id	sid	tid	token	lemma	pos
cet-13710	1	1	doi	doi	NOUN
cet-13710	1	2	:	:	PUNCT
cet-13710	1	3	10.3303	10.3303	NUM
cet-13710	1	4	/	/	SYM
cet-13710	1	5	cet23104005	cet23104005	NOUN
cet-13710	1	6	paper	paper	NOUN
cet-13710	1	7	received	receive	VERB
cet-13710	1	8	:	:	PUNCT
cet-13710	1	9	11	11	NUM
cet-13710	1	10	may	may	PROPN
cet-13710	1	11	2023	2023	NUM
cet-13710	1	12	;	;	PUNCT
cet-13710	1	13	revised	revise	VERB
cet-13710	1	14	:	:	PUNCT
cet-13710	1	15	27	27	NUM
cet-13710	1	16	june	june	PROPN
cet-13710	1	17	2023	2023	NUM
cet-13710	1	18	;	;	PUNCT
cet-13710	1	19	accepted	accept	VERB
cet-13710	1	20	:	:	PUNCT
cet-13710	1	21	12	12	NUM
cet-13710	1	22	september	september	PROPN
cet-13710	1	23	2023	2023	NUM
cet-13710	1	24	please	please	INTJ
cet-13710	1	25	cite	cite	VERB
cet-13710	1	26	this	this	DET
cet-13710	1	27	article	article	NOUN
cet-13710	1	28	as	as	ADP
cet-13710	1	29	:	:	PUNCT
cet-13710	1	30	mack	mack	PROPN
cet-13710	1	31	a.	a.	PROPN
cet-13710	1	32	,	,	PUNCT
cet-13710	1	33	boot	boot	PROPN
cet-13710	1	34	h.	h.	PROPN
cet-13710	1	35	,	,	PUNCT
cet-13710	1	36	2023	2023	NUM
cet-13710	1	37	,	,	PUNCT
cet-13710	1	38	improvement	improvement	NOUN
cet-13710	1	39	of	of	ADP
cet-13710	1	40	the	the	DET
cet-13710	1	41	effects	effect	NOUN
cet-13710	1	42	dispersion	dispersion	NOUN
cet-13710	1	43	model	model	NOUN
cet-13710	1	44	for	for	ADP
cet-13710	1	45	under	under	ADP
cet-13710	1	46	expanded	expand	VERB
cet-13710	1	47	turbulent	turbulent	ADJ
cet-13710	1	48	jets	jet	NOUN
cet-13710	1	49	,	,	PUNCT
cet-13710	1	50	chemical	chemical	ADJ
cet-13710	1	51	engineering	engineering	NOUN
cet-13710	1	52	transactions	transaction	NOUN
cet-13710	1	53	,	,	PUNCT
cet-13710	1	54	104	104	NUM
cet-13710	1	55	,	,	PUNCT
cet-13710	1	56	25	25	NUM
cet-13710	1	57	-	-	SYM
cet-13710	1	58	30	30	NUM
cet-13710	1	59	doi:10.3303	doi:10.3303	NOUN
cet-13710	1	60	/	/	SYM
cet-13710	1	61	cet23104005	cet23104005	NOUN
cet-13710	1	62	chemical	chemical	PROPN
cet-13710	1	63	engineering	engineering	NOUN
cet-13710	1	64	transactions	transaction	NOUN
cet-13710	1	65	vol	vol	NOUN
cet-13710	1	66	.	.	PROPN
cet-13710	1	67	104	104	NUM
cet-13710	1	68	,	,	PUNCT
cet-13710	1	69	2023	2023	NUM
cet-13710	1	70	a	a	DET
cet-13710	1	71	publication	publication	NOUN
cet-13710	1	72	of	of	ADP
cet-13710	1	73	the	the	DET
cet-13710	1	74	italian	italian	ADJ
cet-13710	1	75	association	association	NOUN
cet-13710	1	76	of	of	ADP
cet-13710	1	77	chemical	chemical	PROPN
cet-13710	1	78	engineering	engineering	NOUN
cet-13710	1	79	online	online	ADV
cet-13710	1	80	at	at	ADP
cet-13710	1	81	www.cetjournal.it	www.cetjournal.it	PROPN
cet-13710	1	82	guest	guest	NOUN
cet-13710	1	83	editors	editor	NOUN
cet-13710	1	84	:	:	PUNCT
cet-13710	1	85	sabrina	sabrina	PROPN
cet-13710	1	86	copelli	copelli	PROPN
cet-13710	1	87	,	,	PUNCT
cet-13710	1	88	ernesto	ernesto	PROPN
cet-13710	1	89	salzano	salzano	PROPN
cet-13710	1	90	copyright	copyright	NOUN
cet-13710	1	91	©	©	PROPN
cet-13710	1	92	2023	2023	NUM
cet-13710	1	93	,	,	PUNCT
cet-13710	1	94	aidic	aidic	ADJ
cet-13710	1	95	servizi	servizi	PROPN
cet-13710	1	96	s.r.l	s.r.l	NOUN
cet-13710	1	97	.	.	PUNCT
cet-13710	2	1	isbn	isbn	PROPN
cet-13710	2	2	979	979	NUM
cet-13710	2	3	-	-	SYM
cet-13710	2	4	12	12	NUM
cet-13710	2	5	-	-	PUNCT
cet-13710	2	6	81206	81206	NUM
cet-13710	2	7	-	-	PUNCT
cet-13710	2	8	06	06	NUM
cet-13710	2	9	-	-	SYM
cet-13710	2	10	9	9	NUM
cet-13710	2	11	;	;	PUNCT
cet-13710	2	12	issn	issn	PROPN
cet-13710	2	13	2283	2283	NUM
cet-13710	2	14	-	-	SYM
cet-13710	2	15	9216	9216	NUM
cet-13710	2	16	improvement	improvement	NOUN
cet-13710	2	17	of	of	ADP
cet-13710	2	18	the	the	DET
cet-13710	2	19	effects	effect	NOUN
cet-13710	2	20	dispersion	dispersion	NOUN
cet-13710	2	21	model	model	NOUN
cet-13710	2	22	for	for	ADP
cet-13710	2	23	under	under	ADP
cet-13710	2	24	expanded	expand	VERB
cet-13710	2	25	turbulent	turbulent	ADJ
cet-13710	2	26	jets	jet	NOUN
cet-13710	2	27	andreas	andreas	PROPN
cet-13710	2	28	mack	mack	PROPN
cet-13710	2	29	,	,	PUNCT
cet-13710	2	30	hans	hans	PROPN
cet-13710	2	31	boot	boot	PROPN
cet-13710	2	32	gexcon	gexcon	PROPN
cet-13710	2	33	netherlands	netherlands	PROPN
cet-13710	2	34	b.v	b.v	PROPN
cet-13710	2	35	.	.	PROPN
cet-13710	2	36	,	,	PUNCT
cet-13710	2	37	princenhofpark	princenhofpark	NOUN
cet-13710	2	38	18	18	NUM
cet-13710	2	39	,	,	PUNCT
cet-13710	2	40	3972	3972	NUM
cet-13710	2	41	ng	ng	PROPN
cet-13710	2	42	driebergen	driebergen	PROPN
cet-13710	2	43	-	-	PUNCT
cet-13710	2	44	rijsenburg	rijsenburg	PROPN
cet-13710	2	45	,	,	PUNCT
cet-13710	2	46	the	the	DET
cet-13710	2	47	netherlands	netherlands	PROPN
cet-13710	2	48	andreas.mack@gexcon.com	andreas.mack@gexcon.com	X
cet-13710	2	49	recently	recently	ADV
cet-13710	2	50	,	,	PUNCT
cet-13710	2	51	the	the	DET
cet-13710	2	52	dispersion	dispersion	NOUN
cet-13710	2	53	model	model	NOUN
cet-13710	2	54	in	in	ADP
cet-13710	2	55	effects	effect	NOUN
cet-13710	2	56	was	be	AUX
cet-13710	2	57	updated	update	VERB
cet-13710	2	58	and	and	CCONJ
cet-13710	2	59	extensively	extensively	ADV
cet-13710	2	60	validated	validate	VERB
cet-13710	2	61	for	for	ADP
cet-13710	2	62	light	light	ADJ
cet-13710	2	63	gas	gas	NOUN
cet-13710	2	64	situations	situation	NOUN
cet-13710	2	65	including	include	VERB
cet-13710	2	66	jet	jet	NOUN
cet-13710	2	67	releases	release	NOUN
cet-13710	2	68	and	and	CCONJ
cet-13710	2	69	lifting	lift	VERB
cet-13710	2	70	plumes	plume	NOUN
cet-13710	2	71	.	.	PUNCT
cet-13710	3	1	in	in	ADP
cet-13710	3	2	the	the	DET
cet-13710	3	3	present	present	ADJ
cet-13710	3	4	paper	paper	NOUN
cet-13710	3	5	the	the	DET
cet-13710	3	6	modifications	modification	NOUN
cet-13710	3	7	for	for	ADP
cet-13710	3	8	gaseous	gaseous	ADJ
cet-13710	3	9	turbulent	turbulent	ADJ
cet-13710	3	10	jets	jet	NOUN
cet-13710	3	11	will	will	AUX
cet-13710	3	12	be	be	AUX
cet-13710	3	13	discussed	discuss	VERB
cet-13710	3	14	.	.	PUNCT
cet-13710	4	1	this	this	PRON
cet-13710	4	2	includes	include	VERB
cet-13710	4	3	the	the	DET
cet-13710	4	4	full	full	ADJ
cet-13710	4	5	release	release	NOUN
cet-13710	4	6	velocity	velocity	NOUN
cet-13710	4	7	range	range	NOUN
cet-13710	4	8	from	from	ADP
cet-13710	4	9	low	low	ADJ
cet-13710	4	10	subsonic	subsonic	ADJ
cet-13710	4	11	to	to	ADP
cet-13710	4	12	supersonic	supersonic	ADJ
cet-13710	4	13	flow	flow	NOUN
cet-13710	4	14	under	under	ADP
cet-13710	4	15	highly	highly	ADV
cet-13710	4	16	under	under	ADP
cet-13710	4	17	expanded	expand	VERB
cet-13710	4	18	conditions	condition	NOUN
cet-13710	4	19	which	which	PRON
cet-13710	4	20	are	be	AUX
cet-13710	4	21	highly	highly	ADV
cet-13710	4	22	relevant	relevant	ADJ
cet-13710	4	23	for	for	ADP
cet-13710	4	24	the	the	DET
cet-13710	4	25	high	high	ADJ
cet-13710	4	26	-	-	PUNCT
cet-13710	4	27	pressure	pressure	NOUN
cet-13710	4	28	storage	storage	NOUN
cet-13710	4	29	of	of	ADP
cet-13710	4	30	hydrogen	hydrogen	NOUN
cet-13710	4	31	.	.	PUNCT
cet-13710	5	1	in	in	ADP
cet-13710	5	2	particular	particular	ADJ
cet-13710	5	3	,	,	PUNCT
cet-13710	5	4	a	a	DET
cet-13710	5	5	new	new	ADJ
cet-13710	5	6	model	model	NOUN
cet-13710	5	7	for	for	ADP
cet-13710	5	8	the	the	DET
cet-13710	5	9	calculation	calculation	NOUN
cet-13710	5	10	of	of	ADP
cet-13710	5	11	the	the	DET
cet-13710	5	12	expanded	expand	VERB
cet-13710	5	13	diameter	diameter	NOUN
cet-13710	5	14	in	in	ADP
cet-13710	5	15	combination	combination	NOUN
cet-13710	5	16	with	with	ADP
cet-13710	5	17	an	an	DET
cet-13710	5	18	adapted	adapted	ADJ
cet-13710	5	19	implementation	implementation	NOUN
cet-13710	5	20	of	of	ADP
cet-13710	5	21	the	the	DET
cet-13710	5	22	chen	chen	PROPN
cet-13710	5	23	and	and	CCONJ
cet-13710	5	24	rodi	rodi	PROPN
cet-13710	5	25	model	model	NOUN
cet-13710	5	26	was	be	AUX
cet-13710	5	27	developed	develop	VERB
cet-13710	5	28	.	.	PUNCT
cet-13710	6	1	the	the	DET
cet-13710	6	2	models	model	NOUN
cet-13710	6	3	were	be	AUX
cet-13710	6	4	validated	validate	VERB
cet-13710	6	5	against	against	ADP
cet-13710	6	6	a	a	DET
cet-13710	6	7	wide	wide	ADJ
cet-13710	6	8	range	range	NOUN
cet-13710	6	9	of	of	ADP
cet-13710	6	10	experimental	experimental	ADJ
cet-13710	6	11	classical	classical	ADJ
cet-13710	6	12	and	and	CCONJ
cet-13710	6	13	recent	recent	ADJ
cet-13710	6	14	data	datum	NOUN
cet-13710	6	15	sets	set	NOUN
cet-13710	6	16	including	include	VERB
cet-13710	6	17	concentration	concentration	NOUN
cet-13710	6	18	and	and	CCONJ
cet-13710	6	19	velocity	velocity	NOUN
cet-13710	6	20	data	datum	NOUN
cet-13710	6	21	.	.	PUNCT
cet-13710	7	1	this	this	PRON
cet-13710	7	2	also	also	ADV
cet-13710	7	3	includes	include	VERB
cet-13710	7	4	a	a	DET
cet-13710	7	5	wide	wide	ADJ
cet-13710	7	6	range	range	NOUN
cet-13710	7	7	of	of	ADP
cet-13710	7	8	initial	initial	ADJ
cet-13710	7	9	densities	density	NOUN
cet-13710	7	10	from	from	ADP
cet-13710	7	11	lighter	light	ADJ
cet-13710	7	12	than	than	ADP
cet-13710	7	13	air	air	NOUN
cet-13710	7	14	to	to	ADP
cet-13710	7	15	heavy	heavy	ADJ
cet-13710	7	16	gas	gas	NOUN
cet-13710	7	17	which	which	PRON
cet-13710	7	18	will	will	AUX
cet-13710	7	19	be	be	AUX
cet-13710	7	20	discussed	discuss	VERB
cet-13710	7	21	in	in	ADP
cet-13710	7	22	this	this	DET
cet-13710	7	23	paper	paper	NOUN
cet-13710	7	24	.	.	PUNCT
cet-13710	8	1	the	the	DET
cet-13710	8	2	simulations	simulation	NOUN
cet-13710	8	3	show	show	VERB
cet-13710	8	4	excellent	excellent	ADJ
cet-13710	8	5	agreement	agreement	NOUN
cet-13710	8	6	with	with	ADP
cet-13710	8	7	experimental	experimental	ADJ
cet-13710	8	8	data	datum	NOUN
cet-13710	8	9	resulting	result	VERB
cet-13710	8	10	in	in	ADP
cet-13710	8	11	less	less	ADJ
cet-13710	8	12	conservative	conservative	ADJ
cet-13710	8	13	predictions	prediction	NOUN
cet-13710	8	14	compared	compare	VERB
cet-13710	8	15	with	with	ADP
cet-13710	8	16	the	the	DET
cet-13710	8	17	previous	previous	ADJ
cet-13710	8	18	models	model	NOUN
cet-13710	8	19	.	.	PUNCT
cet-13710	9	1	1	1	X
cet-13710	9	2	.	.	X
cet-13710	9	3	introduction	introduction	NOUN
cet-13710	9	4	the	the	DET
cet-13710	9	5	transition	transition	NOUN
cet-13710	9	6	from	from	ADP
cet-13710	9	7	fossil	fossil	ADJ
cet-13710	9	8	fuels	fuel	NOUN
cet-13710	9	9	to	to	PART
cet-13710	9	10	renewable	renewable	VERB
cet-13710	9	11	alternative	alternative	ADJ
cet-13710	9	12	energy	energy	NOUN
cet-13710	9	13	carriers	carrier	NOUN
cet-13710	9	14	(	(	PUNCT
cet-13710	9	15	such	such	ADJ
cet-13710	9	16	as	as	ADP
cet-13710	9	17	hydrogen	hydrogen	NOUN
cet-13710	9	18	and	and	CCONJ
cet-13710	9	19	ammonia	ammonia	NOUN
cet-13710	9	20	)	)	PUNCT
cet-13710	9	21	will	will	AUX
cet-13710	9	22	play	play	VERB
cet-13710	9	23	an	an	DET
cet-13710	9	24	important	important	ADJ
cet-13710	9	25	role	role	NOUN
cet-13710	9	26	to	to	PART
cet-13710	9	27	reduce	reduce	VERB
cet-13710	9	28	global	global	ADJ
cet-13710	9	29	co2	co2	NOUN
cet-13710	9	30	emissions	emission	NOUN
cet-13710	9	31	and	and	CCONJ
cet-13710	9	32	support	support	VERB
cet-13710	9	33	the	the	DET
cet-13710	9	34	energy	energy	NOUN
cet-13710	9	35	transition	transition	NOUN
cet-13710	9	36	.	.	PUNCT
cet-13710	10	1	therefore	therefore	ADV
cet-13710	10	2	,	,	PUNCT
cet-13710	10	3	it	it	PRON
cet-13710	10	4	is	be	AUX
cet-13710	10	5	expected	expect	VERB
cet-13710	10	6	that	that	SCONJ
cet-13710	10	7	these	these	DET
cet-13710	10	8	energy	energy	NOUN
cet-13710	10	9	carriers	carrier	NOUN
cet-13710	10	10	will	will	AUX
cet-13710	10	11	be	be	AUX
cet-13710	10	12	produced	produce	VERB
cet-13710	10	13	,	,	PUNCT
cet-13710	10	14	transported	transport	VERB
cet-13710	10	15	,	,	PUNCT
cet-13710	10	16	and	and	CCONJ
cet-13710	10	17	used	use	VERB
cet-13710	10	18	at	at	ADP
cet-13710	10	19	large	large	ADJ
cet-13710	10	20	scale	scale	NOUN
cet-13710	10	21	in	in	ADP
cet-13710	10	22	the	the	DET
cet-13710	10	23	future	future	NOUN
cet-13710	10	24	.	.	PUNCT
cet-13710	11	1	in	in	ADP
cet-13710	11	2	order	order	NOUN
cet-13710	11	3	to	to	PART
cet-13710	11	4	estimate	estimate	VERB
cet-13710	11	5	the	the	DET
cet-13710	11	6	consequences	consequence	NOUN
cet-13710	11	7	and	and	CCONJ
cet-13710	11	8	risks	risk	NOUN
cet-13710	11	9	due	due	ADP
cet-13710	11	10	to	to	ADP
cet-13710	11	11	the	the	DET
cet-13710	11	12	accidental	accidental	ADJ
cet-13710	11	13	release	release	NOUN
cet-13710	11	14	of	of	ADP
cet-13710	11	15	these	these	DET
cet-13710	11	16	new	new	ADJ
cet-13710	11	17	energy	energy	NOUN
cet-13710	11	18	carriers	carrier	NOUN
cet-13710	11	19	,	,	PUNCT
cet-13710	11	20	the	the	DET
cet-13710	11	21	models	model	NOUN
cet-13710	11	22	applied	apply	VERB
cet-13710	11	23	for	for	ADP
cet-13710	11	24	these	these	DET
cet-13710	11	25	assessments	assessment	NOUN
cet-13710	11	26	need	need	VERB
cet-13710	11	27	to	to	PART
cet-13710	11	28	be	be	AUX
cet-13710	11	29	able	able	ADJ
cet-13710	11	30	to	to	PART
cet-13710	11	31	properly	properly	ADV
cet-13710	11	32	simulate	simulate	VERB
cet-13710	11	33	the	the	DET
cet-13710	11	34	unique	unique	ADJ
