN
dss-63	114	15	𝑛	𝑛	PROPN
dss-63	114	16	(	(	PUNCT
dss-63	114	17	26	26	NUM
dss-63	114	18	)	)	PUNCT
dss-63	114	19	figure	figure	NOUN
dss-63	114	20	9	9	NUM
dss-63	114	21	.	.	PUNCT
dss-63	115	1	schematic	schematic	ADJ
dss-63	115	2	of	of	ADP
dss-63	115	3	fin	fin	NOUN
dss-63	115	4	blunt	blunt	ADJ
dss-63	115	5	trailing	trailing	NOUN
dss-63	115	6	edge	edge	NOUN
dss-63	115	7	geometry	geometry	NOUN
dss-63	115	8	[	[	X
dss-63	115	9	6	6	NUM
dss-63	115	10	]	]	PUNCT
dss-63	116	1	the	the	DET
dss-63	116	2	average	average	ADJ
dss-63	116	3	pressure	pressure	NOUN
dss-63	116	4	coefficient	coefficient	NOUN
dss-63	116	5	on	on	ADP
dss-63	116	6	a	a	DET
dss-63	116	7	fin	fin	NOUN
dss-63	116	8	blunt	blunt	ADJ
dss-63	116	9	trailing	trailing	NOUN
dss-63	116	10	edge	edge	NOUN
dss-63	116	11	is	be	AUX
dss-63	116	12	computed	compute	VERB
dss-63	116	13	at	at	ADP
dss-63	116	14	supersonic	supersonic	ADJ
dss-63	116	15	regions	region	NOUN
dss-63	116	16	according	accord	VERB
dss-63	116	17	to	to	ADP
dss-63	116	18	formula	formula	NOUN
dss-63	116	19	[	[	X
dss-63	116	20	6	6	NUM
dss-63	116	21	]	]	SYM
dss-63	116	22	:	:	PUNCT
dss-63	116	23	𝐶	𝐶	PROPN
dss-63	116	24	=	=	SYM
dss-63	116	25	−0,65	−0,65	PROPN
dss-63	116	26	𝑀	𝑀	PROPN
dss-63	116	27	,	,	PUNCT
dss-63	116	28	(	(	PUNCT
dss-63	116	29	27	27	NUM
dss-63	116	30	)	)	PUNCT
dss-63	116	31	viscous	viscous	ADJ
dss-63	116	32	force	force	NOUN
dss-63	116	33	coefficient	coefficient	NOUN
dss-63	116	34	of	of	ADP
dss-63	116	35	fins	fin	NOUN
dss-63	116	36	is	be	AUX
dss-63	116	37	calculated	calculate	VERB
dss-63	116	38	by	by	ADP
dss-63	116	39	same	same	ADJ
dss-63	116	40	formulae	formulae	NOUN
dss-63	116	41	(	(	PUNCT
dss-63	116	42	10	10	NUM
dss-63	116	43	)	)	PUNCT
dss-63	116	44	as	as	ADP
dss-63	116	45	in	in	ADP
dss-63	116	46	projectile	projectile	NOUN
dss-63	116	47	skin	skin	NOUN
dss-63	116	48	friction	friction	NOUN
dss-63	116	49	drag	drag	NOUN
dss-63	116	50	.	.	PUNCT
dss-63	117	1	in	in	ADP
dss-63	117	2	fin	fin	NOUN
dss-63	117	3	case	case	NOUN
dss-63	117	4	𝑆	𝑆	PROPN
dss-63	117	5	is	be	AUX
dss-63	117	6	the	the	DET
dss-63	117	7	wetted	wet	VERB
dss-63	117	8	surface	surface	NOUN
dss-63	117	9	area	area	NOUN
dss-63	117	10	of	of	ADP
dss-63	117	11	fins	fin	NOUN
dss-63	117	12	,	,	PUNCT
dss-63	117	13	instead	instead	ADV
dss-63	117	14	of	of	ADP
dss-63	117	15	the	the	DET
dss-63	117	16	wetted	wet	VERB
dss-63	117	17	surface	surface	NOUN
dss-63	117	18	area	area	NOUN
dss-63	117	19	of	of	ADP
dss-63	117	20	projectile	projectile	NOUN
dss-63	117	21	body	body	NOUN
dss-63	117	22	and	and	CCONJ
dss-63	117	23	flow	flow	NOUN
dss-63	117	24	is	be	AUX
dss-63	117	25	consider	consider	VERB
dss-63	117	26	to	to	PART
dss-63	117	27	be	be	AUX
dss-63	117	28	turbulent	turbulent	ADJ
dss-63	118	1	[	[	X
dss-63	118	2	6	6	NUM
dss-63	118	3	]	]	PUNCT
dss-63	118	4	.	.	PUNCT
dss-63	119	1	𝐶	𝐶	PROPN
dss-63	119	2	=	=	SYM
dss-63	119	3	𝐶	𝐶	PROPN
dss-63	119	4	𝑆	𝑆	PROPN
dss-63	119	5	𝑆	𝑆	PROPN
dss-63	119	6	(	(	PUNCT
dss-63	119	7	28	28	NUM
dss-63	119	8	)	)	PUNCT
dss-63	119	9	the	the	DET
dss-63	119	10	turbulent	turbulent	ADJ
dss-63	119	11	skin	skin	NOUN
dss-63	119	12	friction	friction	NOUN
dss-63	119	13	coefficient	coefficient	NOUN
dss-63	119	14	𝐶	𝐶	PROPN
dss-63	119	15	is	be	AUX
dss-63	119	16	computed	compute	VERB
dss-63	119	17	by	by	ADP
dss-63	119	18	formula	formula	NOUN
dss-63	119	19	[	[	X
dss-63	119	20	6	6	NUM
dss-63	119	21	]	]	SYM
dss-63	119	22	:	:	PUNCT
dss-63	119	23	𝐶	𝐶	PROPN
dss-63	119	24	=	=	SYM
dss-63	119	25	0,455	0,455	NUM
dss-63	119	26	(	(	PUNCT
dss-63	119	27	log	log	NOUN
dss-63	119	28	𝑅𝑒	𝑅𝑒	PROPN
dss-63	119	29	̅	̅	NOUN
dss-63	119	30	)	)	PUNCT
dss-63	119	31	,	,	PUNCT
dss-63	119	32	(	(	PUNCT
dss-63	119	33	1	1	NUM
dss-63	119	34	+	+	SYM
dss-63	119	35	0,21𝑀	0,21𝑀	NUM
dss-63	119	36	)	)	PUNCT
dss-63	119	37	,	,	PUNCT
dss-63	119	38	(	(	PUNCT
dss-63	119	39	29	29	NUM
dss-63	119	40	)	)	PUNCT
dss-63	119	41	where	where	SCONJ
dss-63	119	42	:	:	PUNCT
dss-63	119	43	𝑅𝑒	𝑅𝑒	VERB
dss-63	119	44	̅	̅	NOUN
dss-63	119	45	is	be	AUX
dss-63	119	46	reynolds	reynolds	PROPN
dss-63	119	47	number	number	NOUN
dss-63	119	48	̅	̅	NOUN
dss-63	119	49	,	,	PUNCT
dss-63	119	50	𝑐	𝑐	X
dss-63	119	51	̅is	̅is	ADP
dss-63	119	52	mean	mean	VERB
dss-63	119	53	aerodynamic	aerodynamic	ADJ
dss-63	119	54	chord	chord	NOUN
dss-63	119	55	(	(	PUNCT
dss-63	119	56	see	see	VERB
dss-63	119	57	fig	fig	NOUN
dss-63	119	58	.	.	PUNCT
dss-63	120	1	7	7	NUM
dss-63	120	2	)	)	PUNCT
dss-63	120	3	,	,	PUNCT
dss-63	120	4	𝜈	𝜈	PROPN
dss-63	120	5	is	be	AUX
dss-63	120	6	kinematic	kinematic	ADJ
dss-63	120	7	viscosity	viscosity	NOUN
dss-63	120	8	.	.	PUNCT
dss-63	121	1	2.2	2.2	NUM
dss-63	121	2	.	.	PUNCT
dss-63	122	1	cfd	cfd	NOUN
dss-63	122	2	-	-	PUNCT
dss-63	122	3	model	model	NOUN
dss-63	122	4	(	(	PUNCT
dss-63	122	5	computed	compute	VERB
dss-63	122	6	fluid	fluid	ADJ
dss-63	122	7	dynamics	dynamic	NOUN
dss-63	122	8	)	)	PUNCT
dss-63	122	9	numerical	numerical	PROPN
dss-63	122	10	simulation	simulation	PROPN
dss-63	122	11	methods	method	NOUN
dss-63	122	12	,	,	PUNCT
dss-63	122	13	using	use	VERB
dss-63	122	14	computed	computed	ADJ
dss-63	122	15	fluid	fluid	ADJ
dss-63	122	16	dynamics	dynamic	NOUN
dss-63	122	17	,	,	PUNCT
dss-63	122	18	are	be	AUX
dss-63	122	19	an	an	DET
dss-63	122	20	important	important	ADJ
dss-63	122	21	aspect	aspect	NOUN
dss-63	122	22	of	of	ADP
dss-63	122	23	modern	modern	ADJ
dss-63	122	24	research	research	NOUN
dss-63	122	25	because	because	SCONJ
dss-63	122	26	they	they	PRON
dss-63	122	27	complement	complement	VERB
dss-63	122	28	experimental	experimental	ADJ
dss-63	122	29	and	and	CCONJ
dss-63	122	30	analytical	analytical	ADJ
dss-63	122	31	models	model	NOUN
dss-63	122	32	,	,	PUNCT
dss-63	122	33	reducing	reduce	VERB
dss-63	122	34	total	total	ADJ
dss-63	122	35	time	time	NOUN
dss-63	122	36	and	and	CCONJ
dss-63	122	37	labor	labor	NOUN
dss-63	122	38	costs	cost	NOUN
dss-63	122	39	.	.	PUNCT
dss-63	123	1	in	in	ADP
dss-63	123	2	the	the	DET
dss-63	123	3	experimental	experimental	ADJ
dss-63	123	4	approach	approach	NOUN
dss-63	123	5	,	,	PUNCT
dss-63	123	6	most	most	ADJ
dss-63	123	7	of	of	ADP
dss-63	123	8	the	the	DET
dss-63	123	9	time	time	NOUN
dss-63	123	10	is	be	AUX
dss-63	123	11	spent	spend	VERB
dss-63	123	12	designing	design	VERB
dss-63	123	13	the	the	DET
dss-63	123	14	experiment	experiment	NOUN
dss-63	123	15	and	and	CCONJ
dss-63	123	16	making	make	VERB
dss-63	123	17	the	the	DET
dss-63	123	18	model	model	NOUN
dss-63	123	19	.	.	PUNCT
dss-63	124	1	in	in	ADP
dss-63	124	2	the	the	DET
dss-63	124	3	computational	computational	ADJ
dss-63	124	4	approach	approach	NOUN
dss-63	124	5	,	,	PUNCT
dss-63	124	6	most	most	ADJ
dss-63	124	7	of	of	ADP
dss-63	124	8	the	the	DET
dss-63	124	9	time	time	NOUN
dss-63	124	10	is	be	AUX
dss-63	124	11	spent	spend	VERB
dss-63	124	12	on	on	ADP
dss-63	124	13	generating	generate	VERB
dss-63	124	14	a	a	DET
dss-63	124	15	geometric	geometric	ADJ
dss-63	124	16	mesh	mesh	NOUN
dss-63	124	17	(	(	PUNCT
dss-63	124	18	if	if	SCONJ
dss-63	124	19	the	the	DET
dss-63	124	20	flow	flow	NOUN
dss-63	124	21	area	area	NOUN
dss-63	124	22	is	be	AUX
dss-63	124	23	geometrically	geometrically	ADV
dss-63	124	24	complex	complex	ADJ
dss-63	124	25	)	)	PUNCT
dss-63	124	26	and	and	CCONJ
dss-63	124	27	later	later	ADV
dss-63	124	28	analyzing	analyze	VERB
dss-63	124	29	the	the	DET
dss-63	124	30	results	result	NOUN
dss-63	124	31	.	.	PUNCT
dss-63	125	1	the	the	DET
dss-63	125	2	main	main	ADJ
dss-63	125	3	disadvantage	disadvantage	NOUN
dss-63	125	4	of	of	ADP
dss-63	125	5	the	the	DET
dss-63	125	6	computer	computer	NOUN
dss-63	125	7	approach	approach	NOUN
dss-63	125	8	is	be	AUX
dss-63	125	9	limitation	limitation	NOUN
dss-63	125	10	to	to	ADP
dss-63	125	11	problems	problem	NOUN
dss-63	125	12	for	for	ADP
dss-63	125	13	which	which	PRON
dss-63	125	14	there	there	PRON
dss-63	125	15	is	be	VERB
dss-63	125	16	a	a	DET
dss-63	125	17	reliable	reliable	ADJ
dss-63	125	18	physical	physical	ADJ
dss-63	125	19	/	/	SYM
dss-63	125	20	mathematical	mathematical	ADJ
dss-63	125	21	model	model	NOUN
dss-63	125	22	[	[	X
dss-63	125	23	7	7	NUM
dss-63	125	24	]	]	PUNCT
dss-63	125	25	.	.	PUNCT
dss-63	126	1	in	in	ADP
dss-63	126	2	the	the	DET
dss-63	126	3	general	general	ADJ
dss-63	126	4	case	case	NOUN
dss-63	126	5	,	,	PUNCT
dss-63	126	6	a	a	DET
dss-63	126	7	numerical	numerical	ADJ
dss-63	126	8	computational	computational	ADJ
dss-63	126	9	simulation	simulation	NOUN
dss-63	126	10	consists	consist	VERB
dss-63	126	11	of	of	ADP
dss-63	126	12	several	several	ADJ
dss-63	126	13	main	main	ADJ
dss-63	126	14	steps	step	NOUN
dss-63	126	15	(	(	PUNCT
dss-63	126	16	fig	fig	NOUN
dss-63	126	17	.	.	PUNCT
dss-63	127	1	10	10	NUM
dss-63	127	2	):	):	PUNCT
dss-63	127	3			NOUN
dss-63	127	4	problem	problem	NOUN
dss-63	127	5	identification	identification	NOUN
dss-63	127	6	involves	involve	VERB
dss-63	127	7	defining	define	VERB
dss-63	127	8	the	the	DET
dss-63	127	9	objectives	objective	NOUN
dss-63	127	10	of	of	ADP
dss-63	127	11	numerical	numerical	ADJ
dss-63	127	12	simulation	simulation	PROPN
dss-63	127	13	,	,	PUNCT
dss-63	127	14	what	what	PRON
dss-63	127	15	are	be	AUX
dss-63	127	16	the	the	DET
dss-63	127	17	modeling	modeling	NOUN
dss-63	127	18	options	option	NOUN
dss-63	127	19	,	,	PUNCT
dss-63	127	20	which	which	PRON
dss-63	127	21	physical	physical	ADJ
dss-63	127	22	models	model	NOUN
dss-63	127	23	will	will	AUX
dss-63	127	24	be	be	AUX
dss-63	127	25	included	include	VERB
dss-63	127	26	in	in	ADP
dss-63	127	27	the	the	DET
dss-63	127	28	analysis	analysis	NOUN
dss-63	127	29	(	(	PUNCT
dss-63	127	30	viscosity	viscosity	NOUN
dss-63	127	31	,	,	PUNCT
dss-63	127	32	turbulence	turbulence	NOUN
dss-63	127	33	,	,	PUNCT
dss-63	127	34	compressibility	compressibility	NOUN
dss-63	127	35	)	)	PUNCT
dss-63	127	36	,	,	PUNCT
dss-63	127	37	what	what	DET
dss-63	127	38	simplifications	simplification	NOUN
dss-63	127	39	can	can	AUX
dss-63	127	40	be	be	AUX
dss-63	127	41	used	use	VERB
dss-63	127	42	,	,	PUNCT
dss-63	127	43	whether	whether	SCONJ
dss-63	127	44	user	user	NOUN
dss-63	127	45	-	-	PUNCT
dss-63	127	46	defined	define	VERB
dss-63	127	47	functions	function	NOUN
dss-63	127	48	should	should	AUX
dss-63	127	49	be	be	AUX
dss-63	127	50	used	use	VERB
dss-63	127	51	,	,	PUNCT
dss-63	127	52	what	what	DET
dss-63	127	53	accuracy	accuracy	NOUN
dss-63	127	54	is	be	AUX
dss-63	127	55	required	require	VERB
dss-63	127	56	and	and	CCONJ
dss-63	127	57	how	how	SCONJ
dss-63	127	58	long	long	ADV
dss-63	127	59	it	it	PRON
dss-63	127	60	takes	take	VERB
dss-63	127	61	to	to	PART
dss-63	127	62	get	get	VERB
dss-63	127	63	results	result	NOUN
dss-63	127	64	[	[	X
dss-63	127	65	8	8	NUM
dss-63	127	66	]	]	PUNCT
dss-63	127	67	.	.	PUNCT
dss-63	128	1	dss	dss	NOUN
dss-63	128	2	vol	vol	NOUN
dss-63	128	3	.	.	PROPN
dss-63	129	1	1	1	NUM
dss-63	129	2	,	,	PUNCT
dss-63	129	3	no	no	INTJ
dss-63	129	4	.	.	NOUN
dss-63	129	5	1	1	NUM
dss-63	129	6	,	,	PUNCT
dss-63	129	7	december	december	PROPN
dss-63	129	8	2020	2020	NUM
dss-63	129	9	,	,	PUNCT
dss-63	129	10	pp.1	pp.1	NOUN
dss-63	129	11	-	-	PUNCT
dss-63	129	12	15	15	NUM
dss-63	129	13	8	8	NUM
dss-63	129	14			NOUN
dss-63	129	15	preprocessing	preprocessing	NOUN
dss-63	129	16	involves	involve	NOUN
dss-63	129	17	defining	define	VERB
dss-63	129	18	the	the	DET
dss-63	129	19	geometry	geometry	NOUN
dss-63	129	20	,	,	PUNCT
dss-63	129	21	mesh	mesh	NOUN
dss-63	129	22	(	(	PUNCT
dss-63	129	23	space	space	NOUN
dss-63	129	24	discretization	discretization	NOUN
dss-63	129	25	)	)	PUNCT
dss-63	129	26	,	,	PUNCT
dss-63	129	27	physical	physical	ADJ
dss-63	129	28	model	model	NOUN
dss-63	129	29	,	,	PUNCT
dss-63	129	30	and	and	CCONJ
dss-63	129	31	solver	solver	ADV
dss-63	129	32	used	use	VERB
dss-63	129	33	[	[	PUNCT
dss-63	129	34	8	8	NUM
dss-63	129	35	]	]	PUNCT
dss-63	129	36	.	.	PUNCT
dss-63	130	1			NOUN
dss-63	130	2	solver	solver	PROPN
dss-63	130	3	settings	setting	NOUN
dss-63	130	4	include	include	VERB
dss-63	130	5	solver	solver	ADJ
dss-63	130	6	type	type	NOUN
dss-63	130	7	selection	selection	NOUN
dss-63	130	8	,	,	PUNCT
dss-63	130	9	discretization	discretization	NOUN
dss-63	130	10	scheme	scheme	NOUN
dss-63	130	11	,	,	PUNCT
dss-63	130	12	solution	solution	NOUN
dss-63	130	13	initialization	initialization	NOUN
dss-63	130	14	,	,	PUNCT
dss-63	130	15	convergence	convergence	NOUN
dss-63	130	16	monitoring	monitoring	NOUN
dss-63	130	17	(	(	PUNCT
dss-63	130	18	stability	stability	NOUN
dss-63	130	19	analysis	analysis	NOUN
dss-63	130	20	)	)	PUNCT
dss-63	130	21	,	,	PUNCT
dss-63	130	22	and	and	CCONJ
dss-63	130	23	accuracy	accuracy	NOUN
dss-63	130	24	check	check	NOUN
dss-63	130	25	(	(	PUNCT
dss-63	130	26	mesh	mesh	NOUN
dss-63	130	27	independence	independence	NOUN
dss-63	130	28	check	check	NOUN
dss-63	130	29	and	and	CCONJ
dss-63	130	30	mesh	mesh	NOUN
dss-63	130	31	adjustment	adjustment	NOUN
dss-63	130	32	on	on	ADP
dss-63	130	33	a	a	DET
dss-63	130	34	specific	specific	ADJ
dss-63	130	35	part	part	NOUN
dss-63	130	36	of	of	ADP
dss-63	130	37	the	the	DET
dss-63	130	38	domain	domain	NOUN
dss-63	130	39	)	)	PUNCT
dss-63	131	1	[	[	X
dss-63	131	2	8	8	NUM
dss-63	131	3	]	]	PUNCT
dss-63	131	4	.	.	PUNCT
dss-63	132	1			X
dss-63	132	2	in	in	ADP
dss-63	132	3	the	the	DET
dss-63	132	4	post	post	ADJ
dss-63	132	5	-	-	ADJ
dss-63	132	6	processing	processing	ADJ
dss-63	132	7	process	process	NOUN
dss-63	132	8	,	,	PUNCT
dss-63	132	9	the	the	DET
dss-63	132	10	results	result	NOUN
dss-63	132	11	are	be	AUX
dss-63	132	12	examined	examine	VERB
dss-63	132	13	and	and	CCONJ
dss-63	132	14	analyzed	analyze	VERB
dss-63	132	15	to	to	PART
dss-63	132	16	understand	understand	VERB
dss-63	132	17	the	the	DET
dss-63	132	18	solution	solution	NOUN
dss-63	132	19	and	and	CCONJ
dss-63	132	20	extract	extract	VERB
dss-63	132	21	useful	useful	ADJ
dss-63	132	22	data	datum	NOUN
dss-63	132	23	.	.	PUNCT
dss-63	133	1	visualization	visualization	NOUN
dss-63	133	2	tools	tool	NOUN
dss-63	133	3	in	in	ADP
dss-63	133	4	numerical	numerical	ADJ
dss-63	133	5	programs	program	NOUN
dss-63	133	6	make	make	VERB
dss-63	133	7	it	it	PRON
dss-63	133	8	possible	possible	ADJ
dss-63	133	9	to	to	PART
dss-63	133	10	gain	gain	VERB
dss-63	133	11	insight	insight	NOUN
dss-63	133	12	into	into	ADP
dss-63	133	13	the	the	DET
dss-63	133	14	field	field	NOUN
dss-63	133	15	of	of	ADP
dss-63	133	16	pressures	pressure	NOUN
dss-63	133	17	or	or	CCONJ
dss-63	133	18	velocities	velocity	NOUN
dss-63	133	19	,	,	PUNCT
dss-63	133	20	to	to	PART
dss-63	133	21	visualize	visualize	VERB
dss-63	133	22	flow	flow	NOUN
dss-63	133	23	vectors	vector	NOUN
dss-63	133	24	,	,	PUNCT
dss-63	133	25	to	to	PART
dss-63	133	26	predict	predict	VERB
dss-63	133	27	the	the	DET
dss-63	133	28	position	position	NOUN
dss-63	133	29	of	of	ADP
dss-63	133	30	shock	shock	NOUN
dss-63	133	31	waves	wave	NOUN
dss-63	133	32	.	.	PUNCT
dss-63	134	1	[	[	X
dss-63	134	2	8	8	NUM
dss-63	134	3	]	]	PUNCT
dss-63	134	4	.	.	PUNCT
dss-63	135	1	figure	figure	NOUN
dss-63	135	2	20	20	NUM
dss-63	135	3	.	.	PUNCT
dss-63	136	1	process	process	NOUN
dss-63	136	2	of	of	ADP
dss-63	136	3	numerical	numerical	ADJ
dss-63	136	4	simulation	simulation	NOUN
dss-63	136	5	[	[	X
dss-63	136	6	8	8	NUM
dss-63	136	7	]	]	SYM
dss-63	136	8	2.2.1	2.2.1	NUM
dss-63	136	9	.	.	PUNCT
dss-63	136	10	mathematical	mathematical	ADJ
dss-63	136	11	model	model	NOUN
dss-63	136	12	each	each	DET
dss-63	136	13	simulation	simulation	NOUN
dss-63	136	14	is	be	AUX
dss-63	136	15	based	base	VERB
dss-63	136	16	on	on	ADP
dss-63	136	17	a	a	DET
dss-63	136	18	mathematical	mathematical	ADJ
dss-63	136	19	model	model	NOUN
dss-63	136	20	,	,	PUNCT
dss-63	136	21	which	which	PRON
dss-63	136	22	denotes	denote	VERB
dss-63	136	23	the	the	DET
dss-63	136	24	mathematical	mathematical	ADJ
dss-63	136	25	notation	notation	NOUN
dss-63	136	26	of	of	ADP
dss-63	136	27	a	a	DET
dss-63	136	28	physical	physical	ADJ
dss-63	136	29	model	model	NOUN
dss-63	136	30	.	.	PUNCT
dss-63	137	1	the	the	DET
dss-63	137	2	mathematical	mathematical	ADJ
dss-63	137	3	model	model	NOUN
dss-63	137	4	includes	include	VERB
dss-63	137	5	the	the	DET
dss-63	137	6	following	follow	VERB
dss-63	137	7	assumptions	assumption	NOUN
dss-63	137	8	[	[	X
dss-63	137	9	7	7	NUM
dss-63	137	10	]	]	NUM
dss-63	137	11	:	:	PUNCT
dss-63	137	12			PRON
dss-63	137	13	air	air	NOUN
dss-63	137	14	is	be	AUX
dss-63	137	15	a	a	DET
dss-63	137	16	continuum	continuum	ADJ
dss-63	137	17	.	.	PUNCT
dss-63	138	1			NOUN
dss-63	138	2	air	air	NOUN
dss-63	138	3	is	be	AUX
dss-63	138	4	considered	consider	VERB
dss-63	138	5	a	a	DET
dss-63	138	6	homogeneous	homogeneous	ADJ
dss-63	138	7	mixture	mixture	NOUN
dss-63	138	8	of	of	ADP
dss-63	138	9	gases	gas	NOUN
dss-63	138	10	.	.	PUNCT
dss-63	139	1			X
dss-63	140	1	the	the	DET
dss-63	140	2	physical	physical	ADJ
dss-63	140	3	properties	property	NOUN
dss-63	140	4	of	of	ADP
dss-63	140	5	air	air	NOUN
dss-63	140	6	are	be	AUX
dss-63	140	7	the	the	DET
dss-63	140	8	same	same	ADJ
dss-63	140	9	in	in	ADP
dss-63	140	10	all	all	DET
dss-63	140	11	directions	direction	NOUN
dss-63	140	12	the	the	DET
dss-63	140	13	air	air	NOUN
dss-63	140	14	is	be	AUX
dss-63	140	15	isotropic	isotropic	ADJ
dss-63	140	16	.	.	PUNCT
dss-63	141	1			NOUN
dss-63	141	2	air	air	NOUN
dss-63	141	3	is	be	AUX
dss-63	141	4	a	a	DET
dss-63	141	5	single	single	ADJ
dss-63	141	6	-	-	PUNCT
dss-63	141	7	phase	phase	NOUN
dss-63	141	8	fluid	fluid	NOUN
dss-63	141	9	.	.	PUNCT
dss-63	142	1			X
dss-63	142	2	mass	mass	ADJ
dss-63	142	3	forces	force	NOUN
dss-63	142	4	are	be	AUX
dss-63	142	5	neglected	neglect	VERB
dss-63	142	6	.	.	PUNCT
dss-63	143	1	continuity	continuity	NOUN
dss-63	143	2	behavior	behavior	NOUN
dss-63	143	3	can	can	AUX
dss-63	143	4	be	be	AUX
dss-63	143	5	described	describe	VERB
dss-63	143	6	by	by	ADP
dss-63	143	7	transport	transport	NOUN
dss-63	143	8	equations	equation	NOUN
dss-63	143	9	based	base	VERB
dss-63	143	10	on	on	ADP
dss-63	143	11	the	the	DET
dss-63	143	12	basic	basic	ADJ
dss-63	143	13	laws	law	NOUN
dss-63	143	14	of	of	ADP
dss-63	143	15	mass	mass	ADJ
dss-63	143	16	conservation	conservation	NOUN
dss-63	143	17	,	,	PUNCT
dss-63	143	18	momentum	momentum	NOUN
dss-63	143	19	,	,	PUNCT
dss-63	143	20	and	and	CCONJ
dss-63	143	21	energy	energy	NOUN
dss-63	143	22	.	.	PUNCT
dss-63	144	1	the	the	DET
dss-63	144	2	equations	equation	NOUN
dss-63	144	3	derived	derive	VERB
dss-63	144	4	from	from	ADP
dss-63	144	5	the	the	DET
dss-63	144	6	given	give	VERB
dss-63	144	7	laws	law	NOUN
dss-63	144	8	are	be	AUX
dss-63	144	9	presented	present	VERB
dss-63	144	10	in	in	ADP
dss-63	144	11	integral	integral	ADJ
dss-63	144	12	form	form	NOUN
dss-63	144	13	for	for	ADP
dss-63	144	14	an	an	DET
dss-63	144	15	arbitrarily	arbitrarily	ADV
dss-63	144	16	selected	select	VERB
dss-63	144	17	part	part	NOUN
dss-63	144	18	of	of	ADP
dss-63	144	19	the	the	DET
dss-63	144	20	continuum	continuum	NOUN
dss-63	144	21	,	,	PUNCT
dss-63	144	22	the	the	DET
dss-63	144	23	volume	volume	NOUN
dss-63	144	24	ω	ω	PROPN
dss-63	144	25	bounded	bound	VERB
dss-63	144	26	by	by	ADP
dss-63	144	27	a	a	DET
dss-63	144	28	closed	closed	ADJ
dss-63	144	29	area	area	NOUN
dss-63	144	30	the	the	DET
dss-63	144	31	limit	limit	NOUN
dss-63	144	32	of	of	ADP
dss-63	144	33	the	the	DET
dss-63	144	34	control	control	NOUN
dss-63	144	35	volume	volume	NOUN
dss-63	144	36	dω	dω	PROPN
dss-63	144	37	(	(	PUNCT
dss-63	144	38	figure	figure	NOUN
dss-63	144	39	11	11	NUM
dss-63	144	40	)	)	PUNCT
dss-63	144	41	.	.	PUNCT
dss-63	145	1	the	the	DET
dss-63	145	2	surface	surface	NOUN
dss-63	145	3	element	element	NOUN
dss-63	145	4	ds	ds	NOUN
dss-63	145	5	is	be	AUX
dss-63	145	6	defined	define	VERB
dss-63	145	7	by	by	ADP
dss-63	145	8	the	the	DET
dss-63	145	9	unit	unit	NOUN
dss-63	145	10	vector	vector	NOUN
dss-63	145	11	of	of	ADP
dss-63	145	12	the	the	DET
dss-63	145	13	normal	normal	ADJ
dss-63	145	14	𝑛	𝑛	NOUN
dss-63	146	1	[	[	X
dss-63	146	2	7	7	NUM
dss-63	146	3	]	]	PUNCT
dss-63	146	4	.	.	PUNCT
dss-63	147	1	figure	figure	NOUN
dss-63	147	2	11	11	NUM
dss-63	147	3	.	.	PUNCT
dss-63	148	1	control	control	NOUN
dss-63	148	2	volume	volume	NOUN
dss-63	148	3	[	[	X
dss-63	148	4	7	7	NUM
dss-63	148	5	]	]	ADJ
dss-63	148	6	dss	dss	NOUN
dss-63	148	7	vol	vol	NOUN
dss-63	148	8	.	.	PROPN
dss-63	149	1	1	1	NUM
dss-63	149	2	,	,	PUNCT
dss-63	149	3	no	no	INTJ
dss-63	149	4	.	.	NOUN
dss-63	149	5	1	1	NUM
dss-63	149	6	,	,	PUNCT
dss-63	149	7	december	december	PROPN
dss-63	149	8	2020	2020	NUM
dss-63	149	9	,	,	PUNCT
dss-63	149	10	pp.1	pp.1	NOUN
dss-63	149	11	-	-	SYM
dss-63	149	12	15	15	NUM
dss-63	149	13	9	9	NUM
dss-63	149	14	the	the	DET
dss-63	149	15	characteristics	characteristic	NOUN
dss-63	149	16	of	of	ADP
dss-63	149	17	the	the	DET
dss-63	149	18	air	air	NOUN
dss-63	149	19	flow	flow	NOUN
dss-63	149	20	(	(	PUNCT
dss-63	149	21	pressure	pressure	NOUN
dss-63	149	22	,	,	PUNCT
dss-63	149	23	tangential	tangential	ADJ
dss-63	149	24	stress	stress	NOUN
dss-63	149	25	,	,	PUNCT
dss-63	149	26	velocity	velocity	NOUN
dss-63	149	27	,	,	PUNCT
dss-63	149	28	temperature	temperature	NOUN
dss-63	149	29	,	,	PUNCT
dss-63	149	30	etc	etc	X
dss-63	149	31	.	.	X
dss-63	149	32	)	)	PUNCT
dss-63	149	33	are	be	AUX
dss-63	149	34	determined	determine	VERB
dss-63	149	35	,	,	PUNCT
dss-63	149	36	at	at	ADP
dss-63	149	37	each	each	DET
dss-63	149	38	point	point	NOUN
dss-63	149	39	in	in	ADP
dss-63	149	40	space	space	NOUN
dss-63	149	41	and	and	CCONJ
dss-63	149	42	at	at	ADP
dss-63	149	43	any	any	DET
dss-63	149	44	time	time	NOUN
dss-63	149	45	,	,	PUNCT
dss-63	149	46	by	by	ADP
dss-63	149	47	a	a	DET
dss-63	149	48	system	system	NOUN
dss-63	149	49	of	of	ADP
dss-63	149	50	differential	differential	ADJ
dss-63	149	51	equations	equation	NOUN
dss-63	150	1	[	[	X
dss-63	150	2	9	9	NUM
dss-63	150	3	]	]	NUM
dss-63	150	4	:	:	PUNCT
dss-63	150	5			PUNCT
dss-63	150	6	law	law	NOUN
dss-63	150	7	of	of	ADP
dss-63	150	8	mass	mass	ADJ
dss-63	150	9	conservation	conservation	NOUN
dss-63	150	10	:	:	PUNCT
dss-63	151	1	𝜕	𝜕	PROPN
dss-63	151	2	𝜕𝑡	𝜕𝑡	PROPN
dss-63	151	3	𝜌	𝜌	X
dss-63	151	4	𝑑ω	𝑑ω	X
dss-63	151	5	+	+	CCONJ
dss-63	151	6	𝜌(	𝜌(	PROPN
dss-63	151	7	�	�	NOUN
dss-63	151	8	⃗	⃗	NOUN
dss-63	151	9	�	�	PROPN
dss-63	151	10	∙	∙	PROPN
dss-63	151	11	𝑛)𝑑𝑆	𝑛)𝑑𝑆	PROPN
dss-63	151	12	=	=	SYM
dss-63	151	13	0	0	NUM
dss-63	151	14	(	(	PUNCT
dss-63	151	15	30	30	NUM
dss-63	151	16	)	)	PUNCT
dss-63	151	17			NOUN
dss-63	151	18	law	law	NOUN
dss-63	151	19	of	of	ADP
dss-63	151	20	momentum	momentum	NOUN
dss-63	151	21	conservation	conservation	NOUN
dss-63	151	22	:	:	PUNCT
dss-63	151	23	𝜕	𝜕	PROPN
dss-63	151	24	𝜕𝑡	𝜕𝑡	PROPN
dss-63	151	25	𝜌	𝜌	ADP
dss-63	151	26	�	�	PROPN
dss-63	151	27	⃗	⃗	NOUN
dss-63	151	28	�	�	PROPN
dss-63	151	29	𝑑ω	𝑑ω	PROPN
dss-63	151	30	+	+	CCONJ
dss-63	151	31	𝜌	𝜌	PART
dss-63	151	32	�	�	NOUN
dss-63	151	33	⃗	⃗	NOUN
dss-63	151	34	�	�	PROPN
dss-63	151	35	(	(	PUNCT
dss-63	151	36	�	�	NOUN
dss-63	151	37	⃗	⃗	NOUN
dss-63	151	38	�	�	NOUN
dss-63	151	39	∙	∙	PROPN
dss-63	151	40	𝑛)𝑑𝑆	𝑛)𝑑𝑆	PROPN
dss-63	151	41	=	=	PUNCT
dss-63	152	1	−	−	PROPN
dss-63	152	2	𝑝𝑛𝑑𝑆	𝑝𝑛𝑑𝑆	NOUN
dss-63	152	3	+	+	CCONJ
dss-63	152	4	(	(	PUNCT
dss-63	152	5	�	�	PROPN
dss-63	152	6	̿	̿	PART
dss-63	152	7	�	�	PROPN
dss-63	152	8	∙	∙	PROPN
dss-63	152	9	𝑛)𝑑𝑆	𝑛)𝑑𝑆	PROPN
dss-63	152	10	(	(	PUNCT
dss-63	152	11	31	31	NUM
dss-63	152	12	)	)	PUNCT
dss-63	152	13			NOUN
dss-63	152	14	law	law	NOUN
dss-63	152	15	of	of	ADP
dss-63	152	16	energy	energy	NOUN
dss-63	152	17	conservation	conservation	NOUN
dss-63	152	18	:	:	PUNCT
dss-63	152	19	𝜕	𝜕	PROPN
dss-63	152	20	𝜕𝑡	𝜕𝑡	PROPN
dss-63	152	21	𝜌𝐸𝑑ω	𝜌𝐸𝑑ω	PROPN
dss-63	152	22	+	+	CCONJ
dss-63	152	23	𝜌𝐸(	𝜌𝐸(	PROPN
dss-63	152	24	�	�	NOUN
dss-63	152	25	⃗	⃗	NOUN
dss-63	152	26	�	�	PROPN
dss-63	152	27	∙	∙	PROPN
dss-63	152	28	𝑛)𝑑𝑆	𝑛)𝑑𝑆	PROPN
dss-63	152	29	=	=	SYM
dss-63	152	30	𝑘(∇𝑇	𝑘(∇𝑇	PROPN
dss-63	152	31	∙	∙	PROPN
dss-63	152	32	𝑛)𝑑ω	𝑛)𝑑ω	PROPN
dss-63	152	33	−	−	PROPN
dss-63	152	34	𝑝(	𝑝(	NUM
dss-63	152	35	�	�	PROPN
dss-63	152	36	⃗	⃗	NOUN
dss-63	152	37	�	�	PROPN
dss-63	152	38	∙	∙	PROPN
dss-63	152	39	𝑛)𝑑𝑆	𝑛)𝑑𝑆	PROPN
dss-63	152	40	+	+	CCONJ
dss-63	152	41	(	(	PUNCT
dss-63	152	42	�	�	PROPN
dss-63	152	43	̿	̿	PART