cet-13710	11	35	behaviour	behaviour	NOUN
cet-13710	11	36	of	of	ADP
cet-13710	11	37	these	these	DET
cet-13710	11	38	new	new	ADJ
cet-13710	11	39	energy	energy	NOUN
cet-13710	11	40	carriers	carrier	NOUN
cet-13710	11	41	,	,	PUNCT
cet-13710	11	42	which	which	PRON
cet-13710	11	43	can	can	AUX
cet-13710	11	44	present	present	VERB
cet-13710	11	45	strong	strong	ADJ
cet-13710	11	46	buoyant	buoyant	ADJ
cet-13710	11	47	behaviour	behaviour	NOUN
cet-13710	11	48	when	when	SCONJ
cet-13710	11	49	released	release	VERB
cet-13710	11	50	into	into	ADP
cet-13710	11	51	ambient	ambient	ADJ
cet-13710	11	52	air	air	NOUN
cet-13710	11	53	.	.	PUNCT
cet-13710	12	1	gexcon	gexcon	PROPN
cet-13710	12	2	’s	’s	PART
cet-13710	12	3	consequence	consequence	NOUN
cet-13710	12	4	modelling	model	VERB
cet-13710	12	5	tool	tool	NOUN
cet-13710	12	6	effects	effect	NOUN
cet-13710	12	7	used	use	VERB
cet-13710	12	8	to	to	PART
cet-13710	12	9	contain	contain	VERB
cet-13710	12	10	different	different	ADJ
cet-13710	12	11	dispersion	dispersion	NOUN
cet-13710	12	12	models	model	NOUN
cet-13710	12	13	for	for	ADP
cet-13710	12	14	neutral	neutral	ADJ
cet-13710	12	15	and	and	CCONJ
cet-13710	12	16	heavy	heavy	ADJ
cet-13710	12	17	gas	gas	NOUN
cet-13710	12	18	dispersion	dispersion	NOUN
cet-13710	12	19	,	,	PUNCT
cet-13710	12	20	which	which	PRON
cet-13710	12	21	were	be	AUX
cet-13710	12	22	based	base	VERB
cet-13710	12	23	on	on	ADP
cet-13710	12	24	a	a	DET
cet-13710	12	25	1	1	NUM
cet-13710	12	26	-	-	PUNCT
cet-13710	12	27	d	d	NOUN
cet-13710	12	28	discretisation	discretisation	NOUN
cet-13710	12	29	,	,	PUNCT
cet-13710	12	30	also	also	ADV
cet-13710	12	31	known	know	VERB
cet-13710	12	32	as	as	ADP
cet-13710	12	33	integral	integral	ADJ
cet-13710	12	34	models	model	NOUN
cet-13710	12	35	.	.	PUNCT
cet-13710	13	1	since	since	SCONJ
cet-13710	13	2	the	the	DET
cet-13710	13	3	code	code	NOUN
cet-13710	13	4	was	be	AUX
cet-13710	13	5	developed	develop	VERB
cet-13710	13	6	in	in	ADP
cet-13710	13	7	the	the	DET
cet-13710	13	8	past	past	NOUN
cet-13710	13	9	with	with	ADP
cet-13710	13	10	the	the	DET
cet-13710	13	11	focus	focus	NOUN
cet-13710	13	12	on	on	ADP
cet-13710	13	13	heavy	heavy	ADJ
cet-13710	13	14	or	or	CCONJ
cet-13710	13	15	neutral	neutral	ADJ
cet-13710	13	16	gas	gas	NOUN
cet-13710	13	17	conditions	condition	NOUN
cet-13710	13	18	the	the	DET
cet-13710	13	19	simulation	simulation	NOUN
cet-13710	13	20	of	of	ADP
cet-13710	13	21	buoyant	buoyant	ADJ
cet-13710	13	22	jets	jet	NOUN
cet-13710	13	23	and	and	CCONJ
cet-13710	13	24	plumes	plume	NOUN
cet-13710	13	25	so	so	ADV
cet-13710	13	26	far	far	ADV
cet-13710	13	27	was	be	AUX
cet-13710	13	28	limited	limit	VERB
cet-13710	13	29	.	.	PUNCT
cet-13710	14	1	in	in	SCONJ
cet-13710	14	2	effetcs	effetcs	PROPN
cet-13710	14	3	v12	v12	VERB
cet-13710	14	4	the	the	DET
cet-13710	14	5	modelling	modelling	NOUN
cet-13710	14	6	of	of	ADP
cet-13710	14	7	buoyant	buoyant	ADJ
cet-13710	14	8	plumes	plume	NOUN
cet-13710	14	9	including	include	VERB
cet-13710	14	10	the	the	DET
cet-13710	14	11	transition	transition	NOUN
cet-13710	14	12	to	to	ADP
cet-13710	14	13	grounded	ground	VERB
cet-13710	14	14	plumes	plume	NOUN
cet-13710	14	15	depending	depend	VERB
cet-13710	14	16	on	on	ADP
cet-13710	14	17	the	the	DET
cet-13710	14	18	release	release	NOUN
cet-13710	14	19	and	and	CCONJ
cet-13710	14	20	weather	weather	NOUN
cet-13710	14	21	conditions	condition	NOUN
cet-13710	14	22	has	have	AUX
cet-13710	14	23	been	be	AUX
cet-13710	14	24	significantly	significantly	ADV
cet-13710	14	25	improved	improve	VERB
cet-13710	14	26	(	(	PUNCT
cet-13710	14	27	mack	mack	PROPN
cet-13710	14	28	et	et	PROPN
cet-13710	14	29	al	al	PROPN
cet-13710	14	30	.	.	PROPN
cet-13710	14	31	,	,	PUNCT
cet-13710	14	32	2022	2022	NUM
cet-13710	14	33	)	)	PUNCT
cet-13710	14	34	.	.	PUNCT
cet-13710	15	1	the	the	DET
cet-13710	15	2	present	present	ADJ
cet-13710	15	3	work	work	NOUN
cet-13710	15	4	focuses	focus	VERB
cet-13710	15	5	on	on	ADP
cet-13710	15	6	the	the	DET
cet-13710	15	7	improvement	improvement	NOUN
cet-13710	15	8	of	of	ADP
cet-13710	15	9	the	the	DET
cet-13710	15	10	modelling	modelling	NOUN
cet-13710	15	11	of	of	ADP
cet-13710	15	12	turbulent	turbulent	ADJ
cet-13710	15	13	free	free	ADJ
cet-13710	15	14	jets	jet	NOUN
cet-13710	15	15	including	include	VERB
cet-13710	15	16	highly	highly	ADV
cet-13710	15	17	under	under	ADP
cet-13710	15	18	expanded	expand	VERB
cet-13710	15	19	gaseous	gaseous	ADJ
cet-13710	15	20	jets	jet	NOUN
cet-13710	15	21	from	from	ADP
cet-13710	15	22	light	light	ADJ
cet-13710	15	23	gas	gas	NOUN
cet-13710	15	24	releases	release	NOUN
cet-13710	15	25	such	such	ADJ
cet-13710	15	26	as	as	ADP
cet-13710	15	27	pressurized	pressurized	ADJ
cet-13710	15	28	hydrogen	hydrogen	NOUN
cet-13710	15	29	but	but	CCONJ
cet-13710	15	30	also	also	ADV
cet-13710	15	31	other	other	ADJ
cet-13710	15	32	substances	substance	NOUN
cet-13710	15	33	and	and	CCONJ
cet-13710	15	34	flow	flow	NOUN
cet-13710	15	35	conditions	condition	NOUN
cet-13710	15	36	.	.	PUNCT
cet-13710	16	1	2	2	X
cet-13710	16	2	.	.	X
cet-13710	16	3	modelling	model	VERB
cet-13710	16	4	turbulent	turbulent	ADJ
cet-13710	16	5	jets	jet	NOUN
cet-13710	16	6	in	in	ADP
cet-13710	16	7	effects	effect	NOUN
cet-13710	16	8	v12	v12	VERB
cet-13710	16	9	,	,	PUNCT
cet-13710	16	10	the	the	DET
cet-13710	16	11	modelling	modelling	NOUN
cet-13710	16	12	of	of	ADP
cet-13710	16	13	a	a	DET
cet-13710	16	14	gaseous	gaseous	ADJ
cet-13710	16	15	jet	jet	NOUN
cet-13710	16	16	is	be	AUX
cet-13710	16	17	modelled	model	VERB
cet-13710	16	18	as	as	ADP
cet-13710	16	19	a	a	DET
cet-13710	16	20	turbulent	turbulent	ADV
cet-13710	16	21	free	free	ADJ
cet-13710	16	22	jet	jet	NOUN
cet-13710	16	23	in	in	ADP
cet-13710	16	24	the	the	DET
cet-13710	16	25	momentum	momentum	NOUN
cet-13710	16	26	dominated	dominate	VERB
cet-13710	16	27	region	region	NOUN
cet-13710	16	28	;	;	PUNCT
cet-13710	16	29	from	from	ADP
cet-13710	16	30	there	there	ADV
cet-13710	16	31	the	the	DET
cet-13710	16	32	effects	effect	NOUN
cet-13710	16	33	v12	v12	VERB
cet-13710	16	34	dispersion	dispersion	NOUN
cet-13710	16	35	model	model	NOUN
cet-13710	16	36	is	be	AUX
cet-13710	16	37	applied	apply	VERB
cet-13710	16	38	which	which	PRON
cet-13710	16	39	solves	solve	VERB
cet-13710	16	40	the	the	DET
cet-13710	16	41	equations	equation	NOUN
cet-13710	16	42	of	of	ADP
cet-13710	16	43	mass	mass	ADJ
cet-13710	16	44	,	,	PUNCT
cet-13710	16	45	momentum	momentum	NOUN
cet-13710	16	46	and	and	CCONJ
cet-13710	16	47	energy	energy	NOUN
cet-13710	16	48	and	and	CCONJ
cet-13710	16	49	therefore	therefore	ADV
cet-13710	16	50	,	,	PUNCT
cet-13710	16	51	can	can	AUX
cet-13710	16	52	handle	handle	VERB
cet-13710	16	53	all	all	DET
cet-13710	16	54	relevant	relevant	ADJ
cet-13710	16	55	physical	physical	ADJ
cet-13710	16	56	effects	effect	NOUN
cet-13710	16	57	like	like	ADP
cet-13710	16	58	buoyancy	buoyancy	NOUN
cet-13710	16	59	.	.	PUNCT
cet-13710	17	1	the	the	DET
cet-13710	17	2	coupling	coupling	NOUN
cet-13710	17	3	is	be	AUX
cet-13710	17	4	performed	perform	VERB
cet-13710	17	5	automatically	automatically	ADV
cet-13710	17	6	in	in	ADP
cet-13710	17	7	effects	effect	NOUN
cet-13710	17	8	v12	v12	VERB
cet-13710	17	9	.	.	PUNCT
cet-13710	18	1	2.1	2.1	NUM
cet-13710	18	2	expanded	expand	VERB
cet-13710	18	3	turbulent	turbulent	ADJ
cet-13710	18	4	free	free	ADJ
cet-13710	18	5	jets	jet	NOUN
cet-13710	18	6	turbulent	turbulent	ADJ
cet-13710	18	7	jets	jet	NOUN
cet-13710	18	8	have	have	AUX
cet-13710	18	9	been	be	AUX
cet-13710	18	10	studied	study	VERB
cet-13710	18	11	extensively	extensively	ADV
cet-13710	18	12	in	in	ADP
cet-13710	18	13	the	the	DET
cet-13710	18	14	past	past	NOUN
cet-13710	18	15	experimentally	experimentally	ADV
cet-13710	18	16	and	and	CCONJ
cet-13710	18	17	analytically	analytically	ADV
cet-13710	18	18	(	(	PUNCT
cet-13710	18	19	chen	chen	PROPN
cet-13710	18	20	and	and	CCONJ
cet-13710	18	21	rodi	rodi	PROPN
cet-13710	18	22	,	,	PUNCT
cet-13710	18	23	1980	1980	NUM
cet-13710	18	24	)	)	PUNCT
cet-13710	18	25	.	.	PUNCT
cet-13710	19	1	the	the	DET
cet-13710	19	2	analytical	analytical	ADJ
cet-13710	19	3	models	model	NOUN
cet-13710	19	4	can	can	AUX
cet-13710	19	5	reproduce	reproduce	VERB
cet-13710	19	6	the	the	DET
cet-13710	19	7	mixing	mixing	NOUN
cet-13710	19	8	of	of	ADP
cet-13710	19	9	the	the	DET
cet-13710	19	10	jet	jet	NOUN
cet-13710	19	11	with	with	ADP
cet-13710	19	12	the	the	DET
cet-13710	19	13	surrounding	surround	VERB
cet-13710	19	14	air	air	NOUN
cet-13710	19	15	relatively	relatively	ADV
cet-13710	19	16	accurate	accurate	ADJ
cet-13710	19	17	at	at	ADP
cet-13710	19	18	very	very	ADV
cet-13710	19	19	low	low	ADJ
cet-13710	19	20	computational	computational	ADJ
cet-13710	19	21	effort	effort	NOUN
cet-13710	19	22	since	since	SCONJ
cet-13710	19	23	the	the	DET
cet-13710	19	24	concentration	concentration	NOUN
cet-13710	19	25	scales	scale	VERB
cet-13710	19	26	with	with	ADP
cet-13710	19	27	the	the	DET
cet-13710	19	28	reciprocal	reciprocal	NOUN
cet-13710	19	29	of	of	ADP
cet-13710	19	30	the	the	DET
cet-13710	19	31	distance	distance	NOUN
cet-13710	19	32	.	.	PUNCT
cet-13710	20	1	a	a	DET
cet-13710	20	2	widely	widely	ADV
cet-13710	20	3	used	use	VERB
cet-13710	20	4	25	25	NUM
cet-13710	20	5	analytical	analytical	ADJ
cet-13710	20	6	model	model	NOUN
cet-13710	20	7	is	be	AUX
cet-13710	20	8	the	the	DET
cet-13710	20	9	one	one	NUM
cet-13710	20	10	of	of	ADP
cet-13710	20	11	chen	chen	PROPN
cet-13710	20	12	&	&	CCONJ
cet-13710	20	13	rodi	rodi	PROPN
cet-13710	20	14	(	(	PUNCT
cet-13710	20	15	chen	chen	PROPN
cet-13710	20	16	and	and	CCONJ
cet-13710	20	17	rodi	rodi	PROPN
cet-13710	20	18	,	,	PUNCT
cet-13710	20	19	1980	1980	NUM
cet-13710	20	20	)	)	PUNCT
cet-13710	20	21	which	which	PRON
cet-13710	20	22	has	have	AUX
cet-13710	20	23	also	also	ADV
cet-13710	20	24	been	be	AUX
cet-13710	20	25	applied	apply	VERB
cet-13710	20	26	in	in	ADP
cet-13710	20	27	effects	effect	NOUN
cet-13710	20	28	successfully	successfully	ADV
cet-13710	20	29	for	for	ADP
cet-13710	20	30	many	many	ADJ
cet-13710	20	31	years	year	NOUN
cet-13710	20	32	.	.	PUNCT
cet-13710	21	1	the	the	DET
cet-13710	21	2	concentration	concentration	NOUN
cet-13710	21	3	distribution	distribution	NOUN
cet-13710	21	4	of	of	ADP
cet-13710	21	5	the	the	DET
cet-13710	21	6	chen	chen	PROPN
cet-13710	21	7	&	&	CCONJ
cet-13710	21	8	rodi	rodi	PROPN
cet-13710	21	9	model	model	NOUN
cet-13710	21	10	is	be	AUX
cet-13710	21	11	:	:	PUNCT
cet-13710	21	12	𝑐𝑐(𝑥	𝑐𝑐(𝑥	X
cet-13710	21	13	)	)	PUNCT
cet-13710	21	14	𝑐𝑠	𝑐𝑠	VERB
cet-13710	21	15	=	=	PUNCT
cet-13710	21	16	𝐶𝑐√	𝐶𝑐√	NOUN
cet-13710	21	17	𝜌𝑠	𝜌𝑠	NUM
cet-13710	21	18	𝜌𝑎	𝜌𝑎	NOUN
cet-13710	21	19	𝑑	𝑑	PROPN
cet-13710	21	20	𝑥	𝑥	X
cet-13710	21	21	(	(	PUNCT
cet-13710	21	22	1	1	NUM
cet-13710	21	23	)	)	PUNCT
cet-13710	21	24	𝜌𝑠	𝜌𝑠	NOUN
cet-13710	21	25	is	be	AUX
cet-13710	21	26	the	the	DET
cet-13710	21	27	density	density	NOUN
cet-13710	21	28	of	of	ADP
cet-13710	21	29	source	source	NOUN
cet-13710	21	30	gas	gas	NOUN
cet-13710	21	31	at	at	ADP
cet-13710	21	32	throat	throat	NOUN
cet-13710	21	33	,	,	PUNCT
cet-13710	21	34	𝜌𝑎	𝜌𝑎	ADP
cet-13710	21	35	the	the	DET
cet-13710	21	36	density	density	NOUN
cet-13710	21	37	of	of	ADP
cet-13710	21	38	ambient	ambient	ADJ
cet-13710	21	39	air	air	NOUN
cet-13710	21	40	,	,	PUNCT
cet-13710	21	41	d	d	X
cet-13710	21	42	the	the	DET
cet-13710	21	43	throat	throat	NOUN
cet-13710	21	44	diameter	diameter	NOUN
cet-13710	21	45	,	,	PUNCT
cet-13710	22	1	𝐶𝑐	𝐶𝑐	PROPN
cet-13710	22	2	the	the	DET
cet-13710	22	3	concentration	concentration	NOUN
cet-13710	22	4	coefficient	coefficient	NOUN
cet-13710	22	5	,	,	PUNCT
cet-13710	22	6	𝑐𝑠	𝑐𝑠	VERB
cet-13710	22	7	the	the	DET
cet-13710	22	8	mass	mass	ADJ
cet-13710	22	9	fraction	fraction	NOUN
cet-13710	22	10	of	of	ADP
cet-13710	22	11	the	the	DET
cet-13710	22	12	source	source	NOUN
cet-13710	22	13	at	at	ADP
cet-13710	22	14	throat	throat	NOUN
cet-13710	22	15	and	and	CCONJ
cet-13710	22	16	x	x	X
cet-13710	22	17	is	be	AUX
cet-13710	22	18	the	the	DET
cet-13710	22	19	distance	distance	NOUN
cet-13710	22	20	from	from	ADP
cet-13710	22	21	the	the	DET
cet-13710	22	22	throat	throat	NOUN
cet-13710	22	23	.	.	PUNCT
cet-13710	23	1	with	with	ADP
cet-13710	23	2	rising	rise	VERB
cet-13710	23	3	interest	interest	NOUN
cet-13710	23	4	for	for	ADP
cet-13710	23	5	new	new	ADJ
cet-13710	23	6	energy	energy	NOUN
cet-13710	23	7	carriers	carrier	NOUN
cet-13710	23	8	like	like	ADP
cet-13710	23	9	hydrogen	hydrogen	NOUN
cet-13710	23	10	,	,	PUNCT
cet-13710	23	11	which	which	PRON
cet-13710	23	12	is	be	AUX
cet-13710	23	13	much	much	ADV
cet-13710	23	14	lighter	light	ADJ
cet-13710	23	15	than	than	ADP
cet-13710	23	16	the	the	DET
cet-13710	23	17	classical	classical	ADJ
cet-13710	23	18	gasses	gas	NOUN
cet-13710	23	19	from	from	ADP
cet-13710	23	20	hydrocarbons	hydrocarbon	NOUN
cet-13710	23	21	such	such	ADJ
cet-13710	23	22	as	as	ADP
cet-13710	23	23	methane	methane	NOUN
cet-13710	23	24	,	,	PUNCT
cet-13710	23	25	the	the	DET
cet-13710	23	26	model	model	NOUN
cet-13710	23	27	was	be	AUX
cet-13710	23	28	revised	revise	VERB
cet-13710	23	29	and	and	CCONJ
cet-13710	23	30	crosschecked	crosschecke	VERB
cet-13710	23	31	with	with	ADP
cet-13710	23	32	more	more	ADV
cet-13710	23	33	recent	recent	ADJ
cet-13710	23	34	data	datum	NOUN
cet-13710	23	35	.	.	PUNCT
cet-13710	24	1	it	it	PRON
cet-13710	24	2	turned	turn	VERB
cet-13710	24	3	out	out	ADP
cet-13710	24	4	that	that	SCONJ
cet-13710	24	5	in	in	ADP
cet-13710	24	6	the	the	DET
cet-13710	24	7	original	original	ADJ
cet-13710	24	8	publication	publication	NOUN
cet-13710	24	9	of	of	ADP
cet-13710	24	10	chen	chen	PROPN
cet-13710	24	11	&	&	CCONJ
cet-13710	24	12	rodi	rodi	PROPN
cet-13710	24	13	(	(	PUNCT
cet-13710	24	14	chen	chen	PROPN
cet-13710	24	15	and	and	CCONJ
cet-13710	24	16	rodi	rodi	PROPN
cet-13710	24	17	,	,	PUNCT
cet-13710	24	18	1980	1980	NUM
cet-13710	24	19	)	)	PUNCT
cet-13710	24	20	the	the	DET
cet-13710	24	21	analytical	analytical	ADJ
cet-13710	24	22	model	model	NOUN
cet-13710	24	23	of	of	ADP
cet-13710	24	24	the	the	DET
cet-13710	24	25	concentration	concentration	NOUN
cet-13710	24	26	decay	decay	NOUN
cet-13710	24	27	scaled	scale	VERB
cet-13710	24	28	with	with	ADP
cet-13710	24	29	the	the	DET
cet-13710	24	30	reciprocal	reciprocal	ADJ
cet-13710	24	31	density	density	NOUN
cet-13710	24	32	ratio	ratio	NOUN
cet-13710	24	33	by	by	ADP
cet-13710	24	34	mistake	mistake	NOUN
cet-13710	24	35	,	,	PUNCT
cet-13710	24	36	which	which	PRON
cet-13710	24	37	can	can	AUX
cet-13710	24	38	be	be	AUX
cet-13710	24	39	verified	verify	VERB
cet-13710	24	40	by	by	ADP
cet-13710	24	41	comparison	comparison	NOUN
cet-13710	24	42	with	with	ADP
cet-13710	24	43	the	the	DET
cet-13710	24	44	scaling	scaling	NOUN
cet-13710	24	45	of	of	ADP
cet-13710	24	46	the	the	DET
cet-13710	24	47	experimental	experimental	ADJ
cet-13710	24	48	data	data	NOUN
cet-13710	24	49	results	result	NOUN
cet-13710	24	50	in	in	ADP
cet-13710	24	51	the	the	DET
cet-13710	24	52	same	same	ADJ
cet-13710	24	53	publication	publication	NOUN
cet-13710	24	54	.	.	PUNCT
cet-13710	25	1	this	this	DET
cet-13710	25	2	results	result	VERB
cet-13710	25	3	in	in	ADP
cet-13710	25	4	inaccuracies	inaccuracy	NOUN
cet-13710	25	5	when	when	SCONJ
cet-13710	25	6	applying	apply	VERB
cet-13710	25	7	the	the	DET
cet-13710	25	8	model	model	NOUN
cet-13710	25	9	for	for	ADP
cet-13710	25	10	both	both	CCONJ
cet-13710	25	11	heavy	heavy	ADJ
cet-13710	25	12	and	and	CCONJ
cet-13710	25	13	light	light	ADJ
cet-13710	25	14	gas	gas	NOUN
cet-13710	25	15	dispersion	dispersion	NOUN
cet-13710	25	16	situations	situation	NOUN
cet-13710	25	17	.	.	PUNCT
cet-13710	26	1	in	in	ADP
cet-13710	26	2	addition	addition	NOUN
cet-13710	26	3	,	,	PUNCT
cet-13710	26	4	the	the	DET
cet-13710	26	5	concentration	concentration	NOUN
cet-13710	26	6	fractions	fraction	NOUN
cet-13710	26	7	have	have	VERB
cet-13710	26	8	to	to	PART
cet-13710	26	9	be	be	AUX
cet-13710	26	10	interpreted	interpret	VERB
cet-13710	26	11	as	as	ADP
cet-13710	26	12	mass	mass	ADJ
cet-13710	26	13	fractions	fraction	NOUN
cet-13710	26	14	in	in	ADP
cet-13710	26	15	the	the	DET
cet-13710	26	16	chen	chen	PROPN
cet-13710	26	17	&	&	CCONJ
cet-13710	26	18	rodi	rodi	PROPN
cet-13710	26	19	model	model	PROPN
cet-13710	26	20	,	,	PUNCT
cet-13710	26	21	which	which	PRON
cet-13710	26	22	lead	lead	VERB
cet-13710	26	23	to	to	ADP
cet-13710	26	24	the	the	DET
cet-13710	26	25	mismatch	mismatch	NOUN
cet-13710	26	26	of	of	ADP
cet-13710	26	27	other	other	ADJ
cet-13710	26	28	models	model	NOUN
cet-13710	26	29	with	with	ADP
cet-13710	26	30	experimental	experimental	ADJ
cet-13710	26	31	data	datum	NOUN
cet-13710	26	32	in	in	ADP
cet-13710	26	33	the	the	DET
cet-13710	26	34	past	past	NOUN
cet-13710	26	35	as	as	SCONJ
cet-13710	26	36	mentioned	mention	VERB
cet-13710	26	37	earlier	early	ADV
cet-13710	26	38	by	by	ADP
cet-13710	26	39	molkov	molkov	NOUN
cet-13710	26	40	(	(	PUNCT
cet-13710	26	41	2012	2012	NUM
cet-13710	26	42	)	)	PUNCT
cet-13710	26	43	.	.	PUNCT
cet-13710	27	1	the	the	DET
cet-13710	27	2	velocity	velocity	NOUN
cet-13710	27	3	decay	decay	NOUN
cet-13710	27	4	at	at	ADP
cet-13710	27	5	the	the	DET
cet-13710	27	6	centreline	centreline	NOUN
cet-13710	27	7	is	be	AUX
cet-13710	27	8	:	:	PUNCT
cet-13710	27	9	𝑢𝑐(𝑥	𝑢𝑐(𝑥	NUM
cet-13710	27	10	)	)	PUNCT
cet-13710	27	11	𝑢𝑠	𝑢𝑠	NOUN
cet-13710	28	1	=	=	PUNCT
cet-13710	28	2	𝐶𝑢√	𝐶𝑢√	PROPN
cet-13710	28	3	𝜌𝑠	𝜌𝑠	NOUN
cet-13710	28	4	𝜌𝑎	𝜌𝑎	ADP
cet-13710	28	5	𝑑	𝑑	PROPN
cet-13710	28	6	𝑥	𝑥	X
cet-13710	28	7	(	(	PUNCT
cet-13710	28	8	2	2	NUM
cet-13710	28	9	)	)	PUNCT
cet-13710	28	10	𝑢𝑠	𝑢𝑠	PROPN
cet-13710	28	11	is	be	AUX
cet-13710	28	12	the	the	DET
cet-13710	28	13	velocity	velocity	NOUN
cet-13710	28	14	at	at	ADP
cet-13710	28	15	throat	throat	NOUN
cet-13710	28	16	,	,	PUNCT
cet-13710	28	17	𝐶𝑢	𝐶𝑢	NOUN
cet-13710	28	18	is	be	AUX
cet-13710	28	19	the	the	DET
cet-13710	28	20	velocity	velocity	NOUN
cet-13710	28	21	coefficient	coefficient	NOUN
cet-13710	28	22	.	.	PUNCT
cet-13710	29	1	the	the	DET
cet-13710	29	2	lateral	lateral	ADJ
cet-13710	29	3	concentration	concentration	NOUN
cet-13710	29	4	and	and	CCONJ
cet-13710	29	5	velocity	velocity	NOUN
cet-13710	29	6	distributions	distribution	NOUN
cet-13710	29	7	are	be	AUX
cet-13710	29	8	defined	define	VERB
cet-13710	29	9	as	as	ADP
cet-13710	29	10	gaussian	gaussian	ADJ
cet-13710	29	11	distributions	distribution	NOUN
cet-13710	29	12	:	:	PUNCT
cet-13710	29	13	𝑐	𝑐	X
cet-13710	29	14	(	(	PUNCT
cet-13710	29	15	𝑟𝑗	𝑟𝑗	ADP
cet-13710	29	16	𝑥	𝑥	PROPN
cet-13710	29	17	)	)	PUNCT
cet-13710	30	1	𝑐𝑐(𝑥	𝑐𝑐(𝑥	NUM
cet-13710	30	2	)	)	PUNCT
cet-13710	30	3	=	=	SYM
cet-13710	30	4	exp	exp	NOUN
cet-13710	30	5	(	(	PUNCT
cet-13710	30	6	−𝐶𝑦𝑐	−𝐶𝑦𝑐	X
cet-13710	30	7	(	(	PUNCT
cet-13710	30	8	𝑟𝑗	𝑟𝑗	ADP
cet-13710	30	9	𝑥	𝑥	PROPN
cet-13710	30	10	)	)	PUNCT
cet-13710	30	11	2	2	NUM
cet-13710	30	12	)	)	PUNCT
cet-13710	30	13	(	(	PUNCT
cet-13710	30	14	3	3	X
cet-13710	30	15	)	)	PUNCT
cet-13710	30	16	𝑢	𝑢	NOUN
cet-13710	30	17	(	(	PUNCT
cet-13710	30	18	𝑟𝑗	𝑟𝑗	ADP
cet-13710	30	19	𝑥	𝑥	PROPN
cet-13710	30	20	)	)	PUNCT
cet-13710	30	21	𝑢𝑐(𝑥	𝑢𝑐(𝑥	ADJ
cet-13710	30	22	)	)	PUNCT
cet-13710	30	23	=	=	SYM
cet-13710	30	24	exp	exp	X
cet-13710	30	25	(	(	PUNCT
cet-13710	30	26	−𝐶𝑦𝑢	−𝐶𝑦𝑢	PROPN
cet-13710	30	27	(	(	PUNCT
cet-13710	30	28	𝑟𝑗	𝑟𝑗	ADP
cet-13710	30	29	𝑥	𝑥	PROPN
cet-13710	30	30	)	)	PUNCT
cet-13710	30	31	2	2	NUM
cet-13710	30	32	)	)	PUNCT
cet-13710	30	33	(	(	PUNCT
cet-13710	30	34	4	4	NUM
cet-13710	30	35	)	)	PUNCT
cet-13710	30	36	𝑟𝑗	𝑟𝑗	ADP
cet-13710	30	37	=	=	SYM
cet-13710	30	38	√𝑦2	√𝑦2	PROPN
cet-13710	30	39	+	+	CCONJ
cet-13710	30	40	𝑧2	𝑧2	NOUN
cet-13710	30	41	is	be	AUX
cet-13710	30	42	the	the	DET
cet-13710	30	43	radial	radial	ADJ
cet-13710	30	44	distance	distance	NOUN
cet-13710	30	45	from	from	ADP
cet-13710	30	46	the	the	DET
cet-13710	30	47	jet	jet	NOUN
cet-13710	30	48	axis	axis	NOUN
cet-13710	30	49	and	and	CCONJ
cet-13710	30	50	𝐶𝑦𝑐	𝐶𝑦𝑐	PROPN
cet-13710	30	51	and	and	CCONJ
cet-13710	30	52	𝐶𝑦𝑢	𝐶𝑦𝑢	PROPN
cet-13710	30	53	coefficients	coefficient	NOUN
cet-13710	30	54	for	for	ADP
cet-13710	30	55	the	the	DET
cet-13710	30	56	radial	radial	ADJ
cet-13710	30	57	distribution	distribution	NOUN
cet-13710	30	58	of	of	ADP
cet-13710	30	59	concentration	concentration	NOUN
cet-13710	30	60	and	and	CCONJ
cet-13710	30	61	velocity	velocity	NOUN
cet-13710	30	62	.	.	PUNCT
cet-13710	31	1	the	the	DET
cet-13710	31	2	calculation	calculation	NOUN
cet-13710	31	3	of	of	ADP
cet-13710	31	4	the	the	DET
cet-13710	31	5	conditions	condition	NOUN
cet-13710	31	6	of	of	ADP
cet-13710	31	7	concentration	concentration	NOUN
cet-13710	31	8	and	and	CCONJ
cet-13710	31	9	velocity	velocity	NOUN
cet-13710	31	10	at	at	ADP
cet-13710	31	11	the	the	DET
cet-13710	31	12	release	release	NOUN
cet-13710	31	13	location	location	NOUN
cet-13710	31	14	(	(	PUNCT
cet-13710	31	15	throat	throat	NOUN
cet-13710	31	16	)	)	PUNCT
cet-13710	31	17	,	,	PUNCT
cet-13710	31	18	which	which	PRON
cet-13710	31	19	are	be	AUX
cet-13710	31	20	needed	need	VERB
cet-13710	31	21	as	as	ADP
cet-13710	31	22	input	input	NOUN
cet-13710	31	23	for	for	ADP
cet-13710	31	24	the	the	DET
cet-13710	31	25	model	model	NOUN
cet-13710	31	26	,	,	PUNCT
cet-13710	31	27	are	be	AUX
cet-13710	31	28	based	base	VERB
cet-13710	31	29	on	on	ADP
cet-13710	31	30	the	the	DET
cet-13710	31	31	expansion	expansion	NOUN
cet-13710	31	32	from	from	ADP
cet-13710	31	33	reservoir	reservoir	NOUN
cet-13710	31	34	conditions	condition	NOUN
cet-13710	31	35	to	to	ADP
cet-13710	31	36	ambient	ambient	ADJ
cet-13710	31	37	pressure	pressure	NOUN
cet-13710	31	38	.	.	PUNCT
cet-13710	32	1	the	the	DET
cet-13710	32	2	coefficients	coefficient	NOUN
cet-13710	32	3	used	use	VERB
cet-13710	32	4	in	in	ADP
cet-13710	32	5	effects	effect	NOUN
cet-13710	32	6	v12	v12	VERB
cet-13710	32	7	are	be	AUX
cet-13710	32	8	based	base	VERB
cet-13710	32	9	on	on	ADP
cet-13710	32	10	a	a	DET
cet-13710	32	11	wide	wide	ADJ
cet-13710	32	12	range	range	NOUN
cet-13710	32	13	of	of	ADP
cet-13710	32	14	experimental	experimental	ADJ
cet-13710	32	15	data	datum	NOUN
cet-13710	32	16	including	include	VERB
cet-13710	32	17	under	under	ADP
cet-13710	32	18	expanded	expand	VERB
cet-13710	32	19	releases	release	NOUN
cet-13710	32	20	,	,	PUNCT
cet-13710	32	21	which	which	PRON
cet-13710	32	22	are	be	AUX
cet-13710	32	23	explained	explain	VERB
cet-13710	32	24	in	in	ADP
cet-13710	32	25	chapter	chapter	NOUN
cet-13710	32	26	2.2	2.2	NUM
cet-13710	32	27	.	.	PUNCT
cet-13710	33	1	the	the	DET
cet-13710	33	2	coefficients	coefficient	NOUN
cet-13710	33	3	are	be	AUX
cet-13710	33	4	provided	provide	VERB
cet-13710	33	5	in	in	ADP
cet-13710	33	6	table	table	NOUN
cet-13710	33	7	1	1	NUM
cet-13710	33	8	.	.	PUNCT
cet-13710	33	9	table	table	NOUN
cet-13710	33	10	1	1	NUM
cet-13710	33	11	:	:	PUNCT
cet-13710	33	12	turbulent	turbulent	ADJ
cet-13710	33	13	coefficients	coefficient	NOUN
cet-13710	33	14	used	use	VERB
cet-13710	33	15	in	in	ADP
cet-13710	33	16	effects	effect	NOUN
cet-13710	33	17	v12	v12	VERB
cet-13710	33	18	𝐶𝑐	𝐶𝑐	PROPN
cet-13710	33	19	𝐶𝑢	𝐶𝑢	PROPN
cet-13710	33	20	𝐶𝑦𝑐	𝐶𝑦𝑐	PROPN
cet-13710	33	21	𝐶𝑦𝑢	𝐶𝑦𝑢	PROPN
cet-13710	33	22	4.8	4.8	NUM
cet-13710	33	23	5.0	5.0	NUM
cet-13710	33	24	35	35	NUM
cet-13710	33	25	94	94	NUM
cet-13710	33	26	for	for	ADP
cet-13710	33	27	low	low	ADJ
cet-13710	33	28	-	-	PUNCT
cet-13710	33	29	speed	speed	NOUN
cet-13710	33	30	releases	release	NOUN
cet-13710	33	31	,	,	PUNCT
cet-13710	33	32	where	where	SCONJ
cet-13710	33	33	the	the	DET
cet-13710	33	34	exit	exit	NOUN
cet-13710	33	35	mach	mach	NOUN
cet-13710	33	36	number	number	NOUN
cet-13710	33	37	is	be	AUX
cet-13710	33	38	much	much	ADV
cet-13710	33	39	lower	low	ADJ
cet-13710	33	40	than	than	ADP
cet-13710	33	41	one	one	NUM
cet-13710	33	42	,	,	PUNCT
cet-13710	33	43	the	the	DET
cet-13710	33	44	chen	chen	PROPN
cet-13710	33	45	&	&	CCONJ
cet-13710	33	46	rodi	rodi	PROPN
cet-13710	33	47	model	model	PROPN
cet-13710	33	48	(	(	PUNCT
cet-13710	33	49	equation	equation	NOUN
cet-13710	33	50	2	2	NUM
cet-13710	33	51	)	)	PUNCT
cet-13710	33	52	underpredicts	underpredict	VERB
cet-13710	33	53	the	the	DET
cet-13710	33	54	velocity	velocity	NOUN
cet-13710	33	55	at	at	ADP
cet-13710	33	56	the	the	DET
cet-13710	33	57	jet	jet	NOUN
cet-13710	33	58	centreline	centreline	NOUN
cet-13710	33	59	.	.	PUNCT
cet-13710	34	1	therefore	therefore	ADV
cet-13710	34	2	,	,	PUNCT
cet-13710	34	3	a	a	DET
cet-13710	34	4	correction	correction	NOUN
cet-13710	34	5	by	by	ADP
cet-13710	34	6	witze	witze	PROPN
cet-13710	34	7	(	(	PUNCT
cet-13710	34	8	1974	1974	NUM
cet-13710	34	9	)	)	PUNCT
cet-13710	34	10	was	be	AUX
cet-13710	34	11	applied	apply	VERB
cet-13710	34	12	for	for	ADP
cet-13710	34	13	exit	exit	NOUN
cet-13710	34	14	mach	mach	NOUN
cet-13710	34	15	numbers	number	NOUN
cet-13710	34	16	below	below	ADP
cet-13710	34	17	0.3	0.3	NUM
cet-13710	34	18	with	with	ADP
cet-13710	34	19	a	a	DET
cet-13710	34	20	smooth	smooth	ADJ
cet-13710	34	21	transition	transition	NOUN
cet-13710	34	22	to	to	ADP
cet-13710	34	23	mach	mach	NOUN
cet-13710	34	24	0.5	0.5	NUM
cet-13710	34	25	;	;	PUNCT
cet-13710	34	26	above	above	ADP
cet-13710	34	27	this	this	DET
cet-13710	34	28	value	value	NOUN
cet-13710	34	29	,	,	PUNCT
cet-13710	34	30	equation	equation	NOUN
cet-13710	34	31	2	2	NUM
cet-13710	34	32	is	be	AUX
cet-13710	34	33	applied	apply	VERB
cet-13710	34	34	(	(	PUNCT
cet-13710	34	35	not	not	PART
cet-13710	34	36	further	far	ADV
cet-13710	34	37	discussed	discuss	VERB
cet-13710	34	38	here	here	ADV
cet-13710	34	39	)	)	PUNCT
cet-13710	34	40	.	.	PUNCT
cet-13710	35	1	2.2	2.2	NUM
cet-13710	35	2	under	under	ADP
cet-13710	35	3	expanded	expand	VERB
cet-13710	35	4	turbulent	turbulent	ADJ
cet-13710	35	5	free	free	ADJ
cet-13710	35	6	jets	jet	NOUN
cet-13710	35	7	for	for	ADP
cet-13710	35	8	expanded	expand	VERB