dss-63	152	44	�	�	PROPN
dss-63	152	45	∙	∙	PROPN
dss-63	152	46	�	�	PROPN
dss-63	152	47	⃗	⃗	PROPN
dss-63	152	48	�	�	PROPN
dss-63	152	49	)𝑛𝑑𝑆	)𝑛𝑑𝑆	NOUN
dss-63	152	50	(	(	PUNCT
dss-63	152	51	32	32	NUM
dss-63	152	52	)	)	PUNCT
dss-63	152	53	where	where	SCONJ
dss-63	152	54	�	�	NOUN
dss-63	152	55	⃗	⃗	NOUN
dss-63	152	56	�	�	PROPN
dss-63	152	57	is	be	AUX
dss-63	152	58	velocity	velocity	NOUN
dss-63	152	59	of	of	ADP
dss-63	152	60	airflow	airflow	NOUN
dss-63	152	61	,	,	PUNCT
dss-63	152	62	p	p	NOUN
dss-63	152	63	is	be	AUX
dss-63	152	64	pressure	pressure	NOUN
dss-63	152	65	,	,	PUNCT
dss-63	152	66	ρ	ρ	PROPN
dss-63	152	67	is	be	AUX
dss-63	152	68	density	density	NOUN
dss-63	152	69	,	,	PUNCT
dss-63	152	70	t	t	PROPN
dss-63	152	71	is	be	AUX
dss-63	152	72	temperature	temperature	NOUN
dss-63	152	73	,	,	PUNCT
dss-63	152	74	e	e	X
dss-63	152	75	is	be	AUX
dss-63	152	76	total	total	ADJ
dss-63	152	77	energy	energy	NOUN
dss-63	152	78	,	,	PUNCT
dss-63	152	79	𝜏̿	𝜏̿	PUNCT
dss-63	152	80	is	be	AUX
dss-63	152	81	stress	stress	ADJ
dss-63	152	82	tensor	tensor	NOUN
dss-63	152	83	.	.	PUNCT
dss-63	153	1	2.2.2	2.2.2	NUM
dss-63	153	2	.	.	PUNCT
dss-63	153	3	simulation	simulation	NOUN
dss-63	153	4	of	of	ADP
dss-63	153	5	air	air	NOUN
dss-63	153	6	flow	flow	NOUN
dss-63	153	7	around	around	ADP
dss-63	153	8	projectile	projectile	NOUN
dss-63	153	9	the	the	DET
dss-63	153	10	following	following	NOUN
dss-63	153	11	will	will	AUX
dss-63	153	12	be	be	AUX
dss-63	153	13	adopted	adopt	VERB
dss-63	153	14	for	for	ADP
dss-63	153	15	all	all	DET
dss-63	153	16	simulations	simulation	NOUN
dss-63	153	17	[	[	X
dss-63	153	18	9	9	NUM
dss-63	153	19	]	]	NUM
dss-63	153	20	:	:	PUNCT
dss-63	153	21			PRON
dss-63	153	22	the	the	DET
dss-63	153	23	problem	problem	NOUN
dss-63	153	24	will	will	AUX
dss-63	153	25	be	be	AUX
dss-63	153	26	observed	observe	VERB
dss-63	153	27	as	as	ADP
dss-63	153	28	3d	3d	NUM
dss-63	153	29	geometry	geometry	NOUN
dss-63	153	30	problem	problem	NOUN
dss-63	153	31	(	(	PUNCT
dss-63	153	32	because	because	SCONJ
dss-63	153	33	of	of	ADP
dss-63	153	34	fins	fin	NOUN
dss-63	153	35	)	)	PUNCT
dss-63	153	36	.	.	PUNCT
dss-63	154	1			PUNCT
dss-63	155	1	the	the	DET
dss-63	155	2	working	work	VERB
dss-63	155	3	fluid	fluid	NOUN
dss-63	155	4	is	be	AUX
dss-63	155	5	air	air	NOUN
dss-63	155	6	,	,	PUNCT
dss-63	155	7	an	an	DET
dss-63	155	8	ideal	ideal	ADJ
dss-63	155	9	gas	gas	NOUN
dss-63	155	10	,	,	PUNCT
dss-63	155	11	which	which	PRON
dss-63	155	12	is	be	AUX
dss-63	155	13	modified	modify	VERB
dss-63	155	14	in	in	ADP
dss-63	155	15	accordance	accordance	NOUN
dss-63	155	16	with	with	ADP
dss-63	155	17	compressibility	compressibility	NOUN
dss-63	155	18	and	and	CCONJ
dss-63	155	19	changes	change	NOUN
dss-63	155	20	in	in	ADP
dss-63	155	21	thermo	thermo	NOUN
dss-63	155	22	-	-	PUNCT
dss-63	155	23	physical	physical	ADJ
dss-63	155	24	characteristics	characteristic	NOUN
dss-63	155	25	with	with	ADP
dss-63	155	26	the	the	DET
dss-63	155	27	temperature	temperature	NOUN
dss-63	155	28	.	.	PUNCT
dss-63	156	1	density	density	NOUN
dss-63	156	2	and	and	CCONJ
dss-63	156	3	viscosity	viscosity	NOUN
dss-63	156	4	depends	depend	VERB
dss-63	156	5	on	on	ADP
dss-63	156	6	temperature	temperature	NOUN
dss-63	156	7	,	,	PUNCT
dss-63	156	8	where	where	SCONJ
dss-63	156	9	cp	cp	INTJ
dss-63	156	10	and	and	CCONJ
dss-63	156	11	thermal	thermal	ADJ
dss-63	156	12	conductivity	conductivity	NOUN
dss-63	156	13	are	be	AUX
dss-63	156	14	considered	consider	VERB
dss-63	156	15	constant	constant	ADJ
dss-63	156	16	.	.	PUNCT
dss-63	157	1			X
dss-63	158	1	the	the	DET
dss-63	158	2	flow	flow	NOUN
dss-63	158	3	around	around	ADP
dss-63	158	4	the	the	DET
dss-63	158	5	projectile	projectile	NOUN
dss-63	158	6	is	be	AUX
dss-63	158	7	compressible	compressible	ADJ
dss-63	158	8	and	and	CCONJ
dss-63	158	9	turbulent	turbulent	ADJ
dss-63	158	10	(	(	PUNCT
dss-63	158	11	k	k	NOUN
dss-63	158	12	-	-	PUNCT
dss-63	158	13	ε	ε	PROPN
dss-63	158	14	model	model	NOUN
dss-63	158	15	of	of	ADP
dss-63	158	16	turbulence	turbulence	NOUN
dss-63	158	17	was	be	AUX
dss-63	158	18	used	use	VERB
dss-63	158	19	)	)	PUNCT
dss-63	158	20	.	.	PUNCT
dss-63	159	1			PROPN
dss-63	159	2	spatial	spatial	ADJ
dss-63	159	3	domain	domain	NOUN
dss-63	159	4	discretization	discretization	NOUN
dss-63	159	5	will	will	AUX
dss-63	159	6	be	be	AUX
dss-63	159	7	with	with	ADP
dss-63	159	8	a	a	DET
dss-63	159	9	hybrid	hybrid	ADJ
dss-63	159	10	mesh	mesh	NOUN
dss-63	159	11	.	.	PUNCT
dss-63	160	1			X
dss-63	161	1	the	the	DET
dss-63	161	2	numerical	numerical	ADJ
dss-63	161	3	density	density	NOUN
dss-63	161	4	-	-	PUNCT
dss-63	161	5	based	base	VERB
dss-63	161	6	solver	solver	NOUN
dss-63	161	7	will	will	AUX
dss-63	161	8	be	be	AUX
dss-63	161	9	used	use	VERB
dss-63	161	10	,	,	PUNCT
dss-63	161	11	which	which	PRON
dss-63	161	12	simultaneously	simultaneously	ADV
dss-63	161	13	solves	solve	VERB
dss-63	161	14	the	the	DET
dss-63	161	15	equations	equation	NOUN
dss-63	161	16	of	of	ADP
dss-63	161	17	continuity	continuity	NOUN
dss-63	161	18	,	,	PUNCT
dss-63	161	19	amount	amount	NOUN
dss-63	161	20	of	of	ADP
dss-63	161	21	momentum	momentum	NOUN
dss-63	161	22	and	and	CCONJ
dss-63	161	23	energy	energy	NOUN
dss-63	161	24	.	.	PUNCT
dss-63	162	1	this	this	DET
dss-63	162	2	method	method	NOUN
dss-63	162	3	was	be	AUX
dss-63	162	4	developed	develop	VERB
dss-63	162	5	for	for	ADP
dss-63	162	6	compressible	compressible	ADJ
dss-63	162	7	highspeed	highspeed	NOUN
dss-63	162	8	flows	flow	NOUN
dss-63	162	9	.	.	PUNCT
dss-63	163	1			PUNCT
dss-63	164	1	the	the	DET
dss-63	164	2	equations	equation	NOUN
dss-63	164	3	will	will	AUX
dss-63	164	4	be	be	AUX
dss-63	164	5	linearized	linearize	VERB
dss-63	164	6	in	in	ADP
dss-63	164	7	implicit	implicit	ADJ
dss-63	164	8	form	form	NOUN
dss-63	164	9	,	,	PUNCT
dss-63	164	10	i.e.	i.e.	X
dss-63	164	11	for	for	ADP
dss-63	164	12	given	give	VERB
dss-63	164	13	variables	variable	NOUN
dss-63	164	14	;	;	PUNCT
dss-63	164	15	unknown	unknown	ADJ
dss-63	164	16	values	value	NOUN
dss-63	164	17	in	in	ADP
dss-63	164	18	each	each	DET
dss-63	164	19	cell	cell	NOUN
dss-63	164	20	will	will	AUX
dss-63	164	21	be	be	AUX
dss-63	164	22	computed	compute	VERB
dss-63	164	23	using	use	VERB
dss-63	164	24	relations	relation	NOUN
dss-63	164	25	that	that	PRON
dss-63	164	26	include	include	VERB
dss-63	164	27	both	both	DET
dss-63	164	28	existing	exist	VERB
dss-63	164	29	and	and	CCONJ
dss-63	164	30	unknown	unknown	ADJ
dss-63	164	31	values	value	NOUN
dss-63	164	32	from	from	ADP
dss-63	164	33	adjacent	adjacent	ADJ
dss-63	164	34	cells	cell	NOUN
dss-63	164	35	.	.	PUNCT
dss-63	165	1			X
dss-63	165	2	a	a	DET
dss-63	165	3	uniform	uniform	ADJ
dss-63	165	4	air	air	NOUN
dss-63	165	5	flow	flow	NOUN
dss-63	165	6	encounters	encounter	VERB
dss-63	165	7	a	a	DET
dss-63	165	8	projectile	projectile	NOUN
dss-63	165	9	at	at	ADP
dss-63	165	10	a	a	DET
dss-63	165	11	zero	zero	NUM
dss-63	165	12	yaw	yaw	NOUN
dss-63	165	13	angle	angle	NOUN
dss-63	165	14	.	.	PUNCT
dss-63	166	1	in	in	ADP
dss-63	166	2	order	order	NOUN
dss-63	166	3	to	to	PART
dss-63	166	4	reduce	reduce	VERB
dss-63	166	5	the	the	DET
dss-63	166	6	number	number	NOUN
dss-63	166	7	of	of	ADP
dss-63	166	8	finite	finite	ADJ
dss-63	166	9	elements	element	NOUN
dss-63	166	10	,	,	PUNCT
dss-63	166	11	only	only	ADV
dss-63	166	12	the	the	DET
dss-63	166	13	projectile	projectile	ADJ
dss-63	166	14	segment	segment	NOUN
dss-63	166	15	was	be	AUX
dss-63	166	16	taken	take	VERB
dss-63	166	17	at	at	ADP
dss-63	166	18	an	an	DET
dss-63	166	19	angle	angle	NOUN
dss-63	166	20	of	of	ADP
dss-63	166	21	600	600	NUM
dss-63	166	22	(	(	PUNCT
dss-63	166	23	figure	figure	NOUN
dss-63	166	24	12	12	NUM
dss-63	166	25	)	)	PUNCT
dss-63	166	26	.	.	PUNCT
dss-63	167	1	the	the	DET
dss-63	167	2	calculation	calculation	NOUN
dss-63	167	3	domain	domain	NOUN
dss-63	167	4	is	be	AUX
dss-63	167	5	limited	limit	VERB
dss-63	167	6	by	by	ADP
dss-63	167	7	the	the	DET
dss-63	167	8	external	external	ADJ
dss-63	167	9	boundary	boundary	NOUN
dss-63	167	10	of	of	ADP
dss-63	167	11	the	the	DET
dss-63	167	12	projectile	projectile	NOUN
dss-63	167	13	,	,	PUNCT
dss-63	167	14	symmetry	symmetry	NOUN
dss-63	167	15	planes	plane	NOUN
dss-63	167	16	and	and	CCONJ
dss-63	167	17	the	the	DET
dss-63	167	18	outer	outer	ADJ
dss-63	167	19	boundary	boundary	NOUN
dss-63	167	20	set	set	NOUN
dss-63	167	21	at	at	ADP
dss-63	167	22	distances	distance	NOUN
dss-63	167	23	of	of	ADP
dss-63	167	24	3	3	NUM
dss-63	167	25	projectile	projectile	NOUN
dss-63	167	26	lengths	length	NOUN
dss-63	167	27	from	from	ADP
dss-63	167	28	the	the	DET
dss-63	167	29	shell	shell	NOUN
dss-63	167	30	,	,	PUNCT
dss-63	167	31	7	7	NUM
dss-63	167	32	projectile	projectile	NOUN
dss-63	167	33	lengths	length	NOUN
dss-63	167	34	from	from	ADP
dss-63	167	35	the	the	DET
dss-63	167	36	bottom	bottom	NOUN
dss-63	167	37	and	and	CCONJ
dss-63	167	38	6	6	NUM
dss-63	167	39	lengths	length	NOUN
dss-63	167	40	from	from	ADP
dss-63	167	41	the	the	DET
dss-63	167	42	top	top	ADJ
dss-63	167	43	(	(	PUNCT
dss-63	167	44	cylinder	cylinder	NOUN
dss-63	167	45	-	-	PUNCT
dss-63	167	46	shaped	shape	VERB
dss-63	167	47	mesh	mesh	NOUN
dss-63	167	48	)	)	PUNCT
dss-63	167	49	to	to	PART
dss-63	167	50	avoid	avoid	VERB
dss-63	167	51	disturbances	disturbance	NOUN
dss-63	167	52	in	in	ADP
dss-63	167	53	free	free	ADJ
dss-63	167	54	stream	stream	NOUN
dss-63	167	55	[	[	X
dss-63	167	56	9	9	NUM
dss-63	167	57	]	]	PUNCT
dss-63	167	58	.	.	PUNCT
dss-63	168	1	figure	figure	NOUN
dss-63	168	2	12	12	NUM
dss-63	168	3	.	.	PUNCT
dss-63	169	1	3d	3d	NUM
dss-63	169	2	model	model	NOUN
dss-63	169	3	of	of	ADP
dss-63	169	4	apfsds	apfsds	NOUN
dss-63	169	5	projectile	projectile	NOUN
dss-63	169	6	120	120	NUM
dss-63	169	7	mm	mm	NOUN
dss-63	169	8	m829a2	m829a2	PROPN
dss-63	170	1	[	[	X
dss-63	170	2	9	9	NUM
dss-63	170	3	]	]	PUNCT
dss-63	170	4	dss	dss	NOUN
dss-63	170	5	vol	vol	NOUN
dss-63	170	6	.	.	PROPN
dss-63	170	7	1	1	NUM
dss-63	170	8	,	,	PUNCT
dss-63	170	9	no	no	INTJ
dss-63	170	10	.	.	NOUN
dss-63	170	11	1	1	NUM
dss-63	170	12	,	,	PUNCT
dss-63	170	13	december	december	PROPN
dss-63	170	14	2020	2020	NUM
dss-63	170	15	,	,	PUNCT
dss-63	170	16	pp.1	pp.1	NOUN
dss-63	170	17	-	-	PUNCT
dss-63	170	18	15	15	NUM
dss-63	170	19	10	10	NUM
dss-63	170	20	the	the	DET
dss-63	170	21	following	following	ADJ
dss-63	170	22	types	type	NOUN
dss-63	170	23	of	of	ADP
dss-63	170	24	boundary	boundary	ADJ
dss-63	170	25	conditions	condition	NOUN
dss-63	170	26	were	be	AUX
dss-63	170	27	selected	select	VERB
dss-63	170	28	(	(	PUNCT
dss-63	170	29	figure13	figure13	NOUN
dss-63	170	30	)	)	PUNCT
dss-63	171	1	[	[	X
dss-63	171	2	9	9	NUM
dss-63	171	3	]	]	PUNCT
dss-63	171	4	:	:	PUNCT
dss-63	171	5			X
dss-63	171	6	the	the	DET
dss-63	171	7	"	"	PUNCT
dss-63	171	8	wall	wall	NOUN
dss-63	171	9	"	"	PUNCT
dss-63	171	10	boundary	boundary	ADJ
dss-63	171	11	condition	condition	NOUN
dss-63	171	12	,	,	PUNCT
dss-63	171	13	which	which	PRON
dss-63	171	14	is	be	AUX
dss-63	171	15	used	use	VERB
dss-63	171	16	to	to	PART
dss-63	171	17	separate	separate	VERB
dss-63	171	18	the	the	DET
dss-63	171	19	regions	region	NOUN
dss-63	171	20	of	of	ADP
dss-63	171	21	fluid	fluid	NOUN
dss-63	171	22	and	and	CCONJ
dss-63	171	23	solid	solid	ADJ
dss-63	171	24	matter	matter	NOUN
dss-63	171	25	,	,	PUNCT
dss-63	171	26	is	be	AUX
dss-63	171	27	placed	place	VERB
dss-63	171	28	on	on	ADP
dss-63	171	29	the	the	DET
dss-63	171	30	outer	outer	ADJ
dss-63	171	31	boundary	boundary	NOUN
dss-63	171	32	of	of	ADP
dss-63	171	33	the	the	DET
dss-63	171	34	projectile	projectile	NOUN
dss-63	171	35	.	.	PUNCT
dss-63	172	1	at	at	ADP
dss-63	172	2	the	the	DET
dss-63	172	3	"	"	PUNCT
dss-63	172	4	wall	wall	NOUN
dss-63	172	5	"	"	PUNCT
dss-63	172	6	boundary	boundary	ADJ
dss-63	172	7	condition	condition	NOUN
dss-63	172	8	,	,	PUNCT
dss-63	172	9	the	the	DET
dss-63	172	10	"	"	PUNCT
dss-63	172	11	stationary	stationary	ADJ
dss-63	172	12	wall	wall	NOUN
dss-63	172	13	"	"	PUNCT
dss-63	172	14	and	and	CCONJ
dss-63	172	15	"	"	PUNCT
dss-63	172	16	no	no	DET
dss-63	172	17	-	-	PUNCT
dss-63	172	18	slip	slip	NOUN
dss-63	172	19	"	"	PUNCT
dss-63	172	20	options	option	NOUN
dss-63	172	21	were	be	AUX
dss-63	172	22	chosen	choose	VERB
dss-63	172	23	,	,	PUNCT
dss-63	172	24	because	because	SCONJ
dss-63	172	25	in	in	ADP
dss-63	172	26	the	the	DET
dss-63	172	27	case	case	NOUN
dss-63	172	28	under	under	ADP
dss-63	172	29	consideration	consideration	NOUN
dss-63	172	30	,	,	PUNCT
dss-63	172	31	viscous	viscous	ADJ
dss-63	172	32	effects	effect	NOUN
dss-63	172	33	can	can	AUX
dss-63	172	34	not	not	PART
dss-63	172	35	be	be	AUX
dss-63	172	36	ignored	ignore	VERB
dss-63	172	37	.	.	PUNCT
dss-63	173	1	the	the	DET
dss-63	173	2	mass	mass	PROPN
dss-63	173	3	flux	flux	NOUN
dss-63	173	4	through	through	ADP
dss-63	173	5	the	the	DET
dss-63	173	6	"	"	PUNCT
dss-63	173	7	wall	wall	NOUN
dss-63	173	8	"	"	PUNCT
dss-63	173	9	boundary	boundary	ADJ
dss-63	173	10	is	be	AUX
dss-63	173	11	zero	zero	NUM
dss-63	173	12	,	,	PUNCT
dss-63	173	13	and	and	CCONJ
dss-63	173	14	the	the	DET
dss-63	173	15	pressure	pressure	NOUN
dss-63	173	16	values	value	NOUN
dss-63	173	17	at	at	ADP
dss-63	173	18	this	this	DET
dss-63	173	19	boundary	boundary	NOUN
dss-63	173	20	are	be	AUX
dss-63	173	21	obtained	obtain	VERB
dss-63	173	22	by	by	ADP
dss-63	173	23	extrapolation	extrapolation	NOUN
dss-63	173	24	from	from	ADP
dss-63	173	25	inside	inside	ADP
dss-63	173	26	the	the	DET
dss-63	173	27	solution	solution	NOUN
dss-63	173	28	domain	domain	NOUN
dss-63	173	29	.	.	PUNCT
dss-63	174	1			X
dss-63	174	2	the	the	DET
dss-63	174	3	"	"	PUNCT
dss-63	174	4	symmetry	symmetry	NOUN
dss-63	174	5	"	"	PUNCT
dss-63	174	6	boundary	boundary	ADJ
dss-63	174	7	condition	condition	NOUN
dss-63	174	8	was	be	AUX
dss-63	174	9	used	use	VERB
dss-63	174	10	as	as	ADP
dss-63	174	11	a	a	DET
dss-63	174	12	plane	plane	NOUN
dss-63	174	13	of	of	ADP
dss-63	174	14	axisymmetric	axisymmetric	ADJ
dss-63	174	15	geometry	geometry	NOUN
dss-63	174	16	.	.	PUNCT
dss-63	175	1			X
dss-63	175	2	the	the	DET
dss-63	175	3	"	"	PUNCT
dss-63	175	4	pressure	pressure	NOUN
dss-63	175	5	far	far	ADJ
dss-63	175	6	field	field	NOUN
dss-63	175	7	"	"	PUNCT
dss-63	175	8	boundary	boundary	ADJ
dss-63	175	9	condition	condition	NOUN
dss-63	175	10	,	,	PUNCT
dss-63	175	11	which	which	PRON
dss-63	175	12	is	be	AUX
dss-63	175	13	used	use	VERB
dss-63	175	14	to	to	PART
dss-63	175	15	model	model	VERB
dss-63	175	16	the	the	DET
dss-63	175	17	parameters	parameter	NOUN
dss-63	175	18	of	of	ADP
dss-63	175	19	the	the	DET
dss-63	175	20	compressible	compressible	ADJ
dss-63	175	21	free	free	ADJ
dss-63	175	22	stream	stream	NOUN
dss-63	175	23	at	at	ADP
dss-63	175	24	infinity	infinity	NOUN
dss-63	175	25	,	,	PUNCT
dss-63	175	26	is	be	AUX
dss-63	175	27	set	set	VERB
dss-63	175	28	at	at	ADP
dss-63	175	29	the	the	DET
dss-63	175	30	outer	outer	ADJ
dss-63	175	31	boundary	boundary	NOUN
dss-63	175	32	of	of	ADP
dss-63	175	33	the	the	DET
dss-63	175	34	calculation	calculation	NOUN
dss-63	175	35	domain	domain	NOUN
dss-63	175	36	for	for	ADP
dss-63	175	37	given	give	VERB
dss-63	175	38	problem	problem	NOUN
dss-63	175	39	.	.	PUNCT
dss-63	176	1	figure	figure	NOUN
dss-63	176	2	13	13	NUM
dss-63	176	3	.	.	PUNCT
dss-63	177	1	generated	generate	VERB
dss-63	177	2	mesh	mesh	NOUN
dss-63	177	3	around	around	ADP
dss-63	177	4	projectile	projectile	NOUN
dss-63	177	5	120	120	NUM
dss-63	177	6	mm	mm	NOUN
dss-63	177	7	,	,	PUNCT
dss-63	177	8	m829a2	m829a2	NOUN
dss-63	177	9	,	,	PUNCT
dss-63	177	10	and	and	CCONJ
dss-63	177	11	boundary	boundary	ADJ
dss-63	177	12	conditions	condition	NOUN
dss-63	177	13	applied	apply	VERB
dss-63	177	14	[	[	PUNCT
dss-63	177	15	9	9	NUM
dss-63	177	16	]	]	PUNCT
dss-63	177	17	dss	dss	NOUN
dss-63	177	18	vol	vol	NOUN
dss-63	177	19	.	.	PROPN
dss-63	178	1	1	1	NUM
dss-63	178	2	,	,	PUNCT
dss-63	178	3	no	no	INTJ
dss-63	178	4	.	.	NOUN
dss-63	178	5	1	1	NUM
dss-63	178	6	,	,	PUNCT
dss-63	178	7	december	december	PROPN
dss-63	178	8	2020	2020	NUM
dss-63	178	9	,	,	PUNCT
dss-63	178	10	pp.1	pp.1	NOUN
dss-63	178	11	-	-	PUNCT
dss-63	178	12	15	15	NUM
dss-63	178	13	11	11	NUM
dss-63	178	14	3	3	NUM
dss-63	178	15	.	.	PUNCT
dss-63	178	16	results	result	NOUN
dss-63	178	17	and	and	CCONJ
dss-63	178	18	discussion	discussion	NOUN
dss-63	178	19	for	for	ADP
dss-63	178	20	prediction	prediction	NOUN
dss-63	178	21	of	of	ADP
dss-63	178	22	the	the	DET
dss-63	178	23	accuracy	accuracy	NOUN
dss-63	178	24	of	of	ADP
dss-63	178	25	the	the	DET
dss-63	178	26	engineering	engineering	NOUN
dss-63	178	27	model	model	NOUN
dss-63	178	28	(	(	PUNCT
dss-63	178	29	from	from	ADP
dss-63	178	30	the	the	DET
dss-63	178	31	nato	nato	PROPN
dss-63	178	32	related	relate	VERB
dss-63	178	33	stanag	stanag	VERB
dss-63	178	34	4655	4655	NUM
dss-63	178	35	standard	standard	NOUN
dss-63	178	36	)	)	PUNCT
dss-63	178	37	and	and	CCONJ
dss-63	178	38	cfd	cfd	PROPN
dss-63	178	39	numerical	numerical	PROPN
dss-63	178	40	model	model	PROPN
dss-63	178	41	,	,	PUNCT
dss-63	178	42	a	a	DET
dss-63	178	43	comparison	comparison	NOUN
dss-63	178	44	was	be	AUX
dss-63	178	45	made	make	VERB
dss-63	178	46	in	in	ADP
dss-63	178	47	the	the	DET
dss-63	178	48	research	research	NOUN
dss-63	178	49	with	with	ADP
dss-63	178	50	the	the	DET
dss-63	178	51	prodas	prodas	PROPN
dss-63	178	52	model	model	NOUN
dss-63	178	53	.	.	PUNCT
dss-63	179	1	for	for	ADP
dss-63	179	2	calculation	calculation	NOUN
dss-63	179	3	of	of	ADP
dss-63	179	4	axial	axial	ADJ
dss-63	179	5	force	force	NOUN
dss-63	179	6	coefficients	coefficient	NOUN
dss-63	179	7	,	,	PUNCT
dss-63	179	8	apfsds	apfsds	NOUN
dss-63	179	9	projectile	projectile	NOUN
dss-63	179	10	,	,	PUNCT
dss-63	179	11	120	120	NUM
dss-63	179	12	mm	mm	NOUN
dss-63	179	13	,	,	PUNCT
dss-63	179	14	m829a2	m829a2	PROPN
dss-63	179	15	,	,	PUNCT
dss-63	179	16	was	be	AUX
dss-63	179	17	chosen	choose	VERB
dss-63	179	18	.	.	PUNCT
dss-63	180	1	the	the	DET
dss-63	180	2	reason	reason	NOUN
dss-63	180	3	for	for	ADP
dss-63	180	4	choosing	choose	VERB
dss-63	180	5	this	this	DET
dss-63	180	6	projectile	projectile	NOUN
dss-63	180	7	model	model	NOUN
dss-63	180	8	is	be	AUX
dss-63	180	9	because	because	SCONJ
dss-63	180	10	the	the	DET
dss-63	180	11	aerodynamic	aerodynamic	ADJ
dss-63	180	12	coefficients	coefficient	NOUN
dss-63	180	13	are	be	AUX
dss-63	180	14	available	available	ADJ
dss-63	180	15	from	from	ADP
dss-63	180	16	prodas	prodas	PROPN
dss-63	180	17	program	program	NOUN
dss-63	180	18	for	for	ADP
dss-63	180	19	this	this	DET
dss-63	180	20	projectile	projectile	NOUN
dss-63	180	21	model	model	NOUN
dss-63	180	22	.	.	PUNCT
dss-63	181	1	the	the	DET
dss-63	181	2	prodas	prodas	PROPN
dss-63	181	3	software	software	NOUN
dss-63	181	4	was	be	AUX
dss-63	181	5	developed	develop	VERB
dss-63	181	6	to	to	PART
dss-63	181	7	satisfy	satisfy	VERB
dss-63	181	8	a	a	DET
dss-63	181	9	need	need	NOUN
dss-63	181	10	for	for	ADP
dss-63	181	11	rapid	rapid	ADJ
dss-63	181	12	performance	performance	NOUN
dss-63	181	13	evaluation	evaluation	NOUN
dss-63	181	14	of	of	ADP
dss-63	181	15	ammunition	ammunition	NOUN
dss-63	181	16	characteristics	characteristic	NOUN
dss-63	181	17	.	.	PUNCT
dss-63	182	1	the	the	DET
dss-63	182	2	development	development	NOUN
dss-63	182	3	of	of	ADP
dss-63	182	4	an	an	DET
dss-63	182	5	effective	effective	ADJ
dss-63	182	6	design	design	NOUN
dss-63	182	7	/	/	SYM
dss-63	182	8	analysis	analysis	NOUN
dss-63	182	9	tool	tool	NOUN
dss-63	182	10	for	for	ADP
dss-63	182	11	use	use	NOUN
dss-63	182	12	by	by	ADP
dss-63	182	13	the	the	DET
dss-63	182	14	design	design	NOUN
dss-63	182	15	engineer	engineer	NOUN
dss-63	182	16	in	in	ADP
dss-63	182	17	the	the	DET
dss-63	182	18	development	development	NOUN
dss-63	182	19	and	and	CCONJ
dss-63	182	20	evaluation	evaluation	NOUN
dss-63	182	21	of	of	ADP
dss-63	182	22	projectiles	projectile	NOUN
dss-63	182	23	has	have	AUX
dss-63	182	24	been	be	AUX
dss-63	182	25	a	a	DET
dss-63	182	26	multi	multi	ADJ
dss-63	182	27	-	-	ADJ
dss-63	182	28	year	year	NOUN
dss-63	182	29	project	project	NOUN
dss-63	182	30	which	which	PRON
dss-63	182	31	began	begin	VERB
dss-63	182	32	at	at	ADP
dss-63	182	33	general	general	ADJ
dss-63	182	34	electric	electric	NOUN
dss-63	182	35	in	in	ADP
dss-63	182	36	1972	1972	NUM
dss-63	182	37	and	and	CCONJ
dss-63	182	38	has	have	AUX
dss-63	182	39	continued	continue	VERB
dss-63	182	40	at	at	ADP
dss-63	182	41	arrow	arrow	NOUN
dss-63	182	42	tech	tech	NOUN
dss-63	182	43	associates	associates	PROPN
dss-63	182	44	,	,	PUNCT
dss-63	182	45	inc	inc	PROPN
dss-63	182	46	.	.	PROPN
dss-63	182	47	since	since	SCONJ
dss-63	182	48	1991	1991	NUM
dss-63	182	49	.	.	PUNCT
dss-63	183	1	the	the	DET
dss-63	183	2	developed	develop	VERB
dss-63	183	3	tool	tool	NOUN
dss-63	183	4	is	be	AUX
dss-63	183	5	now	now	ADV
dss-63	183	6	called	call	VERB
dss-63	183	7	prodas	prodas	PROPN
dss-63	183	8	which	which	PRON
dss-63	183	9	is	be	AUX
dss-63	183	10	an	an	DET
dss-63	183	11	acronym	acronym	NOUN
dss-63	183	12	for	for	ADP
dss-63	183	13	the	the	DET
dss-63	183	14	projectile	projectile	NOUN
dss-63	183	15	design	design	NOUN
dss-63	183	16	/	/	SYM
dss-63	183	17	analysis	analysis	NOUN
dss-63	183	18	system	system	NOUN
dss-63	183	19	error	error	NOUN
dss-63	183	20	!	!	PUNCT
dss-63	184	1	reference	reference	NOUN
dss-63	184	2	source	source	NOUN
dss-63	184	3	not	not	PART
dss-63	184	4	found	find	VERB
dss-63	184	5	..	..	PUNCT
dss-63	184	6	from	from	ADP
dss-63	184	7	the	the	DET
dss-63	184	8	smallest	small	ADJ
dss-63	184	9	match	match	NOUN
dss-63	184	10	bullets	bullet	NOUN
dss-63	184	11	,	,	PUNCT
dss-63	184	12	to	to	PART
dss-63	184	13	gps	gps	VERB
dss-63	184	14	guided	guide	VERB
dss-63	184	15	artillery	artillery	NOUN
dss-63	184	16	shells	shell	NOUN
dss-63	184	17	,	,	PUNCT
dss-63	184	18	prodas	prodas	PROPN
dss-63	184	19	brings	bring	VERB
dss-63	184	20	together	together	ADV
dss-63	184	21	:	:	PUNCT
dss-63	184	22			X
dss-63	185	1	modeling	modeling	NOUN
dss-63	185	2	building	build	VERB
dss-63	185	3	a	a	DET
dss-63	185	4	model	model	NOUN
dss-63	185	5	from	from	ADP
dss-63	185	6	a	a	DET
dss-63	185	7	drawing	drawing	NOUN
dss-63	185	8	or	or	CCONJ
dss-63	185	9	even	even	ADV
dss-63	185	10	a	a	DET
dss-63	185	11	picture	picture	NOUN
dss-63	185	12	.	.	PUNCT
dss-63	186	1			PART
dss-63	186	2	aerodynamics	aerodynamic	NOUN
dss-63	186	3	comparing	compare	VERB
dss-63	186	4	aerodynamic	aerodynamic	ADJ
dss-63	186	5	coefficients	coefficient	NOUN
dss-63	186	6	from	from	ADP
dss-63	186	7	multiple	multiple	ADJ
dss-63	186	8	aero	aero	PROPN
dss-63	186	9	estimators	estimator	NOUN
dss-63	186	10	.	.	PUNCT
dss-63	187	1			PROPN
dss-63	187	2	launch	launch	NOUN
dss-63	187	3	dynamics	dynamic	NOUN
dss-63	187	4	interior	interior	ADJ
dss-63	187	5	ballistics	ballistic	NOUN
dss-63	187	6	,	,	PUNCT
dss-63	187	7	balloting	balloting	NOUN
dss-63	187	8	and	and	CCONJ
dss-63	187	9	jump	jump	NOUN
dss-63	187	10	.	.	PUNCT
dss-63	188	1			PUNCT
dss-63	189	1	trajectories	trajectory	NOUN
dss-63	189	2	fly	fly	VERB
dss-63	189	3	4dof	4dof	NOUN
dss-63	189	4	,	,	PUNCT
dss-63	189	5	6dof	6dof	NOUN
dss-63	189	6	and	and	CCONJ
dss-63	189	7	body	body	NOUN
dss-63	189	8	fixed	fix	VERB
dss-63	189	9	and	and	CCONJ
dss-63	189	10	guided	guide	VERB
dss-63	189	11	trajectories	trajectory	NOUN
dss-63	189	12	.	.	PUNCT
dss-63	190	1			PART
dss-63	191	1	terminal	terminal	ADJ
dss-63	191	2	effects	effect	NOUN
dss-63	191	3	estimate	estimate	VERB
dss-63	191	4	penetration	penetration	NOUN
dss-63	191	5	of	of	ADP
dss-63	191	6	ke	ke	NOUN
dss-63	191	7	projectiles	projectile	NOUN
dss-63	191	8	and	and	CCONJ
dss-63	191	9	lethality	lethality	NOUN
dss-63	191	10	of	of	ADP
dss-63	191	11	fragmenting	fragment	VERB
dss-63	191	12	or	or	CCONJ
dss-63	191	13	shaped	shape	VERB
dss-63	191	14	charge	charge	NOUN
dss-63	191	15	warheads	warhead	NOUN
dss-63	191	16	.	.	PUNCT
dss-63	192	1			PROPN
dss-63	192	2	system	system	NOUN
dss-63	192	3	effectiveness	effectiveness	NOUN
dss-63	192	4	using	use	VERB
dss-63	192	5	focused	focus	VERB
dss-63	192	6	analysis	analysis	NOUN
dss-63	192	7	or	or	CCONJ
dss-63	192	8	general	general	ADJ