cet-13710	35	9	releases	release	NOUN
cet-13710	35	10	,	,	PUNCT
cet-13710	35	11	the	the	DET
cet-13710	35	12	pressure	pressure	NOUN
cet-13710	35	13	at	at	ADP
cet-13710	35	14	the	the	DET
cet-13710	35	15	release	release	NOUN
cet-13710	35	16	equals	equal	VERB
cet-13710	35	17	the	the	DET
cet-13710	35	18	ambient	ambient	ADJ
cet-13710	35	19	pressure	pressure	NOUN
cet-13710	35	20	.	.	PUNCT
cet-13710	36	1	therefore	therefore	ADV
cet-13710	36	2	,	,	PUNCT
cet-13710	36	3	the	the	DET
cet-13710	36	4	initial	initial	ADJ
cet-13710	36	5	conditions	condition	NOUN
cet-13710	36	6	required	require	VERB
cet-13710	36	7	for	for	ADP
cet-13710	36	8	the	the	DET
cet-13710	36	9	turbulent	turbulent	ADJ
cet-13710	36	10	jet	jet	NOUN
cet-13710	36	11	model	model	NOUN
cet-13710	36	12	like	like	ADP
cet-13710	36	13	diameter	diameter	NOUN
cet-13710	36	14	and	and	CCONJ
cet-13710	36	15	velocity	velocity	NOUN
cet-13710	36	16	can	can	AUX
cet-13710	36	17	be	be	AUX
cet-13710	36	18	taken	take	VERB
cet-13710	36	19	directly	directly	ADV
cet-13710	36	20	from	from	ADP
cet-13710	36	21	the	the	DET
cet-13710	36	22	release	release	NOUN
cet-13710	36	23	location	location	NOUN
cet-13710	36	24	,	,	PUNCT
cet-13710	36	25	as	as	ADP
cet-13710	36	26	an	an	DET
cet-13710	36	27	expansion	expansion	NOUN
cet-13710	36	28	from	from	ADP
cet-13710	36	29	reservoir	reservoir	PROPN
cet-13710	36	30	to	to	ADP
cet-13710	36	31	ambient	ambient	ADJ
cet-13710	36	32	conditions	condition	NOUN
cet-13710	36	33	.	.	PUNCT
cet-13710	37	1	the	the	DET
cet-13710	37	2	distributions	distribution	NOUN
cet-13710	37	3	for	for	ADP
cet-13710	37	4	concentration	concentration	NOUN
cet-13710	37	5	and	and	CCONJ
cet-13710	37	6	velocity	velocity	NOUN
cet-13710	37	7	inside	inside	ADP
cet-13710	37	8	the	the	DET
cet-13710	37	9	jet	jet	NOUN
cet-13710	37	10	can	can	AUX
cet-13710	37	11	be	be	AUX
cet-13710	37	12	calculated	calculate	VERB
cet-13710	37	13	using	use	VERB
cet-13710	37	14	equations	equation	NOUN
cet-13710	37	15	1	1	NUM
cet-13710	37	16	-	-	SYM
cet-13710	37	17	4	4	NUM
cet-13710	37	18	.	.	PUNCT
cet-13710	38	1	releases	release	NOUN
cet-13710	38	2	are	be	AUX
cet-13710	38	3	under	under	ADP
cet-13710	38	4	expanded	expand	VERB
cet-13710	38	5	when	when	SCONJ
cet-13710	38	6	the	the	DET
cet-13710	38	7	pressure	pressure	NOUN
cet-13710	38	8	at	at	ADP
cet-13710	38	9	the	the	DET
cet-13710	38	10	release	release	NOUN
cet-13710	38	11	location	location	NOUN
cet-13710	38	12	is	be	AUX
cet-13710	38	13	still	still	ADV
cet-13710	38	14	higher	high	ADJ
cet-13710	38	15	than	than	ADP
cet-13710	38	16	the	the	DET
cet-13710	38	17	ambient	ambient	ADJ
cet-13710	38	18	pressure	pressure	NOUN
cet-13710	38	19	;	;	PUNCT
cet-13710	38	20	as	as	ADP
cet-13710	38	21	a	a	DET
cet-13710	38	22	rule	rule	NOUN
cet-13710	38	23	of	of	ADP
cet-13710	38	24	thumb	thumb	NOUN
cet-13710	38	25	,	,	PUNCT
cet-13710	38	26	this	this	PRON
cet-13710	38	27	takes	take	VERB
cet-13710	38	28	place	place	NOUN
cet-13710	38	29	for	for	ADP
cet-13710	38	30	reservoir	reservoir	NOUN
cet-13710	38	31	pressures	pressure	NOUN
cet-13710	38	32	higher	high	ADJ
cet-13710	38	33	than	than	ADP
cet-13710	38	34	2bar	2bar	PROPN
cet-13710	38	35	.	.	PUNCT
cet-13710	39	1	the	the	DET
cet-13710	39	2	flow	flow	NOUN
cet-13710	39	3	is	be	AUX
cet-13710	39	4	choked	choke	VERB
cet-13710	39	5	at	at	ADP
cet-13710	39	6	the	the	DET
cet-13710	39	7	hole	hole	NOUN
cet-13710	39	8	location	location	NOUN
cet-13710	39	9	(	(	PUNCT
cet-13710	39	10	at	at	ADP
cet-13710	39	11	sonic	sonic	ADJ
cet-13710	39	12	speed	speed	NOUN
cet-13710	39	13	,	,	PUNCT
cet-13710	39	14	mach	mach	NOUN
cet-13710	39	15	number	number	NOUN
cet-13710	39	16	equals	equal	VERB
cet-13710	39	17	1	1	NUM
cet-13710	39	18	)	)	PUNCT
cet-13710	39	19	and	and	CCONJ
cet-13710	39	20	expands	expand	VERB
cet-13710	39	21	further	far	ADV
cet-13710	39	22	to	to	ADP
cet-13710	39	23	ambient	ambient	ADJ
cet-13710	39	24	pressure	pressure	NOUN
cet-13710	39	25	at	at	ADP
cet-13710	39	26	supersonic	supersonic	ADJ
cet-13710	39	27	speed	speed	NOUN
cet-13710	39	28	.	.	PUNCT
cet-13710	40	1	due	due	ADP
cet-13710	40	2	to	to	ADP
cet-13710	40	3	compression	compression	VERB
cet-13710	40	4	waves	wave	NOUN
cet-13710	40	5	from	from	ADP
cet-13710	40	6	the	the	DET
cet-13710	40	7	interaction	interaction	NOUN
cet-13710	40	8	of	of	ADP
cet-13710	40	9	the	the	DET
cet-13710	40	10	strongly	strongly	ADV
cet-13710	40	11	diverging	diverging	ADJ
cet-13710	40	12	flow	flow	NOUN
cet-13710	40	13	with	with	ADP
cet-13710	40	14	the	the	DET
cet-13710	40	15	ambient	ambient	ADJ
cet-13710	40	16	flow	flow	NOUN
cet-13710	40	17	,	,	PUNCT
cet-13710	40	18	the	the	DET
cet-13710	40	19	flow	flow	NOUN
cet-13710	40	20	is	be	AUX
cet-13710	40	21	recompressed	recompresse	VERB
cet-13710	40	22	through	through	ADP
cet-13710	40	23	a	a	DET
cet-13710	40	24	normal	normal	ADJ
cet-13710	40	25	shock	shock	NOUN
cet-13710	40	26	to	to	ADP
cet-13710	40	27	subsonic	subsonic	ADJ
cet-13710	40	28	flow	flow	NOUN
cet-13710	40	29	at	at	ADP
cet-13710	40	30	the	the	DET
cet-13710	40	31	first	first	ADJ
cet-13710	40	32	mach	mach	NOUN
cet-13710	40	33	disk	disk	NOUN
cet-13710	40	34	.	.	PUNCT
cet-13710	41	1	depending	depend	VERB
cet-13710	41	2	on	on	ADP
cet-13710	41	3	the	the	DET
cet-13710	41	4	total	total	ADJ
cet-13710	41	5	pressure	pressure	NOUN
cet-13710	41	6	,	,	PUNCT
cet-13710	41	7	multiple	multiple	ADJ
cet-13710	41	8	expansions	expansion	NOUN
cet-13710	41	9	/	/	SYM
cet-13710	41	10	compressions	compression	NOUN
cet-13710	41	11	through	through	ADP
cet-13710	41	12	normal	normal	ADJ
cet-13710	41	13	shocks	shock	NOUN
cet-13710	41	14	take	take	VERB
cet-13710	41	15	place	place	NOUN
cet-13710	41	16	(	(	PUNCT
cet-13710	41	17	shock	shock	NOUN
cet-13710	41	18	train	train	NOUN
cet-13710	41	19	)	)	PUNCT
cet-13710	41	20	until	until	SCONJ
cet-13710	41	21	the	the	DET
cet-13710	41	22	flow	flow	NOUN
cet-13710	41	23	passes	pass	VERB
cet-13710	41	24	a	a	DET
cet-13710	41	25	final	final	ADJ
cet-13710	41	26	normal	normal	ADJ
cet-13710	41	27	shock	shock	NOUN
cet-13710	41	28	at	at	ADP
cet-13710	41	29	mach	mach	NOUN
cet-13710	41	30	1	1	NUM
cet-13710	41	31	(	(	PUNCT
cet-13710	41	32	figure	figure	VERB
cet-13710	41	33	1a	1a	NOUN
cet-13710	41	34	and	and	CCONJ
cet-13710	41	35	b	b	X
cet-13710	41	36	)	)	PUNCT
cet-13710	41	37	.	.	PUNCT
cet-13710	42	1	since	since	SCONJ
cet-13710	42	2	the	the	DET
cet-13710	42	3	total	total	ADJ
cet-13710	42	4	pressure	pressure	NOUN
cet-13710	42	5	in	in	ADP
cet-13710	42	6	the	the	DET
cet-13710	42	7	flow	flow	NOUN
cet-13710	42	8	is	be	AUX
cet-13710	42	9	still	still	ADV
cet-13710	42	10	higher	high	ADJ
cet-13710	42	11	than	than	ADP
cet-13710	42	12	the	the	DET
cet-13710	42	13	equivalent	equivalent	NOUN
cet-13710	42	14	(	(	PUNCT
cet-13710	42	15	or	or	CCONJ
cet-13710	42	16	sometimes	sometimes	ADV
cet-13710	42	17	also	also	ADV
cet-13710	42	18	notional	notional	ADJ
cet-13710	42	19	or	or	CCONJ
cet-13710	42	20	fictious	fictious	ADJ
cet-13710	42	21	)	)	PUNCT
cet-13710	42	22	,	,	PUNCT
cet-13710	42	23	source	source	NOUN
cet-13710	42	24	condition	condition	NOUN
cet-13710	42	25	has	have	VERB
cet-13710	42	26	to	to	PART
cet-13710	42	27	be	be	AUX
cet-13710	42	28	calculated	calculate	VERB
cet-13710	42	29	as	as	SCONJ
cet-13710	42	30	the	the	DET
cet-13710	42	31	flow	flow	NOUN
cet-13710	42	32	will	will	AUX
cet-13710	42	33	further	far	ADV
cet-13710	42	34	expand	expand	VERB
cet-13710	42	35	outside	outside	ADP
cet-13710	42	36	the	the	DET
cet-13710	42	37	vessel	vessel	NOUN
cet-13710	42	38	leading	lead	VERB
cet-13710	42	39	to	to	ADP
cet-13710	42	40	a	a	DET
cet-13710	42	41	larger	large	ADJ
cet-13710	42	42	release	release	NOUN
cet-13710	42	43	diameter	diameter	NOUN
cet-13710	42	44	and	and	CCONJ
cet-13710	42	45	different	different	ADJ
cet-13710	42	46	flow	flow	NOUN
cet-13710	42	47	conditions	condition	NOUN
cet-13710	42	48	than	than	ADP
cet-13710	42	49	at	at	ADP
cet-13710	42	50	the	the	DET
cet-13710	42	51	original	original	ADJ
cet-13710	42	52	hole	hole	NOUN
cet-13710	42	53	size	size	NOUN
cet-13710	42	54	.	.	PUNCT
cet-13710	43	1	in	in	ADP
cet-13710	43	2	the	the	DET
cet-13710	43	3	past	past	NOUN
cet-13710	43	4	,	,	PUNCT
cet-13710	43	5	many	many	ADJ
cet-13710	43	6	different	different	ADJ
cet-13710	43	7	approaches	approach	NOUN
cet-13710	43	8	have	have	AUX
cet-13710	43	9	been	be	AUX
cet-13710	43	10	developed	develop	VERB
cet-13710	43	11	to	to	PART
cet-13710	43	12	calculate	calculate	VERB
cet-13710	43	13	equivalent	equivalent	ADJ
cet-13710	43	14	(	(	PUNCT
cet-13710	43	15	also	also	ADV
cet-13710	43	16	called	call	VERB
cet-13710	43	17	notional	notional	ADJ
cet-13710	43	18	or	or	CCONJ
cet-13710	43	19	fictious	fictious	ADJ
cet-13710	43	20	)	)	PUNCT
cet-13710	43	21	source	source	NOUN
cet-13710	43	22	conditions	condition	NOUN
cet-13710	43	23	to	to	PART
cet-13710	43	24	use	use	VERB
cet-13710	43	25	the	the	DET
cet-13710	43	26	jet	jet	NOUN
cet-13710	43	27	models	model	NOUN
cet-13710	43	28	at	at	ADP
cet-13710	43	29	under	under	ADP
cet-13710	43	30	expanded	expand	VERB
cet-13710	43	31	conditions	condition	NOUN
cet-13710	43	32	.	.	PUNCT
cet-13710	44	1	most	most	ADJ
cet-13710	44	2	of	of	ADP
cet-13710	44	3	them	they	PRON
cet-13710	44	4	have	have	AUX
cet-13710	44	5	been	be	AUX
cet-13710	44	6	based	base	VERB
cet-13710	44	7	on	on	ADP
cet-13710	44	8	sonic	sonic	ADJ
cet-13710	44	9	flow	flow	NOUN
cet-13710	44	10	condition	condition	NOUN
cet-13710	44	11	(	(	PUNCT
cet-13710	44	12	expanded	expand	VERB
cet-13710	44	13	flow	flow	NOUN
cet-13710	44	14	)	)	PUNCT
cet-13710	44	15	at	at	ADP
cet-13710	44	16	the	the	DET
cet-13710	44	17	equivalent	equivalent	ADJ
cet-13710	44	18	release	release	NOUN
cet-13710	44	19	position	position	NOUN
cet-13710	44	20	assuming	assume	VERB
cet-13710	44	21	conservation	conservation	NOUN
cet-13710	44	22	of	of	ADP
cet-13710	44	23	mass	mass	PROPN
cet-13710	44	24	,	,	PUNCT
cet-13710	44	25	26	26	NUM
cet-13710	44	26	momentum	momentum	NOUN
cet-13710	44	27	and/or	and/or	CCONJ
cet-13710	44	28	energy	energy	NOUN
cet-13710	44	29	.	.	PUNCT
cet-13710	45	1	this	this	PRON
cet-13710	45	2	equals	equal	VERB
cet-13710	45	3	the	the	DET
cet-13710	45	4	flow	flow	NOUN
cet-13710	45	5	condition	condition	NOUN
cet-13710	45	6	at	at	ADP
cet-13710	45	7	the	the	DET
cet-13710	45	8	final	final	ADJ
cet-13710	45	9	normal	normal	ADJ
cet-13710	45	10	shock	shock	NOUN
cet-13710	45	11	at	at	ADP
cet-13710	45	12	the	the	DET
cet-13710	45	13	end	end	NOUN
cet-13710	45	14	of	of	ADP
cet-13710	45	15	the	the	DET
cet-13710	45	16	shock	shock	NOUN
cet-13710	45	17	train	train	NOUN
cet-13710	45	18	.	.	PUNCT
cet-13710	46	1	for	for	ADP
cet-13710	46	2	highly	highly	ADV
cet-13710	46	3	under	under	ADP
cet-13710	46	4	expanded	expand	VERB
cet-13710	46	5	jets	jet	NOUN
cet-13710	46	6	,	,	PUNCT
cet-13710	46	7	some	some	DET
cet-13710	46	8	authors	author	NOUN
cet-13710	46	9	have	have	AUX
cet-13710	46	10	been	be	AUX
cet-13710	46	11	taken	take	VERB
cet-13710	46	12	the	the	DET
cet-13710	46	13	(	(	PUNCT
cet-13710	46	14	subsonic	subsonic	ADJ
cet-13710	46	15	)	)	PUNCT
cet-13710	46	16	condition	condition	NOUN
cet-13710	46	17	behind	behind	ADP
cet-13710	46	18	the	the	DET
cet-13710	46	19	normal	normal	ADJ
cet-13710	46	20	shock	shock	NOUN
cet-13710	46	21	of	of	ADP
cet-13710	46	22	the	the	DET
cet-13710	46	23	first	first	ADJ
cet-13710	46	24	mach	mach	NOUN
cet-13710	46	25	disk	disk	NOUN
cet-13710	46	26	.	.	PUNCT
cet-13710	47	1	an	an	DET
cet-13710	47	2	overview	overview	NOUN
cet-13710	47	3	of	of	ADP
cet-13710	47	4	different	different	ADJ
cet-13710	47	5	methods	method	NOUN
cet-13710	47	6	has	have	AUX
cet-13710	47	7	been	be	AUX
cet-13710	47	8	given	give	VERB
cet-13710	47	9	in	in	ADP
cet-13710	47	10	errore	errore	PROPN
cet-13710	47	11	.	.	PUNCT
cet-13710	47	12	l'origine	l'origine	PROPN
cet-13710	47	13	riferimento	riferimento	PROPN
cet-13710	47	14	non	non	PROPN
cet-13710	47	15	è	è	PROPN
cet-13710	47	16	stata	stata	PROPN
cet-13710	47	17	trovata	trovata	PROPN
cet-13710	47	18	..	..	PUNCT
cet-13710	47	19	investigating	investigate	VERB
cet-13710	47	20	different	different	ADJ
cet-13710	47	21	equivalent	equivalent	ADJ
cet-13710	47	22	source	source	NOUN
cet-13710	47	23	condition	condition	NOUN
cet-13710	47	24	models	model	NOUN
cet-13710	47	25	,	,	PUNCT
cet-13710	47	26	it	it	PRON
cet-13710	47	27	was	be	AUX
cet-13710	47	28	observed	observe	VERB
cet-13710	47	29	that	that	SCONJ
cet-13710	47	30	the	the	DET
cet-13710	47	31	agreement	agreement	NOUN
cet-13710	47	32	of	of	ADP
cet-13710	47	33	the	the	DET
cet-13710	47	34	turbulent	turbulent	ADV
cet-13710	47	35	free	free	ADJ
cet-13710	47	36	jet	jet	NOUN
cet-13710	47	37	model	model	NOUN
cet-13710	47	38	was	be	AUX
cet-13710	47	39	not	not	PART
cet-13710	47	40	satisfying	satisfy	VERB
cet-13710	47	41	for	for	ADP
cet-13710	47	42	the	the	DET