dss-63	192	9	purpose	purpose	NOUN
dss-63	192	10	macros	macro	NOUN
dss-63	192	11	,	,	PUNCT
dss-63	192	12	compare	compare	VERB
dss-63	192	13	projectiles	projectile	NOUN
dss-63	192	14	or	or	CCONJ
dss-63	192	15	even	even	ADV
dss-63	192	16	gn&c	gn&c	PROPN
dss-63	192	17	algorithms	algorithm	NOUN
dss-63	192	18	error	error	NOUN
dss-63	192	19	!	!	PUNCT
dss-63	193	1	reference	reference	NOUN
dss-63	193	2	source	source	NOUN
dss-63	193	3	not	not	PART
dss-63	193	4	found	find	VERB
dss-63	193	5	..	..	PUNCT
dss-63	193	6	3.1	3.1	NUM
dss-63	193	7	.	.	PUNCT
dss-63	194	1	stanag	stanag	PROPN
dss-63	194	2	4655	4655	NUM
dss-63	194	3	vs.	vs.	ADP
dss-63	194	4	prodas	prodas	PROPN
dss-63	194	5	the	the	DET
dss-63	194	6	axial	axial	ADJ
dss-63	194	7	force	force	NOUN
dss-63	194	8	coefficients	coefficient	NOUN
dss-63	194	9	of	of	ADP
dss-63	194	10	the	the	DET
dss-63	194	11	projectile	projectile	NOUN
dss-63	194	12	body	body	NOUN
dss-63	194	13	,	,	PUNCT
dss-63	194	14	predicted	predict	VERB
dss-63	194	15	using	use	VERB
dss-63	194	16	the	the	DET
dss-63	194	17	model	model	NOUN
dss-63	194	18	from	from	ADP
dss-63	194	19	stanag	stanag	PROPN
dss-63	194	20	4655	4655	NUM
dss-63	194	21	and	and	CCONJ
dss-63	194	22	prodas	prodas	PROPN
dss-63	194	23	models	model	NOUN
dss-63	194	24	are	be	AUX
dss-63	194	25	shown	show	VERB
dss-63	194	26	in	in	ADP
dss-63	194	27	figure	figure	NOUN
dss-63	194	28	14	14	NUM
dss-63	194	29	.	.	PUNCT
dss-63	195	1	the	the	DET
dss-63	195	2	axial	axial	ADJ
dss-63	195	3	force	force	NOUN
dss-63	195	4	coefficients	coefficient	NOUN
dss-63	195	5	of	of	ADP
dss-63	195	6	the	the	DET
dss-63	195	7	projectile	projectile	NOUN
dss-63	195	8	body	body	NOUN
dss-63	195	9	predicted	predict	VERB
dss-63	195	10	by	by	ADP
dss-63	195	11	the	the	DET
dss-63	195	12	model	model	NOUN
dss-63	195	13	from	from	ADP
dss-63	195	14	stanag	stanag	ADJ
dss-63	195	15	(	(	PUNCT
dss-63	195	16	figure	figure	NOUN
dss-63	195	17	14	14	NUM
dss-63	195	18	)	)	PUNCT
dss-63	195	19	shows	show	VERB
dss-63	195	20	a	a	DET
dss-63	195	21	significant	significant	ADJ
dss-63	195	22	difference	difference	NOUN
dss-63	195	23	in	in	ADP
dss-63	195	24	the	the	DET
dss-63	195	25	range	range	NOUN
dss-63	195	26	of	of	ADP
dss-63	195	27	mach	mach	NOUN
dss-63	195	28	3	3	NUM
dss-63	195	29	to	to	ADP
dss-63	195	30	5	5	NUM
dss-63	195	31	.	.	PUNCT
dss-63	196	1	it	it	PRON
dss-63	196	2	can	can	AUX
dss-63	196	3	be	be	AUX
dss-63	196	4	seen	see	VERB
dss-63	196	5	that	that	SCONJ
dss-63	196	6	this	this	DET
dss-63	196	7	difference	difference	NOUN
dss-63	196	8	decreases	decrease	VERB
dss-63	196	9	with	with	ADP
dss-63	196	10	increasing	increase	VERB
dss-63	196	11	mach	mach	ADJ
dss-63	196	12	number	number	NOUN
dss-63	196	13	[	[	X
dss-63	196	14	9	9	NUM
dss-63	196	15	]	]	PUNCT
dss-63	196	16	.	.	PUNCT
dss-63	197	1	the	the	DET
dss-63	197	2	axial	axial	ADJ
dss-63	197	3	force	force	NOUN
dss-63	197	4	coefficients	coefficient	NOUN
dss-63	197	5	of	of	ADP
dss-63	197	6	the	the	DET
dss-63	197	7	projectile	projectile	NOUN
dss-63	197	8	fins	fin	NOUN
dss-63	197	9	,	,	PUNCT
dss-63	197	10	predicted	predict	VERB
dss-63	197	11	using	use	VERB
dss-63	197	12	the	the	DET
dss-63	197	13	model	model	NOUN
dss-63	197	14	from	from	ADP
dss-63	197	15	stanag	stanag	PROPN
dss-63	197	16	4655	4655	NUM
dss-63	197	17	and	and	CCONJ
dss-63	197	18	prodas	prodas	PROPN
dss-63	197	19	models	model	NOUN
dss-63	197	20	are	be	AUX
dss-63	197	21	shown	show	VERB
dss-63	197	22	in	in	ADP
dss-63	197	23	figure	figure	NOUN
dss-63	197	24	15	15	NUM
dss-63	197	25	.	.	PUNCT
dss-63	198	1	the	the	DET
dss-63	198	2	downward	downward	ADJ
dss-63	198	3	trend	trend	NOUN
dss-63	198	4	in	in	ADP
dss-63	198	5	the	the	DET
dss-63	198	6	value	value	NOUN
dss-63	198	7	of	of	ADP
dss-63	198	8	the	the	DET
dss-63	198	9	axial	axial	ADJ
dss-63	198	10	force	force	NOUN
dss-63	198	11	coefficient	coefficient	NOUN
dss-63	198	12	of	of	ADP
dss-63	198	13	the	the	DET
dss-63	198	14	fins	fin	NOUN
dss-63	198	15	in	in	ADP
dss-63	198	16	the	the	DET
dss-63	198	17	stanag	stanag	ADJ
dss-63	198	18	model	model	NOUN
dss-63	198	19	is	be	AUX
dss-63	198	20	higher	high	ADJ
dss-63	198	21	than	than	ADP
dss-63	198	22	in	in	ADP
dss-63	198	23	the	the	DET
dss-63	198	24	prodas	prodas	PROPN
dss-63	198	25	model	model	NOUN
dss-63	198	26	.	.	PUNCT
dss-63	199	1	the	the	DET
dss-63	199	2	differences	difference	NOUN
dss-63	199	3	between	between	ADP
dss-63	199	4	the	the	DET
dss-63	199	5	values	value	NOUN
dss-63	199	6	decrease	decrease	VERB
dss-63	199	7	slightly	slightly	ADV
dss-63	199	8	with	with	ADP
dss-63	199	9	increasing	increase	VERB
dss-63	199	10	mach	mach	ADJ
dss-63	199	11	number	number	NOUN
dss-63	199	12	(	(	PUNCT
dss-63	199	13	figure	figure	NOUN
dss-63	199	14	15	15	NUM
dss-63	199	15	)	)	PUNCT
dss-63	200	1	[	[	X
dss-63	200	2	9	9	NUM
dss-63	200	3	]	]	PUNCT
dss-63	200	4	.	.	PUNCT
dss-63	201	1	figure	figure	NOUN
dss-63	201	2	14	14	NUM
dss-63	201	3	.	.	PUNCT
dss-63	202	1	coefficients	coefficient	NOUN
dss-63	202	2	of	of	ADP
dss-63	202	3	axial	axial	ADJ
dss-63	202	4	force	force	NOUN
dss-63	202	5	of	of	ADP
dss-63	202	6	the	the	DET
dss-63	202	7	projectile	projectile	NOUN
dss-63	202	8	body	body	NOUN
dss-63	202	9	(	(	PUNCT
dss-63	202	10	120	120	NUM
dss-63	202	11	mm	mm	NOUN
dss-63	202	12	,	,	PUNCT
dss-63	202	13	m829a2	m829a2	NOUN
dss-63	202	14	)	)	PUNCT
dss-63	203	1	[	[	X
dss-63	203	2	9	9	NUM
dss-63	203	3	]	]	PUNCT
dss-63	203	4	figure	figure	NOUN
dss-63	203	5	15	15	NUM
dss-63	203	6	.	.	PUNCT
dss-63	204	1	coefficients	coefficient	NOUN
dss-63	204	2	of	of	ADP
dss-63	204	3	axial	axial	ADJ
dss-63	204	4	force	force	NOUN
dss-63	204	5	of	of	ADP
dss-63	204	6	the	the	DET
dss-63	204	7	projectile	projectile	ADJ
dss-63	204	8	fins	fin	NOUN
dss-63	204	9	(	(	PUNCT
dss-63	204	10	120	120	NUM
dss-63	204	11	mm	mm	NOUN
dss-63	204	12	,	,	PUNCT
dss-63	204	13	m829a2	m829a2	PROPN
dss-63	204	14	)	)	PUNCT
dss-63	204	15	the	the	DET
dss-63	204	16	axial	axial	ADJ
dss-63	204	17	force	force	NOUN
dss-63	204	18	coefficients	coefficient	NOUN
dss-63	204	19	of	of	ADP
dss-63	204	20	the	the	DET
dss-63	204	21	projectile	projectile	NOUN
dss-63	204	22	obtained	obtain	VERB
dss-63	204	23	by	by	ADP
dss-63	204	24	the	the	DET
dss-63	204	25	model	model	NOUN
dss-63	204	26	from	from	ADP
dss-63	204	27	the	the	DET
dss-63	204	28	stanag	stanag	ADJ
dss-63	204	29	4655	4655	NUM
dss-63	204	30	standard	standard	NOUN
dss-63	204	31	,	,	PUNCT
dss-63	204	32	are	be	AUX
dss-63	204	33	smaller	small	ADJ
dss-63	204	34	than	than	ADP
dss-63	204	35	the	the	DET
dss-63	204	36	coefficients	coefficient	NOUN
dss-63	204	37	obtained	obtain	VERB
dss-63	204	38	by	by	ADP
dss-63	204	39	the	the	DET
dss-63	204	40	prodas	prodas	PROPN
dss-63	204	41	model	model	NOUN
dss-63	204	42	(	(	PUNCT
dss-63	204	43	for	for	ADP
dss-63	204	44	projectile	projectile	NOUN
dss-63	204	45	120	120	NUM
dss-63	204	46	mm	mm	NOUN
dss-63	204	47	,	,	PUNCT
dss-63	204	48	m829a2	m829a2	PROPN
dss-63	204	49	)	)	PUNCT
dss-63	204	50	.	.	PUNCT
dss-63	205	1	the	the	DET
dss-63	205	2	difference	difference	NOUN
dss-63	205	3	between	between	ADP
dss-63	205	4	the	the	DET
dss-63	205	5	values	value	NOUN
dss-63	205	6	of	of	ADP
dss-63	205	7	the	the	DET
dss-63	205	8	coefficients	coefficient	NOUN
dss-63	205	9	obtained	obtain	VERB
dss-63	205	10	with	with	ADP
dss-63	205	11	model	model	NOUN
dss-63	205	12	from	from	ADP
dss-63	205	13	stanag	stanag	NOUN
dss-63	205	14	and	and	CCONJ
dss-63	205	15	prodas	proda	NOUN
dss-63	205	16	,	,	PUNCT
dss-63	205	17	decreases	decrease	VERB
dss-63	205	18	with	with	ADP
dss-63	205	19	increasing	increase	VERB
dss-63	205	20	mach	mach	ADJ
dss-63	205	21	number	number	NOUN
dss-63	205	22	(	(	PUNCT
dss-63	205	23	figure	figure	NOUN
dss-63	205	24	16	16	NUM
dss-63	205	25	)	)	PUNCT
dss-63	205	26	.	.	PUNCT
dss-63	206	1	the	the	DET
dss-63	206	2	percentage	percentage	NOUN
dss-63	206	3	difference	difference	NOUN
dss-63	206	4	of	of	ADP
dss-63	206	5	the	the	DET
dss-63	206	6	coefficients	coefficient	NOUN
dss-63	206	7	obtained	obtain	VERB
dss-63	206	8	by	by	ADP
dss-63	206	9	the	the	DET
dss-63	206	10	model	model	NOUN
dss-63	206	11	from	from	ADP
dss-63	206	12	the	the	DET
dss-63	206	13	stanag	stanag	NOUN
dss-63	206	14	in	in	ADP
dss-63	206	15	relation	relation	NOUN
dss-63	206	16	to	to	ADP
dss-63	206	17	the	the	DET
dss-63	206	18	coefficients	coefficient	NOUN
dss-63	206	19	obtained	obtain	VERB
dss-63	206	20	by	by	ADP
dss-63	206	21	applying	apply	VERB
dss-63	206	22	the	the	DET
dss-63	206	23	prodas	prodas	PROPN
dss-63	206	24	model	model	NOUN
dss-63	206	25	is	be	AUX
dss-63	206	26	given	give	VERB
dss-63	206	27	in	in	ADP
dss-63	206	28	figure	figure	NOUN
dss-63	206	29	17	17	NUM
dss-63	206	30	.	.	PUNCT
dss-63	207	1	from	from	ADP
dss-63	207	2	figure	figure	NOUN
dss-63	207	3	17	17	NUM
dss-63	207	4	it	it	PRON
dss-63	207	5	can	can	AUX
dss-63	207	6	be	be	AUX
dss-63	207	7	noticed	notice	VERB
dss-63	207	8	that	that	SCONJ
dss-63	207	9	the	the	DET
dss-63	207	10	largest	large	ADJ
dss-63	207	11	percentage	percentage	NOUN
dss-63	207	12	difference	difference	NOUN
dss-63	207	13	between	between	ADP
dss-63	207	14	the	the	DET
dss-63	207	15	predicted	predict	VERB
dss-63	207	16	values	value	NOUN
dss-63	207	17	of	of	ADP
dss-63	207	18	the	the	DET
dss-63	207	19	model	model	NOUN
dss-63	207	20	from	from	ADP
dss-63	207	21	the	the	DET
dss-63	207	22	stanag	stanag	NOUN
dss-63	207	23	and	and	CCONJ
dss-63	207	24	prodas	proda	NOUN
dss-63	207	25	is	be	AUX
dss-63	207	26	16.3	16.3	NUM
dss-63	207	27	%	%	NOUN
dss-63	207	28	in	in	ADP
dss-63	207	29	the	the	DET
dss-63	207	30	range	range	NOUN
dss-63	207	31	of	of	ADP
dss-63	207	32	3	3	NUM
dss-63	207	33	to	to	PART
dss-63	207	34	5	5	NUM
dss-63	207	35	mach	mach	NOUN
dss-63	208	1	[	[	X
dss-63	208	2	9	9	NUM
dss-63	208	3	]	]	PUNCT
dss-63	208	4	.	.	PUNCT
dss-63	208	5	0	0	NUM
dss-63	208	6	0.2	0.2	NUM
dss-63	208	7	0.4	0.4	NUM
dss-63	208	8	0.6	0.6	NUM
dss-63	208	9	0.8	0.8	NUM
dss-63	208	10	1	1	NUM
dss-63	208	11	1.2	1.2	NUM
dss-63	208	12	1.4	1.4	NUM
dss-63	208	13	1.6	1.6	NUM
dss-63	208	14	3	3	NUM
dss-63	208	15	3.5	3.5	NUM
dss-63	208	16	4	4	NUM
dss-63	208	17	4.5	4.5	NUM
dss-63	208	18	5	5	NUM
dss-63	208	19	c	c	NOUN
dss-63	208	20	x	x	X
dss-63	209	1	_	_	PUNCT
dss-63	209	2	b	b	X
dss-63	209	3	od	od	PROPN
dss-63	209	4	y	y	PROPN
dss-63	209	5	mach	mach	PROPN
dss-63	209	6	prodas	prodas	PROPN
dss-63	209	7	stanag	stanag	VERB
dss-63	209	8	4655	4655	NUM
dss-63	209	9	0	0	NUM
dss-63	209	10	0.05	0.05	NUM
dss-63	209	11	0.1	0.1	NUM
dss-63	209	12	0.15	0.15	NUM
dss-63	209	13	0.2	0.2	NUM
dss-63	209	14	0.25	0.25	NUM
dss-63	209	15	0.3	0.3	NUM
dss-63	209	16	0.35	0.35	NUM
dss-63	209	17	0.4	0.4	NUM
dss-63	209	18	0.45	0.45	NUM
dss-63	209	19	3	3	NUM
dss-63	209	20	3.5	3.5	NUM
dss-63	209	21	4	4	NUM
dss-63	209	22	4.5	4.5	NUM
dss-63	209	23	5	5	NUM
dss-63	209	24	cx	cx	NOUN
dss-63	210	1	_	_	PUNCT
dss-63	210	2	f	f	PROPN
dss-63	210	3	in	in	ADP
dss-63	210	4	mach	mach	PROPN
dss-63	210	5	prodas	prodas	PROPN
dss-63	210	6	stanag	stanag	VERB
dss-63	210	7	4655	4655	NUM
dss-63	210	8	dss	dss	NOUN
dss-63	210	9	vol	vol	NOUN
dss-63	210	10	.	.	PROPN
dss-63	211	1	1	1	NUM
dss-63	211	2	,	,	PUNCT
dss-63	211	3	no	no	INTJ
dss-63	211	4	.	.	NOUN
dss-63	211	5	1	1	NUM
dss-63	211	6	,	,	PUNCT
dss-63	211	7	december	december	PROPN
dss-63	211	8	2020	2020	NUM
dss-63	211	9	,	,	PUNCT
dss-63	211	10	pp.1	pp.1	NOUN
dss-63	211	11	-	-	PUNCT
dss-63	211	12	15	15	NUM
dss-63	211	13	12	12	NUM
dss-63	211	14	figure	figure	NOUN
dss-63	211	15	16	16	NUM
dss-63	211	16	.	.	PUNCT
dss-63	212	1	coefficients	coefficient	NOUN
dss-63	212	2	of	of	ADP
dss-63	212	3	axial	axial	ADJ
dss-63	212	4	force	force	NOUN
dss-63	212	5	of	of	ADP
dss-63	212	6	the	the	DET
dss-63	212	7	projectile	projectile	NOUN
dss-63	212	8	(	(	PUNCT
dss-63	212	9	projectile	projectile	NOUN
dss-63	212	10	120	120	NUM
dss-63	212	11	mm	mm	NOUN
dss-63	212	12	,	,	PUNCT
dss-63	212	13	m829a2	m829a2	NOUN
dss-63	212	14	)	)	PUNCT
dss-63	213	1	[	[	X
dss-63	213	2	9	9	NUM
dss-63	213	3	]	]	SYM
dss-63	213	4	3.2	3.2	NUM
dss-63	213	5	.	.	PUNCT