cet-13710	47	43	full	full	ADJ
cet-13710	47	44	range	range	NOUN
cet-13710	47	45	from	from	ADP
cet-13710	47	46	expanded	expand	VERB
cet-13710	47	47	to	to	ADP
cet-13710	47	48	highly	highly	ADV
cet-13710	47	49	under	under	ADP
cet-13710	47	50	expanded	expand	VERB
cet-13710	47	51	conditions	condition	NOUN
cet-13710	47	52	without	without	ADP
cet-13710	47	53	adding	add	VERB
cet-13710	47	54	corrections	correction	NOUN
cet-13710	47	55	for	for	ADP
cet-13710	47	56	the	the	DET
cet-13710	47	57	origin	origin	NOUN
cet-13710	47	58	of	of	ADP
cet-13710	47	59	the	the	DET
cet-13710	47	60	release	release	NOUN
cet-13710	47	61	or	or	CCONJ
cet-13710	47	62	modifying	modify	VERB
cet-13710	47	63	the	the	DET
cet-13710	47	64	model	model	NOUN
cet-13710	47	65	constants	constant	NOUN
cet-13710	47	66	(	(	PUNCT
cet-13710	47	67	see	see	VERB
cet-13710	47	68	table	table	NOUN
cet-13710	47	69	1	1	NUM
cet-13710	47	70	)	)	PUNCT
cet-13710	47	71	.	.	PUNCT
cet-13710	48	1	corrections	correction	NOUN
cet-13710	48	2	like	like	ADP
cet-13710	48	3	a	a	DET
cet-13710	48	4	shift	shift	NOUN
cet-13710	48	5	the	the	DET
cet-13710	48	6	origin	origin	NOUN
cet-13710	48	7	are	be	AUX
cet-13710	48	8	included	include	VERB
cet-13710	48	9	in	in	ADP
cet-13710	48	10	some	some	DET
cet-13710	48	11	models	model	NOUN
cet-13710	48	12	but	but	CCONJ
cet-13710	48	13	are	be	AUX
cet-13710	48	14	usually	usually	ADV
cet-13710	48	15	fitted	fit	VERB
cet-13710	48	16	to	to	ADP
cet-13710	48	17	experimental	experimental	ADJ
cet-13710	48	18	data	datum	NOUN
cet-13710	48	19	,	,	PUNCT
cet-13710	48	20	are	be	AUX
cet-13710	48	21	pressure	pressure	NOUN
cet-13710	48	22	dependent	dependent	ADJ
cet-13710	48	23	and	and	CCONJ
cet-13710	48	24	usually	usually	ADV
cet-13710	48	25	require	require	VERB
cet-13710	48	26	different	different	ADJ
cet-13710	48	27	corrections	correction	NOUN
cet-13710	48	28	for	for	ADP
cet-13710	48	29	velocity	velocity	NOUN
cet-13710	48	30	and	and	CCONJ
cet-13710	48	31	concentration	concentration	NOUN
cet-13710	48	32	.	.	PUNCT
cet-13710	49	1	therefore	therefore	ADV
cet-13710	49	2	,	,	PUNCT
cet-13710	49	3	a	a	DET
cet-13710	49	4	different	different	ADJ
cet-13710	49	5	approach	approach	NOUN
cet-13710	49	6	was	be	AUX
cet-13710	49	7	developed	develop	VERB
cet-13710	49	8	for	for	ADP
cet-13710	49	9	equivalent	equivalent	ADJ
cet-13710	49	10	source	source	NOUN
cet-13710	49	11	conditions	condition	NOUN
cet-13710	49	12	:	:	PUNCT
cet-13710	49	13	figure	figure	NOUN
cet-13710	49	14	1a	1a	PROPN
cet-13710	49	15	(	(	PUNCT
cet-13710	49	16	left	leave	VERB
cet-13710	49	17	):	):	PUNCT
cet-13710	49	18	first	first	ADJ
cet-13710	49	19	shock	shock	NOUN
cet-13710	49	20	cell	cell	NOUN
cet-13710	49	21	in	in	ADP
cet-13710	49	22	highly	highly	ADV
cet-13710	49	23	under	under	ADP
cet-13710	49	24	expanded	expand	VERB
cet-13710	49	25	jet	jet	NOUN
cet-13710	49	26	(	(	PUNCT
cet-13710	49	27	christ	christ	PROPN
cet-13710	49	28	1966	1966	NUM
cet-13710	49	29	)	)	PUNCT
cet-13710	49	30	;	;	PUNCT
cet-13710	49	31	1b	1b	NUM
cet-13710	49	32	(	(	PUNCT
cet-13710	49	33	right	right	ADV
cet-13710	49	34	):	):	PUNCT
cet-13710	49	35	shock	shock	NOUN
cet-13710	49	36	train	train	NOUN
cet-13710	49	37	in	in	ADP
cet-13710	49	38	under	under	ADP
cet-13710	49	39	expanded	expand	VERB
cet-13710	49	40	jet	jet	NOUN
cet-13710	49	41	,	,	PUNCT
cet-13710	49	42	taken	take	VERB
cet-13710	49	43	from	from	ADP
cet-13710	49	44	(	(	PUNCT
cet-13710	49	45	donaldson	donaldson	PROPN
cet-13710	49	46	1971	1971	NUM
cet-13710	49	47	)	)	PUNCT
cet-13710	49	48	at	at	ADP
cet-13710	49	49	highly	highly	ADV
cet-13710	49	50	under	under	ADP
cet-13710	49	51	expanded	expand	VERB
cet-13710	49	52	conditions	condition	NOUN
cet-13710	49	53	,	,	PUNCT
cet-13710	49	54	the	the	DET
cet-13710	49	55	shock	shock	NOUN
cet-13710	49	56	train	train	NOUN
cet-13710	49	57	(	(	PUNCT
cet-13710	49	58	between	between	ADP
cet-13710	49	59	position	position	NOUN
cet-13710	49	60	2	2	NUM
cet-13710	49	61	and	and	CCONJ
cet-13710	49	62	3	3	NUM
cet-13710	49	63	in	in	ADP
cet-13710	49	64	figure	figure	NOUN
cet-13710	49	65	1b	1b	NUM
cet-13710	49	66	)	)	PUNCT
cet-13710	49	67	can	can	AUX
cet-13710	49	68	be	be	AUX
cet-13710	49	69	quite	quite	ADV
cet-13710	49	70	long	long	ADJ
cet-13710	49	71	since	since	SCONJ
cet-13710	49	72	the	the	DET
cet-13710	49	73	flow	flow	NOUN
cet-13710	49	74	has	have	VERB
cet-13710	49	75	to	to	PART
cet-13710	49	76	dissipate	dissipate	VERB
cet-13710	49	77	the	the	DET
cet-13710	49	78	total	total	ADJ
cet-13710	49	79	pressure	pressure	NOUN
cet-13710	49	80	to	to	ADP
cet-13710	49	81	ambient	ambient	ADJ
cet-13710	49	82	conditions	condition	NOUN
cet-13710	49	83	.	.	PUNCT
cet-13710	50	1	compared	compare	VERB
cet-13710	50	2	with	with	ADP
cet-13710	50	3	the	the	DET
cet-13710	50	4	release	release	NOUN
cet-13710	50	5	diameter	diameter	NOUN
cet-13710	50	6	,	,	PUNCT
cet-13710	50	7	the	the	DET
cet-13710	50	8	shock	shock	NOUN
cet-13710	50	9	train	train	NOUN
cet-13710	50	10	can	can	AUX
cet-13710	50	11	be	be	AUX
cet-13710	50	12	much	much	ADV
cet-13710	50	13	longer	long	ADJ
cet-13710	50	14	(	(	PUNCT
cet-13710	50	15	>	>	SYM
cet-13710	50	16	30	30	NUM
cet-13710	50	17	-	-	SYM
cet-13710	50	18	50	50	NUM
cet-13710	50	19	diameter	diameter	NOUN
cet-13710	50	20	)	)	PUNCT
cet-13710	50	21	as	as	SCONJ
cet-13710	50	22	shown	show	VERB
cet-13710	50	23	by	by	ADP
cet-13710	50	24	bonelli	bonelli	PROPN
cet-13710	50	25	(	(	PUNCT
cet-13710	50	26	2013	2013	NUM
cet-13710	50	27	)	)	PUNCT
cet-13710	50	28	for	for	ADP
cet-13710	50	29	hydrogen	hydrogen	NOUN
cet-13710	50	30	jets	jet	NOUN
cet-13710	50	31	at	at	ADP
cet-13710	50	32	a	a	DET
cet-13710	50	33	pressure	pressure	NOUN
cet-13710	50	34	ratio	ratio	NOUN
cet-13710	50	35	of	of	ADP
cet-13710	50	36	15	15	NUM
cet-13710	50	37	.	.	PUNCT
cet-13710	51	1	entrainment	entrainment	NOUN
cet-13710	51	2	at	at	ADP
cet-13710	51	3	the	the	DET
cet-13710	51	4	outer	outer	ADJ
cet-13710	51	5	shear	shear	NOUN
cet-13710	51	6	layers	layer	NOUN
cet-13710	51	7	will	will	AUX
cet-13710	51	8	already	already	ADV
cet-13710	51	9	take	take	VERB
cet-13710	51	10	place	place	NOUN
cet-13710	51	11	before	before	SCONJ
cet-13710	51	12	the	the	DET
cet-13710	51	13	flow	flow	NOUN
cet-13710	51	14	is	be	AUX
cet-13710	51	15	fully	fully	ADV
cet-13710	51	16	expanded	expand	VERB
cet-13710	51	17	to	to	ADP
cet-13710	51	18	ambient	ambient	ADJ
cet-13710	51	19	pressure	pressure	NOUN
cet-13710	51	20	.	.	PUNCT
cet-13710	52	1	therefore	therefore	ADV
cet-13710	52	2	,	,	PUNCT
cet-13710	52	3	the	the	DET
cet-13710	52	4	new	new	ADJ
cet-13710	52	5	model	model	NOUN
cet-13710	52	6	in	in	ADP
cet-13710	52	7	effects	effect	NOUN
cet-13710	52	8	v12	v12	VERB
cet-13710	52	9	expands	expand	VERB
cet-13710	52	10	the	the	DET
cet-13710	52	11	flow	flow	NOUN
cet-13710	52	12	to	to	ADP
cet-13710	52	13	the	the	DET
cet-13710	52	14	condition	condition	NOUN
cet-13710	52	15	in	in	ADP
cet-13710	52	16	front	front	NOUN
cet-13710	52	17	of	of	ADP
cet-13710	52	18	the	the	DET
cet-13710	52	19	first	first	ADJ
cet-13710	52	20	mach	mach	NOUN
cet-13710	52	21	disk	disk	NOUN
cet-13710	52	22	where	where	SCONJ
cet-13710	52	23	the	the	DET
cet-13710	52	24	flow	flow	NOUN
cet-13710	52	25	is	be	AUX
cet-13710	52	26	fully	fully	ADV
cet-13710	52	27	expanded	expand	VERB
cet-13710	52	28	to	to	ADP
cet-13710	52	29	ambient	ambient	ADJ
cet-13710	52	30	pressure	pressure	NOUN
cet-13710	52	31	(	(	PUNCT
cet-13710	52	32	position	position	NOUN
cet-13710	52	33	2	2	NUM
cet-13710	52	34	in	in	ADP
cet-13710	52	35	figure	figure	NOUN
cet-13710	52	36	1b	1b	NUM
cet-13710	52	37	)	)	PUNCT
cet-13710	52	38	;	;	PUNCT
cet-13710	52	39	here	here	ADV
cet-13710	52	40	the	the	DET
cet-13710	52	41	equivalent	equivalent	ADJ
cet-13710	52	42	source	source	NOUN
cet-13710	52	43	is	be	AUX
cet-13710	52	44	located	locate	VERB
cet-13710	52	45	.	.	PUNCT
cet-13710	53	1	the	the	DET
cet-13710	53	2	corresponding	correspond	VERB
cet-13710	53	3	diameter	diameter	NOUN
cet-13710	53	4	obtained	obtain	VERB
cet-13710	53	5	by	by	ADP
cet-13710	53	6	conservation	conservation	NOUN
cet-13710	53	7	of	of	ADP
cet-13710	53	8	mass	mass	NOUN
cet-13710	53	9	serves	serve	VERB
cet-13710	53	10	as	as	ADP
cet-13710	53	11	equivalent	equivalent	ADJ
cet-13710	53	12	source	source	NOUN
cet-13710	53	13	diameter	diameter	NOUN
cet-13710	53	14	.	.	PUNCT
cet-13710	54	1	usually	usually	ADV
cet-13710	54	2	,	,	PUNCT
cet-13710	54	3	at	at	ADP
cet-13710	54	4	highly	highly	ADV
cet-13710	54	5	under	under	ADP
cet-13710	54	6	expanded	expand	VERB
cet-13710	54	7	conditions	condition	NOUN
cet-13710	54	8	,	,	PUNCT
cet-13710	54	9	this	this	PRON
cet-13710	54	10	corresponds	correspond	VERB
cet-13710	54	11	to	to	ADP
cet-13710	54	12	a	a	DET
cet-13710	54	13	static	static	ADJ
cet-13710	54	14	pressure	pressure	NOUN
cet-13710	54	15	of	of	ADP
cet-13710	54	16	1	1	NUM
cet-13710	54	17	bar	bar	NOUN
cet-13710	54	18	,	,	PUNCT
cet-13710	54	19	a	a	DET
cet-13710	54	20	mach	mach	NOUN
cet-13710	54	21	number	number	NOUN
cet-13710	54	22	much	much	ADV
cet-13710	54	23	larger	large	ADJ
cet-13710	54	24	than	than	ADP
cet-13710	54	25	one	one	NUM
cet-13710	54	26	and	and	CCONJ
cet-13710	54	27	a	a	DET
cet-13710	54	28	static	static	ADJ
cet-13710	54	29	temperature	temperature	NOUN
cet-13710	54	30	lower	lower	ADV
cet-13710	54	31	compared	compare	VERB
cet-13710	54	32	to	to	ADP
cet-13710	54	33	the	the	DET
cet-13710	54	34	one	one	NOUN
cet-13710	54	35	at	at	ADP
cet-13710	54	36	the	the	DET
cet-13710	54	37	release	release	NOUN
cet-13710	54	38	location	location	NOUN
cet-13710	54	39	(	(	PUNCT
cet-13710	54	40	position	position	NOUN
cet-13710	54	41	1	1	NUM
cet-13710	54	42	in	in	ADP
cet-13710	54	43	figure	figure	NOUN
cet-13710	54	44	1b	1b	NUM
cet-13710	54	45	)	)	PUNCT
cet-13710	54	46	.	.	PUNCT
cet-13710	55	1	although	although	SCONJ
cet-13710	55	2	the	the	DET
cet-13710	55	3	static	static	ADJ
cet-13710	55	4	pressure	pressure	NOUN
cet-13710	55	5	is	be	AUX
cet-13710	55	6	at	at	ADP
cet-13710	55	7	ambient	ambient	ADJ
cet-13710	55	8	pressure	pressure	NOUN
cet-13710	55	9	(	(	PUNCT
cet-13710	55	10	1bar	1bar	NOUN
cet-13710	55	11	)	)	PUNCT
cet-13710	55	12	,	,	PUNCT
cet-13710	55	13	the	the	DET
cet-13710	55	14	total	total	ADJ
cet-13710	55	15	pressure	pressure	NOUN
cet-13710	55	16	at	at	ADP
cet-13710	55	17	the	the	DET
cet-13710	55	18	equivalent	equivalent	ADJ
cet-13710	55	19	source	source	NOUN
cet-13710	55	20	is	be	AUX
cet-13710	55	21	still	still	ADV
cet-13710	55	22	higher	high	ADJ
cet-13710	55	23	than	than	ADP
cet-13710	55	24	the	the	DET
cet-13710	55	25	ambient	ambient	ADJ
cet-13710	55	26	pressure	pressure	NOUN
cet-13710	55	27	since	since	SCONJ
cet-13710	55	28	the	the	DET
cet-13710	55	29	expansion	expansion	NOUN
cet-13710	55	30	will	will	AUX
cet-13710	55	31	take	take	VERB
cet-13710	55	32	place	place	NOUN
cet-13710	55	33	further	far	ADV
cet-13710	55	34	downstream	downstream	ADV
cet-13710	55	35	by	by	ADP
cet-13710	55	36	the	the	DET
cet-13710	55	37	shock	shock	NOUN
cet-13710	55	38	train	train	NOUN
cet-13710	55	39	.	.	PUNCT
cet-13710	56	1	as	as	SCONJ
cet-13710	56	2	mentioned	mention	VERB
cet-13710	56	3	before	before	ADV
cet-13710	56	4	,	,	PUNCT
cet-13710	56	5	the	the	DET
cet-13710	56	6	entrainment	entrainment	NOUN
cet-13710	56	7	of	of	ADP
cet-13710	56	8	ambient	ambient	ADJ
cet-13710	56	9	air	air	NOUN
cet-13710	56	10	also	also	ADV
cet-13710	56	11	takes	take	VERB
cet-13710	56	12	place	place	NOUN
cet-13710	56	13	at	at	ADP
cet-13710	56	14	the	the	DET
cet-13710	56	15	shear	shear	NOUN
cet-13710	56	16	layers	layer	NOUN
cet-13710	56	17	in	in	ADP
cet-13710	56	18	the	the	DET
cet-13710	56	19	shock	shock	NOUN
cet-13710	56	20	train	train	NOUN
cet-13710	56	21	region	region	NOUN
cet-13710	56	22	,	,	PUNCT
cet-13710	56	23	in	in	ADP
cet-13710	56	24	particular	particular	ADJ
cet-13710	56	25	for	for	ADP
cet-13710	56	26	highly	highly	ADV
cet-13710	56	27	under	under	ADP
cet-13710	56	28	expanded	expand	VERB
cet-13710	56	29	flow	flow	NOUN
cet-13710	56	30	.	.	PUNCT
cet-13710	57	1	since	since	SCONJ
cet-13710	57	2	the	the	DET
cet-13710	57	3	equivalent	equivalent	ADJ
cet-13710	57	4	source	source	NOUN
cet-13710	57	5	location	location	NOUN
cet-13710	57	6	in	in	ADP
cet-13710	57	7	front	front	NOUN
cet-13710	57	8	of	of	ADP
cet-13710	57	9	the	the	DET
cet-13710	57	10	shock	shock	NOUN
cet-13710	57	11	train	train	NOUN
cet-13710	57	12	,	,	PUNCT
cet-13710	57	13	this	this	DET
cet-13710	57	14	effect	effect	NOUN
cet-13710	57	15	will	will	AUX
cet-13710	57	16	implicitly	implicitly	ADV
cet-13710	57	17	be	be	AUX
cet-13710	57	18	taken	take	VERB
cet-13710	57	19	into	into	ADP
cet-13710	57	20	account	account	NOUN
cet-13710	57	21	by	by	ADP
cet-13710	57	22	the	the	DET
cet-13710	57	23	new	new	ADJ
cet-13710	57	24	model	model	NOUN
cet-13710	57	25	applied	apply	VERB
cet-13710	57	26	to	to	ADP
cet-13710	57	27	the	the	DET