dss-63	214	1	cfd	cfd	PROPN
dss-63	214	2	vs.	vs.	ADP
dss-63	214	3	prodas	prodas	PROPN
dss-63	214	4	the	the	DET
dss-63	214	5	results	result	NOUN
dss-63	214	6	of	of	ADP
dss-63	214	7	the	the	DET
dss-63	214	8	numerical	numerical	PROPN
dss-63	214	9	simulation	simulation	PROPN
dss-63	214	10	of	of	ADP
dss-63	214	11	air	air	NOUN
dss-63	214	12	flow	flow	NOUN
dss-63	214	13	around	around	ADP
dss-63	214	14	projectile	projectile	NOUN
dss-63	214	15	(	(	PUNCT
dss-63	214	16	120	120	NUM
dss-63	214	17	mm	mm	NOUN
dss-63	214	18	,	,	PUNCT
dss-63	214	19	m829a2	m829a2	PROPN
dss-63	214	20	)	)	PUNCT
dss-63	214	21	,	,	PUNCT
dss-63	214	22	in	in	ADP
dss-63	214	23	parallel	parallel	NOUN
dss-63	214	24	with	with	ADP
dss-63	214	25	the	the	DET
dss-63	214	26	results	result	NOUN
dss-63	214	27	of	of	ADP
dss-63	214	28	prodas	prodas	PROPN
dss-63	214	29	(	(	PUNCT
dss-63	214	30	function	function	NOUN
dss-63	214	31	cx	cx	PROPN
dss-63	214	32	=	=	SYM
dss-63	214	33	f	f	PROPN
dss-63	214	34	(	(	PUNCT
dss-63	214	35	m	m	NOUN
dss-63	214	36	)	)	PUNCT
dss-63	214	37	)	)	PUNCT
dss-63	214	38	are	be	AUX
dss-63	214	39	shown	show	VERB
dss-63	214	40	in	in	ADP
dss-63	214	41	figure	figure	NOUN
dss-63	214	42	18	18	NUM
dss-63	214	43	.	.	PUNCT
dss-63	215	1	the	the	DET
dss-63	215	2	largest	large	ADJ
dss-63	215	3	deviations	deviation	NOUN
dss-63	215	4	are	be	AUX
dss-63	215	5	recorded	record	VERB
dss-63	215	6	for	for	ADP
dss-63	215	7	m	m	PROPN
dss-63	215	8	=	=	SYM
dss-63	215	9	3	3	NUM
dss-63	215	10	,	,	PUNCT
dss-63	215	11	where	where	SCONJ
dss-63	215	12	the	the	DET
dss-63	215	13	difference	difference	NOUN
dss-63	215	14	is	be	AUX
dss-63	215	15	about	about	ADV
dss-63	215	16	8.4	8.4	NUM
dss-63	215	17	%	%	NOUN
dss-63	215	18	.	.	PUNCT
dss-63	216	1	as	as	SCONJ
dss-63	216	2	the	the	DET
dss-63	216	3	mach	mach	NOUN
dss-63	216	4	number	number	NOUN
dss-63	216	5	increases	increase	VERB
dss-63	216	6	,	,	PUNCT
dss-63	216	7	the	the	DET
dss-63	216	8	difference	difference	NOUN
dss-63	216	9	decreases	decrease	VERB
dss-63	216	10	by	by	ADP
dss-63	216	11	almost	almost	ADV
dss-63	216	12	1	1	NUM
dss-63	216	13	%	%	NOUN
dss-63	216	14	.	.	PUNCT
dss-63	217	1	the	the	DET
dss-63	217	2	percentage	percentage	NOUN
dss-63	217	3	difference	difference	NOUN
dss-63	217	4	of	of	ADP
dss-63	217	5	the	the	DET
dss-63	217	6	coefficients	coefficient	NOUN
dss-63	217	7	obtained	obtain	VERB
dss-63	217	8	by	by	ADP
dss-63	217	9	the	the	DET
dss-63	217	10	numerical	numerical	PROPN
dss-63	217	11	simulation	simulation	PROPN
dss-63	217	12	in	in	ADP
dss-63	217	13	relation	relation	NOUN
dss-63	217	14	to	to	ADP
dss-63	217	15	the	the	DET
dss-63	217	16	coefficients	coefficient	NOUN
dss-63	217	17	obtained	obtain	VERB
dss-63	217	18	by	by	ADP
dss-63	217	19	applying	apply	VERB
dss-63	217	20	the	the	DET
dss-63	217	21	prodas	prodas	PROPN
dss-63	217	22	model	model	NOUN
dss-63	217	23	is	be	AUX
dss-63	217	24	given	give	VERB
dss-63	217	25	in	in	ADP
dss-63	217	26	figure	figure	NOUN
dss-63	217	27	19	19	NUM
dss-63	218	1	[	[	X
dss-63	218	2	9	9	NUM
dss-63	218	3	]	]	PUNCT
dss-63	218	4	.	.	PUNCT
dss-63	219	1	based	base	VERB
dss-63	219	2	on	on	ADP
dss-63	219	3	the	the	DET
dss-63	219	4	obtained	obtain	VERB
dss-63	219	5	results	result	NOUN
dss-63	219	6	of	of	ADP
dss-63	219	7	numerical	numerical	ADJ
dss-63	219	8	simulations	simulation	NOUN
dss-63	219	9	,	,	PUNCT
dss-63	219	10	the	the	DET
dss-63	219	11	analysis	analysis	NOUN
dss-63	219	12	of	of	ADP
dss-63	219	13	the	the	DET
dss-63	219	14	pressure	pressure	NOUN
dss-63	219	15	and	and	CCONJ
dss-63	219	16	velocity	velocity	NOUN
dss-63	219	17	field	field	NOUN
dss-63	219	18	around	around	ADP
dss-63	219	19	the	the	DET
dss-63	219	20	projectile	projectile	NOUN
dss-63	219	21	120	120	NUM
dss-63	219	22	mm	mm	NOUN
dss-63	219	23	,	,	PUNCT
dss-63	219	24	m829a2	m829a2	PROPN
dss-63	219	25	was	be	AUX
dss-63	219	26	done	do	VERB
dss-63	219	27	.	.	PUNCT
dss-63	220	1	the	the	DET
dss-63	220	2	resistance	resistance	NOUN
dss-63	220	3	force	force	NOUN
dss-63	220	4	of	of	ADP
dss-63	220	5	a	a	DET
dss-63	220	6	fluid	fluid	NOUN
dss-63	220	7	that	that	PRON
dss-63	220	8	opposes	oppose	VERB
dss-63	220	9	the	the	DET
dss-63	220	10	motion	motion	NOUN
dss-63	220	11	of	of	ADP
dss-63	220	12	a	a	DET
dss-63	220	13	body	body	NOUN
dss-63	220	14	in	in	ADP
dss-63	220	15	it	it	PRON
dss-63	220	16	arises	arise	VERB
dss-63	220	17	as	as	ADP
dss-63	220	18	a	a	DET
dss-63	220	19	result	result	NOUN
dss-63	220	20	of	of	ADP
dss-63	220	21	the	the	DET
dss-63	220	22	action	action	NOUN
dss-63	220	23	of	of	ADP
dss-63	220	24	a	a	DET
dss-63	220	25	normal	normal	ADJ
dss-63	220	26	force	force	NOUN
dss-63	220	27	and	and	CCONJ
dss-63	220	28	a	a	DET
dss-63	220	29	tangential	tangential	ADJ
dss-63	220	30	force	force	NOUN
dss-63	220	31	on	on	ADP
dss-63	220	32	the	the	DET
dss-63	220	33	surface	surface	NOUN
dss-63	220	34	of	of	ADP
dss-63	220	35	a	a	DET
dss-63	220	36	body	body	NOUN
dss-63	220	37	moving	move	VERB
dss-63	220	38	through	through	ADP
dss-63	220	39	the	the	DET
dss-63	220	40	atmosphere	atmosphere	NOUN
dss-63	220	41	.	.	PUNCT
dss-63	221	1	the	the	DET
dss-63	221	2	source	source	NOUN
dss-63	221	3	of	of	ADP
dss-63	221	4	fluid	fluid	ADJ
dss-63	221	5	resistance	resistance	NOUN
dss-63	221	6	to	to	ADP
dss-63	221	7	body	body	NOUN
dss-63	221	8	motion	motion	NOUN
dss-63	221	9	are	be	AUX
dss-63	221	10	practically	practically	ADV
dss-63	221	11	three	three	NUM
dss-63	221	12	natural	natural	ADJ
dss-63	221	13	phenomena	phenomenon	NOUN
dss-63	221	14	:	:	PUNCT
dss-63	221	15	fluid	fluid	ADJ
dss-63	221	16	viscosity	viscosity	NOUN
dss-63	221	17	,	,	PUNCT
dss-63	221	18	shock	shock	NOUN
dss-63	221	19	waves	wave	NOUN
dss-63	221	20	(	(	PUNCT
dss-63	221	21	at	at	ADP
dss-63	221	22	velocities	velocity	NOUN
dss-63	221	23	m	m	VERB
dss-63	221	24	≥	≥	NOUN
dss-63	221	25	1	1	NUM
dss-63	221	26	)	)	PUNCT
dss-63	221	27	,	,	PUNCT
dss-63	221	28	and	and	CCONJ
dss-63	221	29	turbulence	turbulence	NOUN
dss-63	221	30	flow	flow	VERB
dss-63	221	31	behind	behind	ADP
dss-63	221	32	the	the	DET
dss-63	221	33	body	body	NOUN
dss-63	221	34	[	[	X
dss-63	221	35	9	9	NUM
dss-63	221	36	]	]	PUNCT
dss-63	221	37	.	.	PUNCT
dss-63	222	1	figure	figure	NOUN
dss-63	222	2	18	18	NUM
dss-63	222	3	.	.	PUNCT
dss-63	223	1	coefficients	coefficient	NOUN
dss-63	223	2	of	of	ADP
dss-63	223	3	axial	axial	ADJ
dss-63	223	4	force	force	NOUN
dss-63	223	5	of	of	ADP
dss-63	223	6	the	the	DET
dss-63	223	7	projectile	projectile	NOUN
dss-63	223	8	(	(	PUNCT
dss-63	223	9	projectile	projectile	NOUN
dss-63	223	10	120	120	NUM
dss-63	223	11	mm	mm	NOUN
dss-63	223	12	,	,	PUNCT
dss-63	223	13	m829a2	m829a2	NOUN
dss-63	223	14	)	)	PUNCT
dss-63	224	1	[	[	X
dss-63	224	2	9	9	NUM
dss-63	224	3	]	]	PUNCT
dss-63	224	4	figure	figure	NOUN
dss-63	224	5	19	19	NUM
dss-63	224	6	.	.	PUNCT
dss-63	225	1	relative	relative	ADJ
dss-63	225	2	differences	difference	NOUN
dss-63	225	3	(	(	PUNCT
dss-63	225	4	cfd	cfd	NOUN
dss-63	225	5	vs	vs	ADP
dss-63	225	6	prodas	prodas	PROPN
dss-63	225	7	)	)	PUNCT
dss-63	225	8	projectile	projectile	NOUN
dss-63	225	9	120	120	NUM
dss-63	225	10	mm	mm	NOUN
dss-63	225	11	,	,	PUNCT
dss-63	225	12	m829a2	m829a2	PROPN
dss-63	226	1	[	[	X
dss-63	226	2	9	9	NUM
dss-63	226	3	]	]	PUNCT
dss-63	226	4	the	the	DET
dss-63	226	5	pressure	pressure	NOUN
dss-63	226	6	and	and	CCONJ
dss-63	226	7	velocity	velocity	NOUN
dss-63	226	8	fields	field	NOUN
dss-63	226	9	,	,	PUNCT
dss-63	226	10	shown	show	VERB
dss-63	226	11	in	in	ADP
dss-63	226	12	figures	figure	NOUN
dss-63	226	13	20	20	NUM
dss-63	226	14	and	and	CCONJ
dss-63	226	15	21	21	NUM
dss-63	226	16	,	,	PUNCT
dss-63	226	17	are	be	AUX
dss-63	226	18	complex	complex	ADJ
dss-63	226	19	.	.	PUNCT
dss-63	227	1	from	from	ADP
dss-63	227	2	figure	figure	NOUN
dss-63	227	3	20	20	NUM
dss-63	227	4	,	,	PUNCT
dss-63	227	5	it	it	PRON
dss-63	227	6	can	can	AUX
dss-63	227	7	be	be	AUX
dss-63	227	8	seen	see	VERB
dss-63	227	9	that	that	SCONJ
dss-63	227	10	the	the	DET
dss-63	227	11	free	free	ADJ
dss-63	227	12	stream	stream	NOUN
dss-63	227	13	pressure	pressure	NOUN
dss-63	227	14	is	be	AUX
dss-63	227	15	not	not	PART
dss-63	227	16	the	the	DET
dss-63	227	17	same	same	ADJ
dss-63	227	18	for	for	ADP
dss-63	227	19	different	different	ADJ
dss-63	227	20	mach	mach	NOUN
dss-63	227	21	numbers	number	NOUN
dss-63	227	22	.	.	PUNCT
dss-63	228	1	as	as	SCONJ
dss-63	228	2	expected	expect	VERB
dss-63	228	3	for	for	ADP
dss-63	228	4	the	the	DET
dss-63	228	5	supersonic	supersonic	ADJ
dss-63	228	6	flow	flow	NOUN
dss-63	228	7	,	,	PUNCT
dss-63	228	8	oblique	oblique	ADJ
dss-63	228	9	shock	shock	NOUN
dss-63	228	10	waves	wave	NOUN
dss-63	228	11	appear	appear	VERB
dss-63	228	12	at	at	ADP
dss-63	228	13	the	the	DET
dss-63	228	14	top	top	NOUN
dss-63	228	15	of	of	ADP
dss-63	228	16	the	the	DET
dss-63	228	17	projectile	projectile	NOUN
dss-63	228	18	,	,	PUNCT
dss-63	228	19	while	while	SCONJ
dss-63	228	20	a	a	DET
dss-63	228	21	characteristic	characteristic	ADJ
dss-63	228	22	underpressure	underpressure	NOUN
dss-63	228	23	zone	zone	NOUN
dss-63	228	24	appears	appear	VERB
dss-63	228	25	behind	behind	ADP
dss-63	228	26	the	the	DET
dss-63	228	27	projectile	projectile	NOUN
dss-63	228	28	.	.	PUNCT
dss-63	229	1	during	during	ADP
dss-63	229	2	supersonic	supersonic	ADJ
dss-63	229	3	flow	flow	NOUN
dss-63	229	4	,	,	PUNCT
dss-63	229	5	underpressure	underpressure	NOUN
dss-63	229	6	is	be	AUX
dss-63	229	7	created	create	VERB
dss-63	229	8	behind	behind	ADP
dss-63	229	9	the	the	DET
dss-63	229	10	rear	rear	ADJ
dss-63	229	11	part	part	NOUN
dss-63	229	12	of	of	ADP
dss-63	229	13	the	the	DET
dss-63	229	14	projectile	projectile	NOUN
dss-63	229	15	.	.	PUNCT
dss-63	230	1	this	this	DET
dss-63	230	2	underpressure	underpressure	NOUN
dss-63	230	3	causes	cause	VERB
dss-63	230	4	the	the	DET
dss-63	230	5	streams	stream	NOUN
dss-63	230	6	to	to	PART
dss-63	230	7	bend	bend	VERB
dss-63	230	8	towards	towards	ADP
dss-63	230	9	the	the	DET
dss-63	230	10	projectile	projectile	NOUN
dss-63	230	11	axis	axis	NOUN
dss-63	230	12	.	.	PUNCT
dss-63	231	1	near	near	ADP
dss-63	231	2	the	the	DET
dss-63	231	3	axis	axis	NOUN
dss-63	231	4	,	,	PUNCT
dss-63	231	5	the	the	DET
dss-63	231	6	streams	stream	NOUN
dss-63	231	7	must	must	AUX
dss-63	231	8	bend	bend	VERB
dss-63	231	9	again	again	ADV
dss-63	231	10	.	.	PUNCT
dss-63	232	1	in	in	ADP
dss-63	232	2	supersonic	supersonic	ADJ
dss-63	232	3	flow	flow	NOUN
dss-63	232	4	,	,	PUNCT
dss-63	232	5	the	the	DET
dss-63	232	6	bent	bent	ADJ
dss-63	232	7	extension	extension	NOUN
dss-63	232	8	of	of	ADP
dss-63	232	9	the	the	DET
dss-63	232	10	boundary	boundary	ADJ
dss-63	232	11	layer	layer	NOUN
dss-63	232	12	draws	draw	VERB
dss-63	232	13	air	air	NOUN
dss-63	232	14	from	from	ADP
dss-63	232	15	the	the	DET
dss-63	232	16	rear	rear	NOUN
dss-63	232	17	of	of	ADP
dss-63	232	18	the	the	DET
dss-63	232	19	projectile	projectile	NOUN
dss-63	232	20	so	so	SCONJ
dss-63	232	21	that	that	SCONJ
dss-63	232	22	a	a	DET
dss-63	232	23	circular	circular	ADJ
dss-63	232	24	movement	movement	NOUN
dss-63	232	25	of	of	ADP
dss-63	232	26	air	air	NOUN
dss-63	232	27	is	be	AUX
dss-63	232	28	created	create	VERB
dss-63	232	29	.	.	PUNCT
dss-63	233	1	generally	generally	ADV
dss-63	233	2	speaking	speak	VERB
dss-63	233	3	,	,	PUNCT
dss-63	233	4	the	the	DET
dss-63	233	5	supersonic	supersonic	ADJ
dss-63	233	6	flow	flow	NOUN
dss-63	233	7	regime	regime	NOUN
dss-63	233	8	of	of	ADP
dss-63	233	9	any	any	DET
dss-63	233	10	body	body	NOUN
dss-63	233	11	is	be	AUX
dss-63	233	12	characterized	characterize	VERB
dss-63	233	13	by	by	ADP
dss-63	233	14	pronounced	pronounce	VERB
dss-63	233	15	shock	shock	NOUN
dss-63	233	16	waves	wave	NOUN
dss-63	233	17	,	,	PUNCT
dss-63	233	18	extremely	extremely	ADV
dss-63	233	19	narrow	narrow	ADJ
dss-63	233	20	areas	area	NOUN
dss-63	233	21	of	of	ADP
dss-63	233	22	fluid	fluid	NOUN
dss-63	233	23	in	in	ADP
dss-63	233	24	which	which	PRON
dss-63	233	25	the	the	DET
dss-63	233	26	flow	flow	NOUN
dss-63	233	27	properties	property	NOUN
dss-63	233	28	change	change	VERB