cet-13710	57	28	turbulent	turbulent	ADV
cet-13710	57	29	free	free	ADJ
cet-13710	57	30	jet	jet	NOUN
cet-13710	57	31	model	model	NOUN
cet-13710	57	32	.	.	PUNCT
cet-13710	58	1	based	base	VERB
cet-13710	58	2	on	on	ADP
cet-13710	58	3	this	this	DET
cet-13710	58	4	hypothesis	hypothesis	NOUN
cet-13710	58	5	,	,	PUNCT
cet-13710	58	6	the	the	DET
cet-13710	58	7	equivalent	equivalent	ADJ
cet-13710	58	8	source	source	NOUN
cet-13710	58	9	conditions	condition	NOUN
cet-13710	58	10	of	of	ADP
cet-13710	58	11	the	the	DET
cet-13710	58	12	new	new	ADJ
cet-13710	58	13	model	model	NOUN
cet-13710	58	14	are	be	AUX
cet-13710	58	15	given	give	VERB
cet-13710	58	16	by	by	ADP
cet-13710	58	17	a	a	DET
cet-13710	58	18	consistent	consistent	ADJ
cet-13710	58	19	set	set	NOUN
cet-13710	58	20	of	of	ADP
cet-13710	58	21	conditions	condition	NOUN
cet-13710	58	22	(	(	PUNCT
cet-13710	58	23	position	position	NOUN
cet-13710	58	24	2	2	NUM
cet-13710	58	25	in	in	ADP
cet-13710	58	26	figure	figure	NOUN
cet-13710	58	27	1b	1b	NUM
cet-13710	58	28	)	)	PUNCT
cet-13710	58	29	;	;	PUNCT
cet-13710	58	30	the	the	DET
cet-13710	58	31	equations	equation	NOUN
cet-13710	58	32	are	be	AUX
cet-13710	58	33	given	give	VERB
cet-13710	58	34	applying	apply	VERB
cet-13710	58	35	the	the	DET
cet-13710	58	36	ideal	ideal	ADJ
cet-13710	58	37	gas	gas	NOUN
cet-13710	58	38	law	law	NOUN
cet-13710	58	39	.	.	PUNCT
cet-13710	59	1	the	the	DET
cet-13710	59	2	equivalent	equivalent	ADJ
cet-13710	59	3	density	density	NOUN
cet-13710	59	4	which	which	PRON
cet-13710	59	5	is	be	AUX
cet-13710	59	6	the	the	DET
cet-13710	59	7	density	density	NOUN
cet-13710	59	8	at	at	ADP
cet-13710	59	9	the	the	DET
cet-13710	59	10	new	new	ADJ
cet-13710	59	11	expanded	expand	VERB
cet-13710	59	12	position	position	NOUN
cet-13710	59	13	(	(	PUNCT
cet-13710	59	14	position	position	NOUN
cet-13710	59	15	2	2	NUM
cet-13710	59	16	in	in	ADP
cet-13710	59	17	figure	figure	NOUN
cet-13710	59	18	1b	1b	NUM
cet-13710	59	19	)	)	PUNCT
cet-13710	59	20	can	can	AUX
cet-13710	59	21	be	be	AUX
cet-13710	59	22	calculated	calculate	VERB
cet-13710	59	23	directly	directly	ADV
cet-13710	59	24	by	by	ADP
cet-13710	59	25	an	an	DET
cet-13710	59	26	isentropic	isentropic	ADJ
cet-13710	59	27	expansion	expansion	NOUN
cet-13710	59	28	from	from	ADP
cet-13710	59	29	the	the	DET
cet-13710	59	30	reservoir	reservoir	NOUN
cet-13710	59	31	condition	condition	NOUN
cet-13710	59	32	(	(	PUNCT
cet-13710	59	33	position	position	NOUN
cet-13710	59	34	0	0	NUM
cet-13710	59	35	in	in	ADP
cet-13710	59	36	figure	figure	NOUN
cet-13710	59	37	1b	1b	NUM
cet-13710	59	38	):	):	PUNCT
cet-13710	59	39	𝜌𝑒𝑞	𝜌𝑒𝑞	X
cet-13710	59	40	=	=	SYM
cet-13710	59	41	𝜌2	𝜌2	ADJ
cet-13710	59	42	=	=	SYM
cet-13710	59	43	𝜌0	𝜌0	PROPN
cet-13710	59	44	(	(	PUNCT
cet-13710	59	45	𝑝𝑎	𝑝𝑎	ADP
cet-13710	59	46	𝑝0	𝑝0	NOUN
cet-13710	59	47	)	)	PUNCT
cet-13710	59	48	1	1	NUM
cet-13710	59	49	𝛾	𝛾	NOUN
cet-13710	59	50	(	(	PUNCT
cet-13710	59	51	5	5	NUM
cet-13710	59	52	)	)	PUNCT
cet-13710	59	53	𝑝𝑎	𝑝𝑎	X
cet-13710	59	54	is	be	AUX
cet-13710	59	55	the	the	DET
cet-13710	59	56	ambient	ambient	ADJ
cet-13710	59	57	pressure	pressure	NOUN
cet-13710	59	58	.	.	PUNCT
cet-13710	60	1	𝑝0	𝑝0	NOUN
cet-13710	60	2	and	and	CCONJ
cet-13710	60	3	𝜌0	𝜌0	PROPN
cet-13710	60	4	are	be	AUX
cet-13710	60	5	the	the	DET
cet-13710	60	6	storage	storage	NOUN
cet-13710	60	7	pressure	pressure	NOUN
cet-13710	60	8	and	and	CCONJ
cet-13710	60	9	density	density	NOUN
cet-13710	60	10	.	.	PUNCT
cet-13710	61	1	conservation	conservation	NOUN
cet-13710	61	2	of	of	ADP
cet-13710	61	3	energy	energy	NOUN
cet-13710	61	4	is	be	AUX
cet-13710	61	5	applied	apply	VERB
cet-13710	61	6	to	to	PART
cet-13710	61	7	calculate	calculate	VERB
cet-13710	61	8	the	the	DET
cet-13710	61	9	velocity	velocity	NOUN
cet-13710	61	10	at	at	ADP
cet-13710	61	11	position	position	NOUN
cet-13710	61	12	2	2	NUM
cet-13710	61	13	:	:	PUNCT
cet-13710	62	1	𝑢𝑒𝑞	𝑢𝑒𝑞	PROPN
cet-13710	62	2	=	=	PROPN
cet-13710	62	3	𝑢2	𝑢2	PROPN
cet-13710	62	4	=	=	PROPN
cet-13710	62	5	√2	√2	PROPN
cet-13710	62	6	(	(	PUNCT
cet-13710	62	7	1	1	NUM
cet-13710	62	8	2	2	NUM
cet-13710	62	9	𝑐1	𝑐1	NOUN
cet-13710	62	10	2	2	NUM
cet-13710	62	11	+	+	CCONJ
cet-13710	62	12	𝐶𝑝𝑠	𝐶𝑝𝑠	PROPN
cet-13710	62	13	(	(	PUNCT
cet-13710	62	14	𝑇0	𝑇0	NOUN
cet-13710	62	15	2	2	NUM
cet-13710	62	16	𝛾+1	𝛾+1	NOUN
cet-13710	62	17	−	−	NOUN
cet-13710	62	18	𝑝𝑎	𝑝𝑎	CCONJ
cet-13710	62	19	𝜌𝑒𝑞	𝜌𝑒𝑞	ADJ
cet-13710	62	20	𝑅𝑠	𝑅𝑠	PROPN
cet-13710	62	21	)	)	PUNCT
cet-13710	62	22	)	)	PUNCT
cet-13710	62	23	(	(	PUNCT
cet-13710	62	24	6	6	NUM
cet-13710	62	25	)	)	PUNCT
cet-13710	62	26	with	with	ADP
cet-13710	62	27	the	the	DET
cet-13710	62	28	speed	speed	NOUN
cet-13710	62	29	of	of	ADP
cet-13710	62	30	sound	sound	ADJ
cet-13710	62	31	𝑐1	𝑐1	NOUN
cet-13710	62	32	=	=	PUNCT
cet-13710	62	33	√𝛾	√𝛾	PUNCT
cet-13710	62	34	𝑅𝑠	𝑅𝑠	ADP
cet-13710	62	35	𝑇1	𝑇1	NOUN
cet-13710	62	36	and	and	CCONJ
cet-13710	62	37	temperature	temperature	NOUN
cet-13710	62	38	𝑇1	𝑇1	NOUN
cet-13710	62	39	=	=	PUNCT
cet-13710	62	40	𝑇0	𝑇0	VERB
cet-13710	62	41	2	2	NUM
cet-13710	62	42	𝛾+1	𝛾+1	NOUN
cet-13710	62	43	at	at	ADP
cet-13710	62	44	point	point	NOUN
cet-13710	62	45	1	1	NUM
cet-13710	62	46	.	.	PUNCT
cet-13710	63	1	(	(	PUNCT
cet-13710	63	2	7	7	X
cet-13710	63	3	)	)	PUNCT
cet-13710	63	4	𝛾	𝛾	NOUN
cet-13710	63	5	is	be	AUX
cet-13710	63	6	the	the	DET
cet-13710	63	7	ratio	ratio	NOUN
cet-13710	63	8	of	of	ADP
cet-13710	63	9	specific	specific	ADJ
cet-13710	63	10	heat	heat	NOUN
cet-13710	63	11	,	,	PUNCT
cet-13710	63	12	𝐶𝑝𝑠	𝐶𝑝𝑠	PROPN
cet-13710	63	13	the	the	DET
cet-13710	63	14	specific	specific	ADJ
cet-13710	63	15	heat	heat	NOUN
cet-13710	63	16	capacity	capacity	NOUN
cet-13710	63	17	and	and	CCONJ
cet-13710	63	18	𝑅𝑠	𝑅𝑠	ADP
cet-13710	63	19	the	the	DET
cet-13710	63	20	specific	specific	ADJ
cet-13710	63	21	gas	gas	NOUN
cet-13710	63	22	constant	constant	NOUN
cet-13710	63	23	of	of	ADP
cet-13710	63	24	the	the	DET
cet-13710	63	25	source	source	NOUN
cet-13710	63	26	.	.	PUNCT
cet-13710	64	1	applying	apply	VERB
cet-13710	64	2	conservation	conservation	NOUN
cet-13710	64	3	of	of	ADP
cet-13710	64	4	mass	mass	NOUN
cet-13710	64	5	and	and	CCONJ
cet-13710	64	6	the	the	DET
cet-13710	64	7	(	(	PUNCT
cet-13710	64	8	sonic	sonic	ADJ
cet-13710	64	9	)	)	PUNCT
cet-13710	64	10	conditions	condition	NOUN
cet-13710	64	11	at	at	ADP
cet-13710	64	12	the	the	DET
cet-13710	64	13	physical	physical	ADJ
cet-13710	64	14	hole	hole	NOUN
cet-13710	64	15	(	(	PUNCT
cet-13710	64	16	position	position	NOUN
cet-13710	64	17	1	1	NUM
cet-13710	64	18	in	in	ADP
cet-13710	64	19	figure	figure	NOUN
cet-13710	64	20	1b	1b	NUM
cet-13710	64	21	)	)	PUNCT
cet-13710	64	22	the	the	DET
cet-13710	64	23	required	require	VERB
cet-13710	64	24	expanded	expand	VERB
cet-13710	64	25	diameter	diameter	NOUN
cet-13710	64	26	can	can	AUX
cet-13710	64	27	be	be	AUX
cet-13710	64	28	calculated	calculate	VERB
cet-13710	64	29	as	as	ADP
cet-13710	64	30	:	:	PUNCT
cet-13710	64	31	𝑟𝑒𝑞	𝑟𝑒𝑞	VERB
cet-13710	64	32	=	=	NOUN
cet-13710	64	33	𝑟2	𝑟2	NOUN
cet-13710	64	34	=	=	SYM
cet-13710	64	35	√	√	NUM
cet-13710	64	36	�	�	PROPN
cet-13710	64	37	̇	̇	PROPN
cet-13710	64	38	�	�	PROPN
cet-13710	64	39	𝜋	𝜋	ADP
cet-13710	64	40	𝑢2	𝑢2	PROPN
cet-13710	64	41	𝜌𝑒𝑞	𝜌𝑒𝑞	NOUN
cet-13710	64	42	(	(	PUNCT
cet-13710	64	43	8)	8)	NUM
cet-13710	64	44	the	the	DET
cet-13710	64	45	equivalent	equivalent	ADJ
cet-13710	64	46	temperature	temperature	NOUN
cet-13710	64	47	and	and	CCONJ
cet-13710	64	48	mach	mach	NOUN
cet-13710	64	49	number	number	NOUN
cet-13710	64	50	are	be	AUX
cet-13710	64	51	:	:	PUNCT
cet-13710	65	1	𝑇𝑒𝑞	𝑇𝑒𝑞	NOUN
cet-13710	65	2	=	=	SYM
cet-13710	65	3	𝑇2	𝑇2	PROPN
cet-13710	65	4	=	=	PUNCT
cet-13710	65	5	𝑝𝑎	𝑝𝑎	NOUN
cet-13710	65	6	𝜌2	𝜌2	ADJ
cet-13710	65	7	𝑅𝑠	𝑅𝑠	PROPN
cet-13710	65	8	=	=	PUNCT
cet-13710	65	9	𝑝𝑎	𝑝𝑎	ADV
cet-13710	65	10	𝜌𝑒𝑞	𝜌𝑒𝑞	X
cet-13710	66	1	𝑅𝑠	𝑅𝑠	PROPN
cet-13710	66	2	(	(	PUNCT
cet-13710	66	3	9	9	NUM
cet-13710	66	4	)	)	PUNCT
cet-13710	66	5	𝑀𝑎𝑒𝑞	𝑀𝑎𝑒𝑞	PROPN
cet-13710	66	6	=	=	SYM
cet-13710	66	7	𝑀𝑎2	𝑀𝑎2	ADJ
cet-13710	66	8	=	=	PROPN
cet-13710	66	9	𝑢2	𝑢2	PROPN
cet-13710	66	10	√𝛾	√𝛾	PUNCT
cet-13710	67	1	𝑅𝑠	𝑅𝑠	ADP
cet-13710	67	2	𝑇2	𝑇2	NOUN
cet-13710	67	3	(	(	PUNCT
cet-13710	67	4	10	10	NUM
cet-13710	67	5	)	)	PUNCT
cet-13710	67	6	27	27	NUM
cet-13710	67	7	the	the	DET
cet-13710	67	8	mass	mass	NOUN
cet-13710	67	9	flow	flow	NOUN
cet-13710	67	10	rate	rate	NOUN
cet-13710	67	11	is	be	AUX
cet-13710	67	12	conserved	conserve	VERB
cet-13710	67	13	throughout	throughout	ADP
cet-13710	67	14	the	the	DET
cet-13710	67	15	domain	domain	NOUN
cet-13710	67	16	:	:	PUNCT
cet-13710	67	17	�	�	NOUN
cet-13710	67	18	̇	̇	PROPN
cet-13710	67	19	�	�	PROPN
cet-13710	67	20	=	=	PUNCT
cet-13710	67	21	𝜌1𝑢1𝜋	𝜌1𝑢1𝜋	SYM
cet-13710	67	22	𝐶𝑑	𝐶𝑑	PROPN
cet-13710	67	23	𝑟1	𝑟1	NOUN
cet-13710	67	24	2	2	NUM
cet-13710	67	25	=	=	SYM
cet-13710	67	26	𝜌2	𝜌2	ADJ
cet-13710	67	27	𝑢2	𝑢2	PROPN
cet-13710	67	28	𝜋	𝜋	NOUN
cet-13710	67	29	𝑟2	𝑟2	NOUN
cet-13710	67	30	2	2	NUM
cet-13710	67	31	(	(	PUNCT
cet-13710	67	32	11	11	NUM
cet-13710	67	33	)	)	PUNCT
cet-13710	67	34	with	with	ADP
cet-13710	67	35	𝐶𝑑	𝐶𝑑	PROPN
cet-13710	67	36	being	be	AUX
cet-13710	67	37	the	the	DET
cet-13710	67	38	discharge	discharge	NOUN
cet-13710	67	39	coefficient	coefficient	NOUN
cet-13710	67	40	.	.	PUNCT
cet-13710	68	1	the	the	DET
cet-13710	68	2	density	density	NOUN
cet-13710	68	3	at	at	ADP
cet-13710	68	4	the	the	DET
cet-13710	68	5	release	release	NOUN
cet-13710	68	6	location	location	NOUN
cet-13710	68	7	(	(	PUNCT
cet-13710	68	8	hole	hole	NOUN
cet-13710	68	9	,	,	PUNCT
cet-13710	68	10	position	position	NOUN
cet-13710	68	11	1	1	NUM
cet-13710	68	12	in	in	ADP
cet-13710	68	13	figure	figure	NOUN
cet-13710	68	14	1b	1b	NUM
cet-13710	68	15	)	)	PUNCT
cet-13710	68	16	is	be	AUX
cet-13710	68	17	:	:	PUNCT
cet-13710	68	18	𝜌1	𝜌1	NOUN
cet-13710	68	19	=	=	SYM
cet-13710	68	20	𝜌0	𝜌0	PROPN
cet-13710	68	21	(	(	PUNCT
cet-13710	68	22	2	2	NUM
cet-13710	68	23	𝛾+1	𝛾+1	NUM
cet-13710	68	24	)	)	PUNCT
cet-13710	68	25	1	1	NUM
cet-13710	68	26	𝛾−1	𝛾−1	PROPN
cet-13710	68	27	(	(	PUNCT
cet-13710	68	28	12	12	NUM
cet-13710	68	29	)	)	PUNCT
cet-13710	68	30	3	3	NUM
cet-13710	68	31	.	.	NOUN
cet-13710	68	32	results	result	NOUN
cet-13710	68	33	to	to	PART
cet-13710	68	34	validate	validate	VERB
cet-13710	68	35	the	the	DET
cet-13710	68	36	new	new	ADJ
cet-13710	68	37	model	model	NOUN
cet-13710	68	38	for	for	ADP
cet-13710	68	39	the	the	DET
cet-13710	68	40	equivalent	equivalent	ADJ
cet-13710	68	41	source	source	NOUN
cet-13710	68	42	conditions	condition	NOUN
cet-13710	68	43	,	,	PUNCT
cet-13710	68	44	a	a	DET
cet-13710	68	45	wide	wide	ADJ
cet-13710	68	46	range	range	NOUN
cet-13710	68	47	of	of	ADP
cet-13710	68	48	experiments	experiment	NOUN
cet-13710	68	49	were	be	AUX
cet-13710	68	50	simulated	simulate	VERB
cet-13710	68	51	with	with	ADP
cet-13710	68	52	effects	effect	NOUN
cet-13710	68	53	v12	v12	VERB
cet-13710	68	54	and	and	CCONJ
cet-13710	68	55	compared	compare	VERB
cet-13710	68	56	with	with	ADP
cet-13710	68	57	previous	previous	ADJ
cet-13710	68	58	results	result	NOUN
cet-13710	68	59	from	from	ADP
cet-13710	68	60	effects	effect	NOUN
cet-13710	68	61	v11	v11	NOUN
cet-13710	68	62	and	and	CCONJ
cet-13710	68	63	the	the	DET
cet-13710	68	64	experimental	experimental	ADJ
cet-13710	68	65	data	datum	NOUN
cet-13710	68	66	.	.	PUNCT
cet-13710	69	1	this	this	PRON
cet-13710	69	2	includes	include	VERB
cet-13710	69	3	light	light	NOUN
cet-13710	69	4	and	and	CCONJ
cet-13710	69	5	heavy	heavy	ADJ
cet-13710	69	6	gas	gas	NOUN
cet-13710	69	7	releases	release	NOUN
cet-13710	69	8	ranging	range	VERB
cet-13710	69	9	from	from	ADP
cet-13710	69	10	subsonic	subsonic	ADJ
cet-13710	69	11	to	to	ADP
cet-13710	69	12	supersonic	supersonic	ADJ
cet-13710	69	13	releases	release	NOUN
cet-13710	69	14	at	at	ADP
cet-13710	69	15	highly	highly	ADV
cet-13710	69	16	under	under	ADP
cet-13710	69	17	expanded	expand	VERB
cet-13710	69	18	flow	flow	NOUN
cet-13710	69	19	.	.	PUNCT
cet-13710	70	1	3.1	3.1	NUM
cet-13710	70	2	under	under	ADP
cet-13710	70	3	expanded	expand	VERB
cet-13710	70	4	flow	flow	NOUN
cet-13710	70	5	conditions	condition	NOUN
cet-13710	70	6	han	han	PROPN
cet-13710	70	7	et	et	PROPN
cet-13710	70	8	al	al	PROPN
cet-13710	70	9	.	.	PROPN
cet-13710	71	1	(	(	PUNCT
cet-13710	71	2	2013	2013	NUM
cet-13710	71	3	)	)	PUNCT
cet-13710	71	4	published	publish	VERB
cet-13710	71	5	data	datum	NOUN
cet-13710	71	6	for	for	ADP
cet-13710	71	7	hydrogen	hydrogen	NOUN
cet-13710	71	8	releases	release	NOUN
cet-13710	71	9	for	for	ADP
cet-13710	71	10	reservoir	reservoir	NOUN
cet-13710	71	11	pressures	pressure	NOUN
cet-13710	71	12	between	between	ADP
cet-13710	71	13	100bar	100bar	NUM
cet-13710	71	14	and	and	CCONJ
cet-13710	71	15	400bar	400bar	NUM
cet-13710	71	16	with	with	ADP
cet-13710	71	17	leak	leak	NOUN
cet-13710	71	18	hole	hole	NOUN
cet-13710	71	19	sizes	size	NOUN
cet-13710	71	20	ranging	range	VERB
cet-13710	71	21	from	from	ADP