dss-63	233	29	discontinuously	discontinuously	ADV
dss-63	233	30	(	(	PUNCT
dss-63	233	31	extremely	extremely	ADV
dss-63	233	32	)	)	PUNCT
dss-63	233	33	in	in	ADP
dss-63	233	34	a	a	DET
dss-63	233	35	very	very	ADV
dss-63	233	36	short	short	ADJ
dss-63	233	37	time	time	NOUN
dss-63	233	38	interval	interval	NOUN
dss-63	233	39	,	,	PUNCT
dss-63	233	40	with	with	ADP
dss-63	233	41	pressure	pressure	NOUN
dss-63	233	42	gradients	gradient	NOUN
dss-63	233	43	being	be	AUX
dss-63	233	44	extremely	extremely	ADV
dss-63	233	45	large	large	ADJ
dss-63	233	46	.	.	PUNCT
dss-63	234	1	in	in	ADP
dss-63	234	2	front	front	NOUN
dss-63	234	3	of	of	ADP
dss-63	234	4	the	the	DET
dss-63	234	5	shock	shock	NOUN
dss-63	234	6	wave	wave	NOUN
dss-63	234	7	,	,	PUNCT
dss-63	234	8	there	there	PRON
dss-63	234	9	is	be	VERB
dss-63	234	10	a	a	DET
dss-63	234	11	zone	zone	NOUN
dss-63	234	12	of	of	ADP
dss-63	234	13	undisturbed	undisturbed	ADJ
dss-63	234	14	flow	flow	NOUN
dss-63	234	15	,	,	PUNCT
dss-63	234	16	while	while	SCONJ
dss-63	234	17	behind	behind	ADP
dss-63	234	18	it	it	PRON
dss-63	234	19	there	there	PRON
dss-63	234	20	is	be	VERB
dss-63	234	21	a	a	DET
dss-63	234	22	zone	zone	NOUN
dss-63	234	23	in	in	ADP
dss-63	234	24	which	which	PRON
dss-63	234	25	0	0	NUM
dss-63	234	26	0.2	0.2	NUM
dss-63	234	27	0.4	0.4	NUM
dss-63	234	28	0.6	0.6	NUM
dss-63	234	29	0.8	0.8	NUM
dss-63	234	30	1	1	NUM
dss-63	234	31	1.2	1.2	NUM
dss-63	234	32	3	3	NUM
dss-63	234	33	3.5	3.5	NUM
dss-63	234	34	4	4	NUM
dss-63	234	35	4.5	4.5	NUM
dss-63	234	36	5	5	NUM
dss-63	234	37	c	c	NOUN
dss-63	234	38	x	x	SYM
dss-63	234	39	mach	mach	PROPN
dss-63	234	40	prodas	prodas	PROPN
dss-63	234	41	stanag	stanag	VERB
dss-63	234	42	4655	4655	NUM
dss-63	234	43	0	0	NUM
dss-63	234	44	0.2	0.2	NUM
dss-63	234	45	0.4	0.4	NUM
dss-63	234	46	0.6	0.6	NUM
dss-63	234	47	0.8	0.8	NUM
dss-63	234	48	1	1	NUM
dss-63	234	49	1.2	1.2	NUM
dss-63	234	50	1.4	1.4	NUM
dss-63	234	51	3	3	NUM
dss-63	234	52	3.5	3.5	NUM
dss-63	234	53	4	4	NUM
dss-63	234	54	4.5	4.5	NUM
dss-63	234	55	5	5	NUM
dss-63	234	56	c	c	NOUN
dss-63	234	57	x	x	SYM
dss-63	234	58	mach	mach	PROPN
dss-63	234	59	prodas	prodas	PROPN
dss-63	234	60	cfd	cfd	NOUN
dss-63	234	61	figure	figure	NOUN
dss-63	234	62	17	17	NUM
dss-63	234	63	.	.	PUNCT
dss-63	235	1	relative	relative	ADJ
dss-63	235	2	differences	difference	NOUN
dss-63	235	3	(	(	PUNCT
dss-63	235	4	stanag	stanag	VERB
dss-63	235	5	vs	vs	ADP
dss-63	235	6	prodas	prodas	PROPN
dss-63	235	7	)	)	PUNCT
dss-63	235	8	projectile	projectile	NOUN
dss-63	235	9	120	120	NUM
dss-63	235	10	mm	mm	NOUN
dss-63	235	11	,	,	PUNCT
dss-63	235	12	m829a2	m829a2	PROPN
dss-63	236	1	[	[	X
dss-63	236	2	9	9	NUM
dss-63	236	3	]	]	PUNCT
dss-63	236	4	dss	dss	NOUN
dss-63	236	5	vol	vol	NOUN
dss-63	236	6	.	.	PROPN
dss-63	237	1	1	1	NUM
dss-63	237	2	,	,	PUNCT
dss-63	237	3	no	no	INTJ
dss-63	237	4	.	.	NOUN
dss-63	237	5	1	1	NUM
dss-63	237	6	,	,	PUNCT
dss-63	237	7	december	december	PROPN
dss-63	237	8	2020	2020	NUM
dss-63	237	9	,	,	PUNCT
dss-63	237	10	pp.1	pp.1	NOUN
dss-63	237	11	-	-	PUNCT
dss-63	237	12	15	15	NUM
dss-63	237	13	13	13	NUM
dss-63	237	14	there	there	PRON
dss-63	237	15	are	be	VERB
dss-63	237	16	differences	difference	NOUN
dss-63	237	17	in	in	ADP
dss-63	237	18	the	the	DET
dss-63	237	19	values	value	NOUN
dss-63	237	20	of	of	ADP
dss-63	237	21	pressure	pressure	NOUN
dss-63	237	22	,	,	PUNCT
dss-63	237	23	speed	speed	NOUN
dss-63	237	24	,	,	PUNCT
dss-63	237	25	temperature	temperature	NOUN
dss-63	237	26	and	and	CCONJ
dss-63	237	27	density	density	NOUN
dss-63	237	28	.	.	PUNCT
dss-63	238	1	figure	figure	NOUN
dss-63	238	2	21	21	NUM
dss-63	238	3	shows	show	VERB
dss-63	238	4	the	the	DET
dss-63	238	5	boundary	boundary	ADJ
dss-63	238	6	layer	layer	NOUN
dss-63	238	7	that	that	PRON
dss-63	238	8	forms	form	VERB
dss-63	238	9	around	around	ADP
dss-63	238	10	the	the	DET
dss-63	238	11	projectile	projectile	NOUN
dss-63	238	12	in	in	ADP
dss-63	238	13	flight	flight	NOUN
dss-63	238	14	.	.	PUNCT
dss-63	239	1	it	it	PRON
dss-63	239	2	can	can	AUX
dss-63	239	3	also	also	ADV
dss-63	239	4	be	be	AUX
dss-63	239	5	seen	see	VERB
dss-63	239	6	that	that	SCONJ
dss-63	239	7	the	the	DET
dss-63	239	8	angle	angle	NOUN
dss-63	239	9	of	of	ADP
dss-63	239	10	the	the	DET
dss-63	239	11	oblique	oblique	ADJ
dss-63	239	12	shock	shock	NOUN
dss-63	239	13	wave	wave	NOUN
dss-63	239	14	decreases	decrease	VERB
dss-63	239	15	with	with	ADP
dss-63	239	16	increasing	increase	VERB
dss-63	239	17	velocity	velocity	NOUN
dss-63	239	18	at	at	ADP
dss-63	239	19	which	which	PRON
dss-63	239	20	the	the	DET
dss-63	239	21	flow	flow	NOUN
dss-63	239	22	is	be	AUX
dss-63	239	23	simulated	simulate	VERB
dss-63	239	24	[	[	PUNCT
dss-63	239	25	9	9	NUM
dss-63	239	26	]	]	PUNCT
dss-63	239	27	.	.	PUNCT
dss-63	240	1	figure	figure	NOUN
dss-63	240	2	30	30	NUM
dss-63	240	3	.	.	PUNCT
dss-63	241	1	pressure	pressure	NOUN
dss-63	241	2	field	field	NOUN
dss-63	241	3	around	around	ADP
dss-63	241	4	the	the	DET
dss-63	241	5	projectile	projectile	NOUN
dss-63	241	6	for	for	ADP
dss-63	241	7	different	different	ADJ
dss-63	241	8	mach	mach	NOUN
dss-63	241	9	numbers	number	NOUN
dss-63	241	10	[	[	X
dss-63	241	11	9	9	NUM
dss-63	241	12	]	]	PUNCT
dss-63	241	13	dss	dss	NOUN
dss-63	241	14	vol	vol	NOUN
dss-63	241	15	.	.	PROPN
dss-63	242	1	1	1	NUM
dss-63	242	2	,	,	PUNCT
dss-63	242	3	no	no	INTJ
dss-63	242	4	.	.	NOUN
dss-63	242	5	1	1	NUM
dss-63	242	6	,	,	PUNCT
dss-63	242	7	december	december	PROPN
dss-63	242	8	2020	2020	NUM
dss-63	242	9	,	,	PUNCT
dss-63	242	10	pp.1	pp.1	NOUN
dss-63	242	11	-	-	PUNCT
dss-63	242	12	15	15	NUM
dss-63	242	13	14	14	NUM
dss-63	242	14	figure	figure	NOUN
dss-63	242	15	21	21	NUM
dss-63	242	16	.	.	PUNCT
dss-63	243	1	field	field	NOUN
dss-63	243	2	of	of	ADP
dss-63	243	3	velocities	velocity	NOUN
dss-63	243	4	around	around	ADP
dss-63	243	5	the	the	DET
dss-63	243	6	projectile	projectile	NOUN
dss-63	243	7	120	120	NUM
dss-63	243	8	mm	mm	NOUN
dss-63	243	9	,	,	PUNCT
dss-63	243	10	m829a2	m829a2	NOUN
dss-63	243	11	for	for	ADP
dss-63	243	12	different	different	ADJ
dss-63	243	13	mach	mach	NOUN
dss-63	243	14	numbers	number	NOUN
dss-63	243	15	[	[	X
dss-63	243	16	9	9	NUM
dss-63	243	17	]	]	PUNCT
dss-63	243	18	dss	dss	NOUN
dss-63	243	19	vol	vol	NOUN
dss-63	243	20	.	.	PROPN
dss-63	244	1	1	1	NUM
dss-63	244	2	,	,	PUNCT
dss-63	244	3	no	no	INTJ
dss-63	244	4	.	.	NOUN
dss-63	244	5	1	1	NUM
dss-63	244	6	,	,	PUNCT
dss-63	244	7	december	december	PROPN
dss-63	244	8	2020	2020	NUM
dss-63	244	9	,	,	PUNCT
dss-63	244	10	pp.1	pp.1	NOUN
dss-63	244	11	-	-	PUNCT
dss-63	244	12	15	15	NUM
dss-63	244	13	15	15	NUM
dss-63	244	14	4	4	NUM
dss-63	244	15	.	.	PUNCT
dss-63	244	16	conclusion	conclusion	NOUN
dss-63	244	17	based	base	VERB
dss-63	244	18	on	on	ADP
dss-63	244	19	theoretical	theoretical	ADJ
dss-63	244	20	considerations	consideration	NOUN
dss-63	244	21	and	and	CCONJ
dss-63	244	22	analysis	analysis	NOUN
dss-63	244	23	of	of	ADP
dss-63	244	24	available	available	ADJ
dss-63	244	25	models	model	NOUN
dss-63	244	26	(	(	PUNCT
dss-63	244	27	stanag	stanag	VERB
dss-63	244	28	4655	4655	NUM
dss-63	244	29	and	and	CCONJ
dss-63	244	30	cfd	cfd	NOUN
dss-63	244	31	)	)	PUNCT
dss-63	244	32	for	for	ADP
dss-63	244	33	predicting	predict	VERB
dss-63	244	34	the	the	DET
dss-63	244	35	aerodynamic	aerodynamic	ADJ
dss-63	244	36	coefficient	coefficient	NOUN
dss-63	244	37	of	of	ADP
dss-63	244	38	axial	axial	ADJ
dss-63	244	39	force	force	NOUN
dss-63	244	40	for	for	ADP
dss-63	244	41	wing	wing	NOUN
dss-63	244	42	-	-	PUNCT
dss-63	244	43	stabilized	stabilize	VERB
dss-63	244	44	projectiles	projectile	NOUN
dss-63	244	45	,	,	PUNCT
dss-63	244	46	the	the	DET
dss-63	244	47	prediction	prediction	NOUN
dss-63	244	48	of	of	ADP
dss-63	244	49	the	the	DET
dss-63	244	50	axial	axial	ADJ
dss-63	244	51	force	force	NOUN
dss-63	244	52	coefficient	coefficient	NOUN
dss-63	244	53	for	for	ADP
dss-63	244	54	apfsds	apfsds	NOUN
dss-63	244	55	projectile	projectile	NOUN
dss-63	244	56	120	120	NUM
dss-63	244	57	mm	mm	NOUN
dss-63	244	58	,	,	PUNCT
dss-63	244	59	m829a2	m829a2	PROPN
dss-63	244	60	was	be	AUX
dss-63	244	61	performed	perform	VERB
dss-63	244	62	.	.	PUNCT
dss-63	245	1	the	the	DET
dss-63	245	2	data	datum	NOUN
dss-63	245	3	obtained	obtain	VERB
dss-63	245	4	using	use	VERB
dss-63	245	5	the	the	DET
dss-63	245	6	engineering	engineering	NOUN
dss-63	245	7	model	model	NOUN
dss-63	245	8	(	(	PUNCT
dss-63	245	9	from	from	ADP
dss-63	245	10	the	the	DET
dss-63	245	11	stanag	stanag	ADJ
dss-63	245	12	4655	4655	NUM
dss-63	245	13	standard	standard	NOUN
dss-63	245	14	)	)	PUNCT
dss-63	245	15	,	,	PUNCT
dss-63	245	16	and	and	CCONJ
dss-63	245	17	the	the	DET
dss-63	245	18	data	datum	NOUN
dss-63	245	19	obtained	obtain	VERB
dss-63	245	20	by	by	ADP
dss-63	245	21	numerical	numerical	ADJ
dss-63	245	22	simulation	simulation	NOUN
dss-63	245	23	of	of	ADP
dss-63	245	24	projectile	projectile	NOUN
dss-63	245	25	flow	flow	NOUN
dss-63	245	26	with	with	ADP
dss-63	245	27	the	the	DET
dss-63	245	28	available	available	ADJ
dss-63	245	29	data	datum	NOUN
dss-63	245	30	from	from	ADP
dss-63	245	31	the	the	DET
dss-63	245	32	prodas	prodas	PROPN
dss-63	245	33	database	database	NOUN
dss-63	245	34	were	be	AUX
dss-63	245	35	compared	compare	VERB
dss-63	245	36	.	.	PUNCT
dss-63	246	1	the	the	DET
dss-63	246	2	following	following	NOUN
dss-63	246	3	was	be	AUX
dss-63	246	4	stated	state	VERB
dss-63	246	5	:	:	PUNCT
dss-63	246	6			PRON
dss-63	246	7	the	the	DET
dss-63	246	8	total	total	ADJ
dss-63	246	9	axial	axial	ADJ
dss-63	246	10	force	force	NOUN
dss-63	246	11	coefficients	coefficient	NOUN
dss-63	246	12	of	of	ADP
dss-63	246	13	the	the	DET
dss-63	246	14	apfsds	apfsds	NOUN
dss-63	246	15	projectile	projectile	NOUN
dss-63	246	16	(	(	PUNCT
dss-63	246	17	provided	provide	VERB
dss-63	246	18	with	with	ADP
dss-63	246	19	the	the	DET
dss-63	246	20	model	model	NOUN
dss-63	246	21	from	from	ADP
dss-63	246	22	the	the	DET
dss-63	246	23	stanag	stanag	ADJ
dss-63	246	24	4655	4655	PROPN
dss-63	246	25	standard	standard	NOUN
dss-63	246	26	)	)	PUNCT
dss-63	246	27	have	have	VERB
dss-63	246	28	a	a	DET
dss-63	246	29	satisfactory	satisfactory	ADJ
dss-63	246	30	agreement	agreement	NOUN
dss-63	246	31	with	with	ADP
dss-63	246	32	the	the	DET
dss-63	246	33	total	total	ADJ
dss-63	246	34	coefficient	coefficient	NOUN
dss-63	246	35	from	from	ADP
dss-63	246	36	the	the	DET
dss-63	246	37	prodas	prodas	PROPN
dss-63	246	38	model	model	NOUN
dss-63	246	39	.	.	PUNCT
dss-63	247	1	the	the	DET
dss-63	247	2	largest	large	ADJ
dss-63	247	3	difference	difference	NOUN
dss-63	247	4	between	between	ADP
dss-63	247	5	the	the	DET
dss-63	247	6	values	value	NOUN
dss-63	247	7	is	be	AUX
dss-63	247	8	about	about	ADV
dss-63	247	9	16.3	16.3	NUM
dss-63	247	10	%	%	NOUN
dss-63	247	11	.	.	PUNCT
dss-63	248	1	as	as	SCONJ
dss-63	248	2	the	the	DET
dss-63	248	3	mach	mach	NOUN
dss-63	248	4	number	number	NOUN
dss-63	248	5	increases	increase	VERB
dss-63	248	6	,	,	PUNCT
dss-63	248	7	the	the	DET
dss-63	248	8	difference	difference	NOUN
dss-63	248	9	decreases	decrease	VERB
dss-63	248	10	.	.	PUNCT
dss-63	249	1			X
dss-63	249	2	the	the	DET
dss-63	249	3	advantage	advantage	NOUN
dss-63	249	4	of	of	ADP
dss-63	249	5	the	the	DET
dss-63	249	6	stanag	stanag	ADJ
dss-63	249	7	4655	4655	NUM
dss-63	249	8	model	model	NOUN
dss-63	249	9	is	be	AUX
dss-63	249	10	that	that	SCONJ
dss-63	249	11	it	it	PRON
dss-63	249	12	allows	allow	VERB
dss-63	249	13	the	the	DET
dss-63	249	14	calculation	calculation	NOUN
dss-63	249	15	of	of	ADP
dss-63	249	16	coefficients	coefficient	NOUN
dss-63	249	17	based	base	VERB
dss-63	249	18	on	on	ADP
dss-63	249	19	the	the	DET
dss-63	249	20	geometric	geometric	ADJ
dss-63	249	21	characteristics	characteristic	NOUN
dss-63	249	22	of	of	ADP
dss-63	249	23	the	the	DET
dss-63	249	24	projectile	projectile	NOUN
dss-63	249	25	without	without	ADP
dss-63	249	26	the	the	DET
dss-63	249	27	use	use	NOUN
dss-63	249	28	of	of	ADP
dss-63	249	29	computers	computer	NOUN
dss-63	249	30	.	.	PUNCT
dss-63	250	1			X
dss-63	251	1	the	the	DET
dss-63	251	2	cfd	cfd	NOUN
dss-63	251	3	model	model	NOUN
dss-63	251	4	gives	give	VERB
dss-63	251	5	very	very	ADV
dss-63	251	6	good	good	ADJ
dss-63	251	7	results	result	NOUN
dss-63	251	8	,	,	PUNCT
dss-63	251	9	the	the	DET
dss-63	251	10	values	value	NOUN
dss-63	251	11	of	of	ADP
dss-63	251	12	the	the	DET
dss-63	251	13	axial	axial	ADJ
dss-63	251	14	force	force	NOUN
dss-63	251	15	or	or	CCONJ
dss-63	251	16	the	the	DET
dss-63	251	17	axial	axial	ADJ
dss-63	251	18	force	force	NOUN
dss-63	251	19	coefficient	coefficient	NOUN
dss-63	251	20	.	.	PUNCT
dss-63	252	1	good	good	ADJ
dss-63	252	2	agreement	agreement	NOUN
dss-63	252	3	between	between	ADP
dss-63	252	4	the	the	DET
dss-63	252	5	results	result	NOUN
dss-63	252	6	of	of	ADP
dss-63	252	7	the	the	DET
dss-63	252	8	cfd	cfd	NOUN
dss-63	252	9	model	model	NOUN
dss-63	252	10	and	and	CCONJ
dss-63	252	11	prodas	prodas	PROPN
dss-63	252	12	indicates	indicate	VERB
dss-63	252	13	that	that	SCONJ
dss-63	252	14	the	the	DET
dss-63	252	15	initial	initial	ADJ
dss-63	252	16	and	and	CCONJ
dss-63	252	17	boundary	boundary	ADJ
dss-63	252	18	conditions	condition	NOUN
dss-63	252	19	are	be	AUX
dss-63	252	20	well	well	ADV
dss-63	252	21	set	set	VERB
dss-63	252	22	.	.	PUNCT
dss-63	253	1			PUNCT
dss-63	254	1	the	the	DET
dss-63	254	2	accuracy	accuracy	NOUN
dss-63	254	3	of	of	ADP
dss-63	254	4	the	the	DET
dss-63	254	5	cfd	cfd	NOUN
dss-63	254	6	model	model	NOUN
dss-63	254	7	depends	depend	VERB
dss-63	254	8	on	on	ADP
dss-63	254	9	the	the	DET
dss-63	254	10	mesh	mesh	NOUN
dss-63	254	11	,	,	PUNCT
dss-63	254	12	initial	initial	ADJ
dss-63	254	13	and	and	CCONJ
dss-63	254	14	boundary	boundary	ADJ
dss-63	254	15	conditions	condition	NOUN
dss-63	254	16	.	.	PUNCT
dss-63	255	1	the	the	DET
dss-63	255	2	accuracy	accuracy	NOUN
dss-63	255	3	of	of	ADP
dss-63	255	4	the	the	DET
dss-63	255	5	cfd	cfd	NOUN
dss-63	255	6	model	model	NOUN
dss-63	255	7	can	can	AUX
dss-63	255	8	be	be	AUX
dss-63	255	9	increased	increase	VERB
dss-63	255	10	by	by	ADP
dss-63	255	11	modifying	modify	VERB
dss-63	255	12	the	the	DET
dss-63	255	13	mesh	mesh	NOUN
dss-63	255	14	(	(	PUNCT
dss-63	255	15	i.e.	i.e.	X
dss-63	255	16	by	by	ADP
dss-63	255	17	increasing	increase	VERB
dss-63	255	18	the	the	DET
dss-63	255	19	number	number	NOUN
dss-63	255	20	of	of	ADP
dss-63	255	21	finite	finite	ADJ
dss-63	255	22	elements	element	NOUN
dss-63	255	23	)	)	PUNCT
dss-63	255	24	.	.	PUNCT
dss-63	256	1	declaration	declaration	NOUN
dss-63	256	2	of	of	ADP
dss-63	256	3	competing	compete	VERB
dss-63	256	4	interest	interest	NOUN
dss-63	256	5	the	the	DET
dss-63	256	6	authors	author	NOUN
dss-63	256	7	declare	declare	VERB
dss-63	256	8	that	that	SCONJ
dss-63	256	9	they	they	PRON
dss-63	256	10	have	have	VERB
dss-63	256	11	no	no	DET
dss-63	256	12	any	any	DET
dss-63	256	13	known	know	VERB
dss-63	256	14	financial	financial	ADJ
dss-63	256	15	or	or	CCONJ
dss-63	256	16	non	non	ADJ
dss-63	256	17	-	-	ADJ
dss-63	256	18	financial	financial	ADJ
dss-63	256	19	competing	compete	VERB
dss-63	256	20	interests	interest	NOUN
dss-63	256	21	in	in	ADP
dss-63	256	22	any	any	DET
dss-63	256	23	material	material	NOUN
dss-63	256	24	discussed	discuss	VERB
dss-63	256	25	in	in	ADP
dss-63	256	26	this	this	DET
dss-63	256	27	paper	paper	NOUN
dss-63	256	28	.	.	PUNCT
dss-63	257	1	funding	funding	NOUN
dss-63	257	2	information	information	NOUN
dss-63	257	3	no	no	DET
dss-63	257	4	funding	funding	NOUN
dss-63	257	5	was	be	AUX
dss-63	257	6	received	receive	VERB
dss-63	257	7	from	from	ADP
dss-63	257	8	any	any	DET
dss-63	257	9	financial	financial	ADJ
dss-63	257	10	organization	organization	NOUN
dss-63	257	11	to	to	PART
dss-63	257	12	conduct	conduct	VERB
dss-63	257	13	this	this	DET
dss-63	257	14	research	research	NOUN
dss-63	257	15	.	.	PUNCT
dss-63	258	1	references	reference	NOUN
dss-63	258	2	[	[	X
dss-63	258	3	1	1	NUM
dss-63	258	4	]	]	PUNCT
dss-63	258	5	a.	a.	NOUN
dss-63	258	6	ćatović	ćatović	PROPN
dss-63	258	7	:	:	PUNCT
dss-63	258	8	anti	anti	ADJ
dss-63	258	9	-	-	ADJ
dss-63	258	10	tank	tank	ADJ
dss-63	258	11	projectiles	projectile	NOUN
dss-63	258	12	,	,	PUNCT
dss-63	258	13	manual	manual	NOUN
dss-63	258	14	for	for	ADP
dss-63	258	15	students	student	NOUN
dss-63	258	16	,	,	PUNCT
dss-63	258	17	university	university	NOUN
dss-63	258	18	of	of	ADP
dss-63	258	19	sarajevo	sarajevo	PROPN
dss-63	258	20	,	,	PUNCT
dss-63	258	21	mechanical	mechanical	ADJ
dss-63	258	22	engineering	engineering	NOUN
dss-63	258	23	faculty	faculty	NOUN
dss-63	258	24	,	,	PUNCT
dss-63	258	25	defense	defense	NOUN
dss-63	258	26	technologies	technologies	PROPN
dss-63	258	27	department	department	PROPN
dss-63	258	28	,	,	PUNCT
dss-63	258	29	sarajevo	sarajevo	PROPN
dss-63	258	30	,	,	PUNCT
dss-63	258	31	2019	2019	NUM
dss-63	258	32	.	.	PUNCT
dss-63	259	1	[	[	X
dss-63	259	2	2	2	X
dss-63	259	3	]	]	PUNCT
dss-63	259	4	w.	w.	PROPN
dss-63	259	5	odermatt	odermatt	PROPN
dss-63	259	6	:	:	PUNCT
dss-63	259	7	http://longrods.ch/compo.php	http://longrods.ch/compo.php	NUM
dss-63	259	8	,	,	PUNCT
dss-63	259	9	october	october	PROPN
dss-63	259	10	2020	2020	NUM
dss-63	260	1	[	[	X
dss-63	260	2	3	3	NUM
dss-63	260	3	]	]	PUNCT
dss-63	260	4	z.	z.	PROPN
dss-63	260	5	huang	huang	PROPN
dss-63	260	6	,	,	PUNCT
dss-63	260	7	z.	z.	PROPN
dss-63	260	8	chen	chen	PROPN
dss-63	260	9	:	:	PUNCT
dss-63	260	10	numerical	numerical	PROPN
dss-63	260	11	investigation	investigation	NOUN
dss-63	260	12	of	of	ADP
dss-63	260	13	the	the	DET
dss-63	260	14	tree	tree	NOUN
dss-63	260	15	-	-	PUNCT
dss-63	260	16	dimensional	dimensional	ADJ
dss-63	260	17	dynamic	dynamic	ADJ
dss-63	260	18	process	process	NOUN
dss-63	260	19	of	of	ADP
dss-63	260	20	sabot	sabot	NOUN
dss-63	260	21	discard	discard	PROPN
dss-63	260	22	,	,	PUNCT
dss-63	260	23	journal	journal	NOUN
dss-63	260	24	of	of	ADP
dss-63	260	25	mechanical	mechanical	ADJ
dss-63	260	26	science	science	NOUN
dss-63	260	27	and	and	CCONJ
dss-63	260	28	technology	technology	NOUN
dss-63	260	29	,	,	PUNCT
dss-63	260	30	vol	vol	NOUN
dss-63	260	31	28	28	NUM
dss-63	260	32	,	,	PUNCT
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dss-63	260	34	7	7	NUM
dss-63	260	35	,	,	PUNCT
dss-63	260	36	2637	2637	NUM
dss-63	260	37	-	-	SYM
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dss-63	260	39	,	,	PUNCT
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dss-63	260	41	.	.	PUNCT
dss-63	261	1	[	[	X
dss-63	261	2	4	4	X
dss-63	261	3	]	]	PUNCT
dss-63	261	4	b.	b.	NOUN
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dss-63	261	6	:	:	PUNCT
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dss-63	261	8	-	-	ADJ
dss-63	261	9	tank	tank	ADJ
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dss-63	261	11	,	,	PUNCT
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dss-63	261	13	for	for	ADP
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dss-63	261	15	,	,	PUNCT
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dss-63	261	17	of	of	ADP
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dss-63	261	19	,	,	PUNCT
dss-63	261	20	mechanical	mechanical	ADJ
dss-63	261	21	engineering	engineering	NOUN
dss-63	261	22	faculty	faculty	NOUN
dss-63	261	23	,	,	PUNCT
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dss-63	261	25	technologies	technologies	PROPN
dss-63	261	26	department	department	PROPN
dss-63	261	27	,	,	PUNCT
dss-63	261	28	sarajevo	sarajevo	PROPN
dss-63	261	29	,	,	PUNCT
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dss-63	261	31	.	.	PUNCT
dss-63	262	1	[	[	X
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dss-63	262	3	]	]	PUNCT
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dss-63	262	5	s.	s.	PROPN
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dss-63	262	7	:	:	PUNCT
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dss-63	262	9	of	of	ADP
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dss-63	262	12	at	at	ADP
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dss-63	262	14	yaw	yaw	NOUN
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dss-63	262	16	for	for	ADP
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dss-63	262	20	,	,	PUNCT
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dss-63	262	23	,	,	PUNCT
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dss-63	262	25	of	of	ADP
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dss-63	262	31	,	,	PUNCT
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dss-63	262	34	.	.	PUNCT
dss-63	263	1	[	[	X
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dss-63	263	3	]	]	PUNCT
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dss-63	263	5	4655	4655	NUM
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dss-63	263	7	:	:	PUNCT
dss-63	263	8	an	an	DET
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dss-63	263	15	,	,	PUNCT
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dss-63	263	19	,	,	PUNCT
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dss-63	263	24	.	.	PUNCT
dss-63	264	1	[	[	X
dss-63	264	2	7	7	X
dss-63	264	3	]	]	PUNCT
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dss-63	264	5	s.	s.	PROPN
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dss-63	264	7	:	:	PUNCT
dss-63	264	8	aaerodynamic	aaerodynamic	ADJ
dss-63	264	9	,	,	PUNCT
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dss-63	264	13	ballistic	ballistic	ADJ
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dss-63	264	15	,	,	PUNCT
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dss-63	264	17	in	in	ADP
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dss-63	264	22	,	,	PUNCT
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dss-63	264	40	.	.	PUNCT
dss-63	265	1	[	[	X
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dss-63	265	4	a.	a.	NOUN
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dss-63	265	6	.	.	PUNCT
dss-63	265	7	:	:	PUNCT
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dss-63	266	17	and	and	CCONJ
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dss-63	266	20	,	,	PUNCT
dss-63	266	21	phd	phd	NOUN
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dss-63	266	23	,	,	PUNCT
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dss-63	266	25	of	of	ADP
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dss-63	266	27	,	,	PUNCT
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dss-63	266	31	,	,	PUNCT
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dss-63	266	35	,	,	PUNCT
dss-63	266	36	sarajevo	sarajevo	PROPN
dss-63	266	37	,	,	PUNCT
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dss-63	266	39	.	.	PUNCT
dss-63	267	1	[	[	X
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dss-63	267	3	]	]	PUNCT
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dss-63	267	5	,	,	PUNCT
dss-63	267	6	j.	j.	PROPN
dss-63	267	7	:	:	PUNCT
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dss-63	267	11	:	:	PUNCT
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dss-63	267	13	and	and	CCONJ
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dss-63	267	15	,	,	PUNCT
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dss-63	267	17	science	science	PROPN
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dss-63	267	19	,	,	PUNCT
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dss-63	267	21	,	,	PUNCT
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dss-63	267	24	,	,	PUNCT
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dss-63	267	26	.	.	PUNCT
dss-63	268	1	[	[	X
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dss-63	268	4	a.	a.	NOUN
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dss-63	268	6	:	:	PUNCT
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dss-63	268	10	of	of	ADP
dss-63	268	11	apfsds	apfsds	NOUN
dss-63	268	12	projectiles	projectile	NOUN
dss-63	268	13	,	,	PUNCT
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dss-63	268	15	thesis	thesis	NOUN
dss-63	268	16	,	,	PUNCT
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dss-63	268	18	of	of	ADP
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