cet-13710	71	22	0.5	0.5	NUM
cet-13710	71	23	mm	mm	NOUN
cet-13710	71	24	to	to	ADP
cet-13710	71	25	1	1	NUM
cet-13710	71	26	mm	mm	NOUN
cet-13710	71	27	.	.	PUNCT
cet-13710	72	1	the	the	DET
cet-13710	72	2	simulations	simulation	NOUN
cet-13710	72	3	with	with	ADP
cet-13710	72	4	effects	effect	NOUN
cet-13710	72	5	v12	v12	VERB
cet-13710	72	6	show	show	NOUN
cet-13710	72	7	and	and	CCONJ
cet-13710	72	8	excellent	excellent	ADJ
cet-13710	72	9	agreement	agreement	NOUN
cet-13710	72	10	for	for	ADP
cet-13710	72	11	the	the	DET
cet-13710	72	12	concentration	concentration	NOUN
cet-13710	72	13	at	at	ADP
cet-13710	72	14	the	the	DET
cet-13710	72	15	release	release	NOUN
cet-13710	72	16	height	height	NOUN
cet-13710	72	17	compared	compare	VERB
cet-13710	72	18	with	with	ADP
cet-13710	72	19	the	the	DET
cet-13710	72	20	experimental	experimental	ADJ
cet-13710	72	21	data	datum	NOUN
cet-13710	72	22	;	;	PUNCT
cet-13710	72	23	the	the	DET
cet-13710	72	24	results	result	NOUN
cet-13710	72	25	from	from	ADP
cet-13710	72	26	effects	effect	NOUN
cet-13710	72	27	v11	v11	NOUN
cet-13710	72	28	are	be	AUX
cet-13710	72	29	conservative	conservative	ADJ
cet-13710	72	30	(	(	PUNCT
cet-13710	72	31	figure	figure	NOUN
cet-13710	72	32	2a	2a	NUM
cet-13710	72	33	)	)	PUNCT
cet-13710	72	34	.	.	PUNCT
cet-13710	73	1	due	due	ADP
cet-13710	73	2	to	to	ADP
cet-13710	73	3	the	the	DET
cet-13710	73	4	buoyancy	buoyancy	NOUN
cet-13710	73	5	of	of	ADP
cet-13710	73	6	the	the	DET
cet-13710	73	7	plume	plume	NOUN
cet-13710	73	8	the	the	DET
cet-13710	73	9	concentration	concentration	NOUN
cet-13710	73	10	decay	decay	NOUN
cet-13710	73	11	starting	start	VERB
cet-13710	73	12	at	at	ADP
cet-13710	73	13	approximately	approximately	ADV
cet-13710	73	14	x=8	x=8	NOUN
cet-13710	73	15	m	m	VERB
cet-13710	73	16	is	be	AUX
cet-13710	73	17	reproduced	reproduce	VERB
cet-13710	73	18	well	well	ADV
cet-13710	73	19	with	with	ADP
cet-13710	73	20	effects	effect	NOUN
cet-13710	73	21	v12	v12	VERB
cet-13710	73	22	which	which	PRON
cet-13710	73	23	can	can	AUX
cet-13710	73	24	be	be	AUX
cet-13710	73	25	seen	see	VERB
cet-13710	73	26	clearly	clearly	ADV
cet-13710	73	27	on	on	ADP
cet-13710	73	28	figure	figure	NOUN
cet-13710	73	29	2b	2b	NOUN
cet-13710	73	30	(	(	PUNCT
cet-13710	73	31	in	in	ADP
cet-13710	73	32	double	double	ADJ
cet-13710	73	33	logarithmic	logarithmic	ADJ
cet-13710	73	34	scale	scale	NOUN
cet-13710	73	35	)	)	PUNCT
cet-13710	73	36	.	.	PUNCT
cet-13710	74	1	the	the	DET
cet-13710	74	2	data	datum	NOUN
cet-13710	74	3	of	of	ADP
cet-13710	74	4	effects	effect	NOUN
cet-13710	74	5	v11	v11	NOUN
cet-13710	74	6	contains	contain	VERB
cet-13710	74	7	only	only	ADV
cet-13710	74	8	the	the	DET
cet-13710	74	9	data	datum	NOUN
cet-13710	74	10	of	of	ADP
cet-13710	74	11	the	the	DET
cet-13710	74	12	turbulent	turbulent	ADJ
cet-13710	74	13	free	free	ADJ
cet-13710	74	14	jet	jet	NOUN
cet-13710	74	15	in	in	ADP
cet-13710	74	16	the	the	DET
cet-13710	74	17	non	non	ADJ
cet-13710	74	18	-	-	ADJ
cet-13710	74	19	buoyant	buoyant	ADJ
cet-13710	74	20	region	region	NOUN
cet-13710	74	21	.	.	PUNCT
cet-13710	75	1	simulation	simulation	NOUN
cet-13710	75	2	results	result	VERB
cet-13710	75	3	from	from	ADP
cet-13710	75	4	the	the	DET
cet-13710	75	5	other	other	ADJ
cet-13710	75	6	experiments	experiment	NOUN
cet-13710	75	7	(	(	PUNCT
cet-13710	75	8	0.7	0.7	NUM
cet-13710	75	9	mm	mm	NOUN
cet-13710	75	10	and	and	CCONJ
cet-13710	75	11	0.5	0.5	NUM
cet-13710	75	12	mm	mm	PROPN
cet-13710	75	13	hole	hole	NOUN
cet-13710	75	14	at	at	ADP
cet-13710	75	15	100bar	100bar	NUM
cet-13710	75	16	and	and	CCONJ
cet-13710	75	17	400bar	400bar	NUM
cet-13710	75	18	)	)	PUNCT
cet-13710	75	19	also	also	ADV
cet-13710	75	20	show	show	VERB
cet-13710	75	21	excellent	excellent	ADJ
cet-13710	75	22	agreement	agreement	NOUN
cet-13710	75	23	with	with	ADP
cet-13710	75	24	the	the	DET
cet-13710	75	25	experimental	experimental	ADJ
cet-13710	75	26	data	datum	NOUN
cet-13710	75	27	(	(	PUNCT
cet-13710	75	28	not	not	PART
cet-13710	75	29	shown	show	VERB
cet-13710	75	30	here	here	ADV
cet-13710	75	31	)	)	PUNCT
cet-13710	75	32	.	.	PUNCT
cet-13710	76	1	figure	figure	NOUN
cet-13710	76	2	2a	2a	NUM
cet-13710	76	3	(	(	PUNCT
cet-13710	76	4	left	leave	VERB
cet-13710	76	5	):	):	PUNCT
cet-13710	76	6	comparison	comparison	NOUN
cet-13710	76	7	of	of	ADP
cet-13710	76	8	simulations	simulation	NOUN
cet-13710	76	9	of	of	ADP
cet-13710	76	10	hydrogen	hydrogen	NOUN
cet-13710	76	11	release	release	NOUN
cet-13710	76	12	at	at	ADP
cet-13710	76	13	100bar	100bar	NUM
cet-13710	76	14	from	from	ADP
cet-13710	76	15	1	1	NUM
cet-13710	76	16	mm	mm	PROPN
cet-13710	76	17	hole	hole	NOUN
cet-13710	76	18	(	(	PUNCT
cet-13710	76	19	han	han	NOUN
cet-13710	76	20	2013	2013	NUM
cet-13710	76	21	)	)	PUNCT
cet-13710	76	22	.	.	PUNCT
cet-13710	77	1	figure	figure	NOUN
cet-13710	77	2	2b	2b	NOUN
cet-13710	77	3	(	(	PUNCT
cet-13710	77	4	right	right	ADJ
cet-13710	77	5	):	):	PUNCT
cet-13710	77	6	data	datum	NOUN
cet-13710	77	7	in	in	ADP
cet-13710	77	8	figure	figure	NOUN
cet-13710	77	9	2b	2b	NOUN
cet-13710	77	10	using	use	VERB
cet-13710	77	11	a	a	DET
cet-13710	77	12	double	double	ADJ
cet-13710	77	13	logarithmic	logarithmic	ADJ
cet-13710	77	14	scale	scale	NOUN
cet-13710	77	15	.	.	PUNCT
cet-13710	78	1	in	in	ADP
cet-13710	78	2	2006	2006	NUM
cet-13710	78	3	shell	shell	NOUN
cet-13710	78	4	and	and	CCONJ
cet-13710	78	5	hsl	hsl	PROPN
cet-13710	78	6	hydrogen	hydrogen	NOUN
cet-13710	78	7	releases	release	NOUN
cet-13710	78	8	have	have	AUX
cet-13710	78	9	been	be	AUX
cet-13710	78	10	perfored	perfore	VERB
cet-13710	78	11	for	for	ADP
cet-13710	78	12	different	different	ADJ
cet-13710	78	13	release	release	NOUN
cet-13710	78	14	conditions	condition	NOUN
cet-13710	78	15	whereas	whereas	SCONJ
cet-13710	78	16	detailed	detailed	ADJ
cet-13710	78	17	concentration	concentration	NOUN
cet-13710	78	18	data	datum	NOUN
cet-13710	78	19	at	at	ADP
cet-13710	78	20	release	release	NOUN
cet-13710	78	21	height	height	NOUN
cet-13710	78	22	is	be	AUX
cet-13710	78	23	available	available	ADJ
cet-13710	78	24	for	for	ADP
cet-13710	78	25	the	the	DET
cet-13710	78	26	3	3	NUM
cet-13710	78	27	mm	mm	NOUN
cet-13710	78	28	and	and	CCONJ
cet-13710	78	29	4	4	NUM
cet-13710	78	30	mm	mm	NOUN
cet-13710	78	31	releases	release	NOUN
cet-13710	78	32	from	from	ADP
cet-13710	78	33	roberts	roberts	PROPN
cet-13710	78	34	et	et	PROPN
cet-13710	78	35	al	al	PROPN
cet-13710	78	36	.	.	PROPN
cet-13710	79	1	(	(	PUNCT
cet-13710	79	2	2006	2006	NUM
cet-13710	79	3	)	)	PUNCT
cet-13710	79	4	.	.	PUNCT
cet-13710	80	1	the	the	DET
cet-13710	80	2	mass	mass	NOUN
cet-13710	80	3	flow	flow	NOUN
cet-13710	80	4	rates	rate	NOUN
cet-13710	80	5	were	be	AUX
cet-13710	80	6	not	not	PART
cet-13710	80	7	explicitly	explicitly	ADV
cet-13710	80	8	measured	measure	VERB
cet-13710	80	9	during	during	ADP
cet-13710	80	10	the	the	DET
cet-13710	80	11	experimental	experimental	ADJ
cet-13710	80	12	campaign	campaign	NOUN
cet-13710	80	13	.	.	PUNCT
cet-13710	81	1	nevertheless	nevertheless	ADV
cet-13710	81	2	,	,	PUNCT
cet-13710	81	3	the	the	DET
cet-13710	81	4	calculated	calculate	VERB
cet-13710	81	5	mass	mass	NOUN
cet-13710	81	6	flow	flow	NOUN
cet-13710	81	7	rates	rate	NOUN
cet-13710	81	8	from	from	ADP
cet-13710	81	9	effects	effect	NOUN
cet-13710	81	10	v11	v11	NOUN
cet-13710	81	11	and	and	CCONJ
cet-13710	81	12	v12	v12	VERB
cet-13710	81	13	present	present	ADJ
cet-13710	81	14	good	good	ADJ
cet-13710	81	15	agreement	agreement	NOUN
cet-13710	81	16	with	with	ADP
cet-13710	81	17	the	the	DET
cet-13710	81	18	ones	one	NOUN
cet-13710	81	19	given	give	VERB
cet-13710	81	20	by	by	ADP
cet-13710	81	21	roberts	roberts	PROPN
cet-13710	81	22	et	et	PROPN
cet-13710	81	23	al	al	PROPN
cet-13710	81	24	.	.	PROPN
cet-13710	81	25	(	(	PUNCT
cet-13710	81	26	2006	2006	NUM
cet-13710	81	27	)	)	PUNCT
cet-13710	81	28	.	.	PUNCT
cet-13710	82	1	figure	figure	NOUN
cet-13710	82	2	3a	3a	NUM
cet-13710	82	3	(	(	PUNCT
cet-13710	82	4	left	leave	VERB
cet-13710	82	5	):	):	PUNCT
cet-13710	82	6	comparison	comparison	NOUN
cet-13710	82	7	of	of	ADP
cet-13710	82	8	simulations	simulation	NOUN
cet-13710	82	9	of	of	ADP
cet-13710	82	10	hydrogen	hydrogen	NOUN
cet-13710	82	11	release	release	NOUN
cet-13710	82	12	at	at	ADP
cet-13710	82	13	100bar	100bar	NUM
cet-13710	82	14	from	from	ADP
cet-13710	82	15	3	3	NUM
cet-13710	82	16	mm	mm	PROPN
cet-13710	82	17	hole	hole	NOUN
cet-13710	82	18	(	(	PUNCT
cet-13710	82	19	roberts	roberts	PROPN
cet-13710	82	20	et	et	PROPN
cet-13710	82	21	al	al	PROPN
cet-13710	82	22	.	.	PROPN
cet-13710	82	23	,	,	PUNCT
cet-13710	82	24	2006	2006	NUM
cet-13710	82	25	)	)	PUNCT
cet-13710	82	26	.	.	PUNCT
cet-13710	83	1	figure	figure	VERB
cet-13710	83	2	3b	3b	NOUN
cet-13710	83	3	(	(	PUNCT
cet-13710	83	4	right	right	INTJ
cet-13710	83	5	):	):	PUNCT
cet-13710	83	6	data	datum	NOUN
cet-13710	83	7	in	in	ADP
cet-13710	83	8	figure	figure	NOUN
cet-13710	83	9	3b	3b	NOUN
cet-13710	83	10	using	use	VERB
cet-13710	83	11	a	a	DET
cet-13710	83	12	double	double	ADJ
cet-13710	83	13	logarithmic	logarithmic	ADJ
cet-13710	83	14	scale	scale	NOUN
cet-13710	83	15	the	the	DET
cet-13710	83	16	concentration	concentration	NOUN
cet-13710	83	17	simulated	simulate	VERB
cet-13710	83	18	with	with	ADP
cet-13710	83	19	effects	effect	NOUN
cet-13710	83	20	v12	v12	VERB
cet-13710	83	21	is	be	AUX
cet-13710	83	22	in	in	ADP
cet-13710	83	23	excellent	excellent	ADJ
cet-13710	83	24	agreement	agreement	NOUN
cet-13710	83	25	with	with	ADP
cet-13710	83	26	the	the	DET
cet-13710	83	27	experimental	experimental	ADJ
cet-13710	83	28	data	datum	NOUN
cet-13710	83	29	as	as	SCONJ
cet-13710	83	30	can	can	AUX
cet-13710	83	31	be	be	AUX
cet-13710	83	32	seen	see	VERB
cet-13710	83	33	from	from	ADP
cet-13710	83	34	figure	figure	NOUN
cet-13710	83	35	3	3	NUM
cet-13710	83	36	.	.	PUNCT
cet-13710	83	37	effects	effect	NOUN
cet-13710	83	38	v11	v11	NOUN
cet-13710	83	39	consistently	consistently	ADV
cet-13710	83	40	shows	show	VERB
cet-13710	83	41	an	an	DET
cet-13710	83	42	overprediction	overprediction	NOUN
cet-13710	83	43	of	of	ADP
cet-13710	83	44	the	the	DET
cet-13710	83	45	experimental	experimental	ADJ
cet-13710	83	46	data	datum	NOUN
cet-13710	83	47	of	of	ADP
cet-13710	83	48	approximately	approximately	ADV
cet-13710	83	49	a	a	DET
cet-13710	83	50	factor	factor	NOUN
cet-13710	83	51	of	of	ADP
cet-13710	83	52	2	2	NUM
cet-13710	83	53	.	.	PUNCT
cet-13710	83	54	simulations	simulation	NOUN
cet-13710	83	55	of	of	ADP
cet-13710	83	56	other	other	ADJ
cet-13710	83	57	tests	test	NOUN
cet-13710	83	58	(	(	PUNCT
cet-13710	83	59	i.e.	i.e.	X
cet-13710	83	60	,	,	PUNCT
cet-13710	83	61	run	run	VERB
cet-13710	83	62	01	01	NUM
cet-13710	83	63	,	,	PUNCT
cet-13710	83	64	03	03	NUM
cet-13710	83	65	,	,	PUNCT
cet-13710	83	66	08	08	NUM
cet-13710	83	67	,	,	PUNCT
cet-13710	83	68	14	14	NUM
cet-13710	83	69	,	,	PUNCT
cet-13710	83	70	16	16	NUM
cet-13710	83	71	)	)	PUNCT
cet-13710	83	72	under	under	ADP
cet-13710	83	73	different	different	ADJ
cet-13710	83	74	release	release	NOUN
cet-13710	83	75	conditions	condition	NOUN
cet-13710	83	76	showed	show	VERB
cet-13710	83	77	comparable	comparable	ADJ
cet-13710	83	78	trends	trend	NOUN
cet-13710	83	79	and	and	CCONJ
cet-13710	83	80	excellent	excellent	ADJ
cet-13710	83	81	agreement	agreement	NOUN
cet-13710	83	82	for	for	ADP
cet-13710	83	83	effects	effect	NOUN
cet-13710	83	84	v12	v12	VERB
cet-13710	83	85	with	with	ADP
cet-13710	83	86	the	the	DET
cet-13710	83	87	experimental	experimental	ADJ
cet-13710	83	88	data	datum	NOUN
cet-13710	83	89	(	(	PUNCT
cet-13710	83	90	not	not	PART
cet-13710	83	91	shown	show	VERB
cet-13710	83	92	here	here	ADV
cet-13710	83	93	)	)	PUNCT
cet-13710	83	94	.	.	PUNCT
cet-13710	84	1	runs	run	VERB
cet-13710	84	2	03	03	NUM
cet-13710	84	3	and	and	CCONJ
cet-13710	84	4	07	07	NUM
cet-13710	84	5	have	have	AUX
cet-13710	84	6	been	be	AUX
cet-13710	84	7	conducted	conduct	VERB
cet-13710	84	8	under	under	ADP
cet-13710	84	9	sidewind	sidewind	NOUN
cet-13710	84	10	conditions	condition	NOUN
cet-13710	84	11	(	(	PUNCT
cet-13710	84	12	roberts	roberts	PROPN
cet-13710	84	13	et	et	PROPN
cet-13710	84	14	al	al	PROPN
cet-13710	84	15	.	.	PROPN
cet-13710	84	16	,	,	PUNCT
cet-13710	84	17	2006	2006	NUM
cet-13710	84	18	)	)	PUNCT
cet-13710	84	19	.	.	PUNCT
cet-13710	85	1	therefore	therefore	ADV
cet-13710	85	2	,	,	PUNCT
cet-13710	85	3	the	the	DET
cet-13710	85	4	simulations	simulation	NOUN
cet-13710	85	5	agree	agree	VERB
cet-13710	85	6	well	well	ADV
cet-13710	85	7	with	with	ADP
cet-13710	85	8	the	the	DET
cet-13710	85	9	experiments	experiment	NOUN
cet-13710	85	10	up	up	ADP
cet-13710	85	11	to	to	ADP
cet-13710	85	12	a	a	DET
cet-13710	85	13	distance	distance	NOUN
cet-13710	85	14	of	of	ADP
cet-13710	85	15	approximately	approximately	ADV
cet-13710	85	16	7	7	NUM
cet-13710	85	17	m	m	NOUN
cet-13710	85	18	from	from	ADP
cet-13710	85	19	the	the	DET
cet-13710	85	20	release	release	NOUN
cet-13710	85	21	.	.	PUNCT
cet-13710	86	1	from	from	ADP
cet-13710	86	2	there	there	ADV
cet-13710	86	3	onwards	onward	NOUN
cet-13710	86	4	,	,	PUNCT
cet-13710	86	5	the	the	DET
cet-13710	86	6	simulations	simulation	NOUN
cet-13710	86	7	overpredict	overpredict	VERB
cet-13710	86	8	the	the	DET
cet-13710	86	9	experimental	experimental	ADJ
cet-13710	86	10	data	datum	NOUN
cet-13710	86	11	due	due	ADJ
cet-13710	86	12	the	the	DET
cet-13710	86	13	effect	effect	NOUN
cet-13710	86	14	of	of	ADP
cet-13710	86	15	sidewind	sidewind	NOUN
cet-13710	86	16	which	which	PRON
cet-13710	86	17	enhanced	enhance	VERB
cet-13710	86	18	mixing	mix	VERB
cet-13710	86	19	during	during	ADP
cet-13710	86	20	the	the	DET
cet-13710	86	21	experiments	experiment	NOUN
cet-13710	86	22	(	(	PUNCT
cet-13710	86	23	not	not	PART
cet-13710	86	24	shown	show	VERB
cet-13710	86	25	here	here	ADV
cet-13710	86	26	)	)	PUNCT
cet-13710	86	27	.	.	PUNCT
cet-13710	87	1	28	28	NUM
cet-13710	87	2	detailed	detailed	ADJ
cet-13710	87	3	measurements	measurement	NOUN
cet-13710	87	4	of	of	ADP
cet-13710	87	5	concentration	concentration	NOUN
cet-13710	87	6	and	and	CCONJ
cet-13710	87	7	velocity	velocity	NOUN
cet-13710	87	8	in	in	ADP
cet-13710	87	9	axial	axial	ADJ
cet-13710	87	10	and	and	CCONJ
cet-13710	87	11	lateral	lateral	ADJ
cet-13710	87	12	direction	direction	NOUN
cet-13710	87	13	for	for	ADP
cet-13710	87	14	a	a	DET
cet-13710	87	15	release	release	NOUN
cet-13710	87	16	of	of	ADP
cet-13710	87	17	hydrogen	hydrogen	NOUN
cet-13710	87	18	have	have	AUX
cet-13710	87	19	been	be	AUX
cet-13710	87	20	performed	perform	VERB
cet-13710	87	21	by	by	ADP
cet-13710	87	22	ineris	ineris	NOUN
cet-13710	87	23	in	in	ADP
cet-13710	87	24	2013	2013	NUM
cet-13710	87	25	.	.	PUNCT
cet-13710	88	1	the	the	DET
cet-13710	88	2	release	release	NOUN
cet-13710	88	3	was	be	AUX
cet-13710	88	4	at	at	ADP
cet-13710	88	5	36bar	36bar	NOUN
cet-13710	88	6	through	through	ADP
cet-13710	88	7	a	a	DET
cet-13710	88	8	12	12	NUM
cet-13710	88	9	mm	mm	NOUN
cet-13710	88	10	hole	hole	NOUN
cet-13710	88	11	at	at	ADP
cet-13710	88	12	a	a	DET
cet-13710	88	13	release	release	NOUN
cet-13710	88	14	height	height	NOUN
cet-13710	88	15	of	of	ADP
cet-13710	88	16	1.5	1.5	NUM
cet-13710	88	17	m	m	NOUN
cet-13710	88	18	(	(	PUNCT
cet-13710	88	19	daubech	daubech	PROPN
cet-13710	88	20	et	et	PROPN
cet-13710	88	21	al	al	PROPN
cet-13710	88	22	.	.	PROPN
cet-13710	88	23	,	,	PUNCT
cet-13710	88	24	2015	2015	NUM
cet-13710	88	25	)	)	PUNCT
cet-13710	88	26	,	,	PUNCT
cet-13710	88	27	(	(	PUNCT
cet-13710	88	28	jallais	jallais	NOUN
cet-13710	88	29	et	et	PROPN
cet-13710	88	30	al	al	PROPN
cet-13710	88	31	.	.	PROPN
cet-13710	88	32	,	,	PUNCT
cet-13710	88	33	2018	2018	NUM
cet-13710	88	34	)	)	PUNCT
cet-13710	88	35	.	.	PUNCT
cet-13710	89	1	effects	effect	NOUN
cet-13710	89	2	v11	v11	NOUN
cet-13710	89	3	shows	show	VERB
cet-13710	89	4	a	a	DET
cet-13710	89	5	consistent	consistent	ADJ
cet-13710	89	6	overprediction	overprediction	NOUN
cet-13710	89	7	of	of	ADP
cet-13710	89	8	the	the	DET
cet-13710	89	9	concentration	concentration	NOUN
cet-13710	89	10	data	datum	NOUN
cet-13710	89	11	and	and	CCONJ
cet-13710	89	12	a	a	DET
cet-13710	89	13	lateral	lateral	ADJ
cet-13710	89	14	distribution	distribution	NOUN
cet-13710	89	15	that	that	PRON
cet-13710	89	16	is	be	AUX
cet-13710	89	17	too	too	ADV
cet-13710	89	18	narrow	narrow	ADJ
cet-13710	89	19	(	(	PUNCT
cet-13710	89	20	compare	compare	NOUN
cet-13710	89	21	figure	figure	NOUN
cet-13710	89	22	4b	4b	PROPN
cet-13710	89	23	)	)	PUNCT
cet-13710	89	24	.	.	PUNCT
cet-13710	90	1	effects	effect	NOUN
cet-13710	90	2	v12	v12	VERB
cet-13710	90	3	shows	show	VERB
cet-13710	90	4	excellent	excellent	ADJ
cet-13710	90	5	agreement	agreement	NOUN
cet-13710	90	6	with	with	ADP
cet-13710	90	7	the	the	DET
cet-13710	90	8	concentration	concentration	NOUN
cet-13710	90	9	distributions	distribution	NOUN
cet-13710	90	10	in	in	ADP
cet-13710	90	11	axial	axial	ADJ
cet-13710	90	12	and	and	CCONJ
cet-13710	90	13	lateral	lateral	ADJ
cet-13710	90	14	direction	direction	NOUN
cet-13710	90	15	.	.	PUNCT
cet-13710	91	1	the	the	DET
cet-13710	91	2	velocity	velocity	NOUN
cet-13710	91	3	distributions	distribution	NOUN
cet-13710	91	4	of	of	ADP
cet-13710	91	5	effects	effect	NOUN
cet-13710	91	6	v11	v11	NOUN
cet-13710	91	7	and	and	CCONJ
cet-13710	91	8	v12	v12	VERB
cet-13710	91	9	show	show	NOUN
cet-13710	91	10	only	only	ADV
cet-13710	91	11	minor	minor	ADJ
cet-13710	91	12	differences	difference	NOUN
cet-13710	91	13	.	.	PUNCT
cet-13710	92	1	close	close	ADJ
cet-13710	92	2	to	to	ADP
cet-13710	92	3	the	the	DET
cet-13710	92	4	release	release	NOUN
cet-13710	92	5	,	,	PUNCT
cet-13710	92	6	a	a	DET
cet-13710	92	7	slight	slight	ADJ
cet-13710	92	8	overprediction	overprediction	NOUN
cet-13710	92	9	of	of	ADP
cet-13710	92	10	the	the	DET
cet-13710	92	11	velocity	velocity	NOUN
cet-13710	92	12	on	on	ADP
cet-13710	92	13	the	the	DET
cet-13710	92	14	axis	axis	NOUN
cet-13710	92	15	is	be	AUX
cet-13710	92	16	observed	observe	VERB
cet-13710	92	17	.	.	PUNCT
cet-13710	93	1	note	note	VERB
cet-13710	93	2	that	that	SCONJ
cet-13710	93	3	the	the	DET
cet-13710	93	4	experimental	experimental	ADJ
cet-13710	93	5	data	data	NOUN
cet-13710	93	6	is	be	AUX
cet-13710	93	7	not	not	PART
cet-13710	93	8	taken	take	VERB
cet-13710	93	9	on	on	ADP
cet-13710	93	10	the	the	DET
cet-13710	93	11	axis	axis	NOUN
cet-13710	93	12	but	but	CCONJ
cet-13710	93	13	at	at	ADP
cet-13710	93	14	y=0.05	y=0.05	NOUN
cet-13710	93	15	m.	m.	NOUN
cet-13710	93	16	the	the	DET
cet-13710	93	17	lateral	lateral	ADJ
cet-13710	93	18	distributions	distribution	NOUN
cet-13710	93	19	of	of	ADP
cet-13710	93	20	the	the	DET
cet-13710	93	21	simulations	simulation	NOUN
cet-13710	93	22	at	at	ADP
cet-13710	93	23	x=10	x=10	PROPN
cet-13710	93	24	m	m	VERB
cet-13710	93	25	show	show	VERB
cet-13710	93	26	slight	slight	ADJ
cet-13710	93	27	deviations	deviation	NOUN
cet-13710	93	28	from	from	ADP
cet-13710	93	29	the	the	DET
cet-13710	93	30	experimental	experimental	ADJ
cet-13710	93	31	data	datum	NOUN
cet-13710	93	32	but	but	CCONJ
cet-13710	93	33	reproduce	reproduce	VERB
cet-13710	93	34	the	the	DET
cet-13710	93	35	plume	plume	NOUN
cet-13710	93	36	width	width	VERB
cet-13710	93	37	well	well	ADV
cet-13710	93	38	.	.	PUNCT
cet-13710	94	1	figure	figure	VERB
cet-13710	94	2	4	4	NUM
cet-13710	94	3	:	:	PUNCT
cet-13710	94	4	comparison	comparison	NOUN
cet-13710	94	5	of	of	ADP
cet-13710	94	6	mass	mass	ADJ
cet-13710	94	7	fraction	fraction	NOUN
cet-13710	94	8	in	in	ADP
cet-13710	94	9	downwind	downwind	ADJ
cet-13710	94	10	direction	direction	NOUN
cet-13710	94	11	(	(	PUNCT
cet-13710	94	12	left	left	ADJ
cet-13710	94	13	)	)	PUNCT
cet-13710	94	14	and	and	CCONJ
cet-13710	94	15	lateral	lateral	ADJ
cet-13710	94	16	direction	direction	NOUN
cet-13710	94	17	at	at	ADP
cet-13710	94	18	x=1.25	x=1.25	PROPN
cet-13710	94	19	m	m	PROPN
cet-13710	94	20	(	(	PUNCT
cet-13710	94	21	middle	middle	ADJ
cet-13710	94	22	)	)	PUNCT
cet-13710	94	23	and	and	CCONJ
cet-13710	94	24	x=10	x=10	PROPN
cet-13710	94	25	m	m	PROPN
cet-13710	94	26	(	(	PUNCT
cet-13710	94	27	right	right	ADJ
cet-13710	94	28	)	)	PUNCT
cet-13710	94	29	of	of	ADP
cet-13710	94	30	ineris	ineris	ADJ
cet-13710	94	31	hydrogen	hydrogen	NOUN
cet-13710	94	32	experiment	experiment	NOUN
cet-13710	94	33	;	;	PUNCT
cet-13710	94	34	simulation	simulation	NOUN
cet-13710	94	35	and	and	CCONJ
cet-13710	94	36	experimental	experimental	ADJ
cet-13710	94	37	data	datum	NOUN
cet-13710	94	38	figure	figure	NOUN
cet-13710	94	39	5	5	NUM
cet-13710	94	40	:	:	PUNCT
cet-13710	94	41	comparison	comparison	NOUN
cet-13710	94	42	of	of	ADP
cet-13710	94	43	velocity	velocity	NOUN
cet-13710	94	44	distribution	distribution	NOUN
cet-13710	94	45	in	in	ADP
cet-13710	94	46	downwind	downwind	ADJ
cet-13710	94	47	direction	direction	NOUN
cet-13710	94	48	(	(	PUNCT
cet-13710	94	49	left	left	ADJ
cet-13710	94	50	)	)	PUNCT
cet-13710	94	51	and	and	CCONJ
cet-13710	94	52	lateral	lateral	ADJ
cet-13710	94	53	direction	direction	NOUN
cet-13710	94	54	at	at	ADP
cet-13710	94	55	x=1.25	x=1.25	PROPN
cet-13710	94	56	m	m	PROPN
cet-13710	94	57	(	(	PUNCT
cet-13710	94	58	middle	middle	ADJ
cet-13710	94	59	)	)	PUNCT
cet-13710	94	60	and	and	CCONJ
cet-13710	94	61	x=10	x=10	PROPN
cet-13710	94	62	m	m	PROPN
cet-13710	94	63	(	(	PUNCT
cet-13710	94	64	right	right	ADJ
cet-13710	94	65	)	)	PUNCT
cet-13710	94	66	of	of	ADP
cet-13710	94	67	ineris	ineris	ADJ
cet-13710	94	68	hydrogen	hydrogen	NOUN
cet-13710	94	69	experiment	experiment	NOUN
cet-13710	94	70	;	;	PUNCT
cet-13710	94	71	simulation	simulation	NOUN
cet-13710	94	72	and	and	CCONJ
cet-13710	94	73	experimental	experimental	ADJ
cet-13710	94	74	data	datum	NOUN
cet-13710	94	75	3.2	3.2	NUM
cet-13710	94	76	additional	additional	ADJ
cet-13710	94	77	release	release	NOUN
cet-13710	94	78	conditions	condition	NOUN
cet-13710	94	79	in	in	ADP
cet-13710	94	80	the	the	DET
cet-13710	94	81	previous	previous	ADJ
cet-13710	94	82	section	section	NOUN
cet-13710	94	83	,	,	PUNCT
cet-13710	94	84	the	the	DET
cet-13710	94	85	validation	validation	NOUN
cet-13710	94	86	for	for	ADP
cet-13710	94	87	the	the	DET
cet-13710	94	88	release	release	NOUN
cet-13710	94	89	of	of	ADP
cet-13710	94	90	hydrogen	hydrogen	NOUN
cet-13710	94	91	was	be	AUX
cet-13710	94	92	described	describe	VERB
cet-13710	94	93	.	.	PUNCT
cet-13710	95	1	apart	apart	ADV
cet-13710	95	2	from	from	ADP
cet-13710	95	3	that	that	PRON
cet-13710	95	4	,	,	PUNCT
cet-13710	95	5	many	many	ADJ
cet-13710	95	6	more	more	ADJ
cet-13710	95	7	validation	validation	NOUN
cet-13710	95	8	cases	case	NOUN
cet-13710	95	9	have	have	AUX
cet-13710	95	10	were	be	AUX
cet-13710	95	11	simulated	simulate	VERB
cet-13710	95	12	,	,	PUNCT
cet-13710	95	13	including	include	VERB
cet-13710	95	14	the	the	DET
cet-13710	95	15	validation	validation	NOUN
cet-13710	95	16	of	of	ADP
cet-13710	95	17	releases	release	NOUN
cet-13710	95	18	of	of	ADP
cet-13710	95	19	substances	substance	NOUN
cet-13710	95	20	heavier	heavy	ADJ
cet-13710	95	21	than	than	ADP
cet-13710	95	22	air	air	NOUN
cet-13710	95	23	and	and	CCONJ
cet-13710	95	24	subsonic	subsonic	ADJ
cet-13710	95	25	releases	release	NOUN
cet-13710	95	26	.	.	PUNCT
cet-13710	96	1	only	only	ADV
cet-13710	96	2	a	a	DET
cet-13710	96	3	selection	selection	NOUN
cet-13710	96	4	of	of	ADP
cet-13710	96	5	these	these	DET
cet-13710	96	6	validation	validation	NOUN
cet-13710	96	7	cases	case	NOUN
cet-13710	96	8	was	be	AUX
cet-13710	96	9	included	include	VERB
cet-13710	96	10	in	in	ADP
cet-13710	96	11	this	this	DET
cet-13710	96	12	paper	paper	NOUN
cet-13710	96	13	.	.	PUNCT
cet-13710	97	1	classical	classical	ADJ
cet-13710	97	2	data	datum	NOUN
cet-13710	97	3	from	from	ADP
cet-13710	97	4	birch	birch	PROPN
cet-13710	97	5	et	et	PROPN
cet-13710	97	6	al	al	PROPN
cet-13710	97	7	.	.	PROPN
cet-13710	98	1	(	(	PUNCT
cet-13710	98	2	1984	1984	NUM
cet-13710	98	3	)	)	PUNCT
cet-13710	98	4	and	and	CCONJ
cet-13710	98	5	birch	birch	INTJ
cet-13710	98	6	et	et	PROPN
cet-13710	98	7	al	al	PROPN
cet-13710	98	8	,	,	PUNCT
cet-13710	98	9	(	(	PUNCT
cet-13710	98	10	1987	1987	NUM
cet-13710	98	11	)	)	PUNCT
cet-13710	98	12	were	be	AUX
cet-13710	98	13	simulated	simulate	VERB
cet-13710	98	14	and	and	CCONJ
cet-13710	98	15	show	show	VERB
cet-13710	98	16	excellent	excellent	ADJ
cet-13710	98	17	agreement	agreement	NOUN
cet-13710	98	18	with	with	ADP
cet-13710	98	19	experimental	experimental	ADJ
cet-13710	98	20	data	datum	NOUN
cet-13710	98	21	in	in	ADP
cet-13710	98	22	a	a	DET
cet-13710	98	23	wide	wide	ADJ
cet-13710	98	24	pressure	pressure	NOUN
cet-13710	98	25	range	range	NOUN
cet-13710	98	26	for	for	ADP
cet-13710	98	27	methane	methane	NOUN
cet-13710	98	28	(	(	PUNCT
cet-13710	98	29	1.14	1.14	NUM
cet-13710	98	30	to	to	PART
cet-13710	98	31	71bar	71bar	NUM
cet-13710	98	32	)	)	PUNCT
cet-13710	98	33	and	and	CCONJ
cet-13710	98	34	ethylene	ethylene	NOUN
cet-13710	98	35	(	(	PUNCT
cet-13710	98	36	8bar	8bar	NUM
cet-13710	98	37	,	,	PUNCT
cet-13710	98	38	see	see	VERB
cet-13710	98	39	figure	figure	NOUN
cet-13710	98	40	6	6	NUM
cet-13710	98	41	,	,	PUNCT
cet-13710	98	42	left	leave	VERB
cet-13710	98	43	)	)	PUNCT
cet-13710	98	44	.	.	PUNCT
cet-13710	99	1	in	in	ADP
cet-13710	99	2	addition	addition	NOUN
cet-13710	99	3	,	,	PUNCT
cet-13710	99	4	the	the	DET
cet-13710	99	5	velocity	velocity	NOUN
cet-13710	99	6	distributions	distribution	NOUN
cet-13710	99	7	show	show	VERB
cet-13710	99	8	good	good	ADJ
cet-13710	99	9	agreement	agreement	NOUN
cet-13710	99	10	for	for	ADP
cet-13710	99	11	air	air	NOUN
cet-13710	99	12	at	at	ADP
cet-13710	99	13	pressures	pressure	NOUN
cet-13710	99	14	between	between	ADP
cet-13710	99	15	1.548	1.548	NUM
cet-13710	99	16	and	and	CCONJ
cet-13710	99	17	31	31	NUM
cet-13710	99	18	bar	bar	NOUN
cet-13710	99	19	(	(	PUNCT
cet-13710	99	20	figure	figure	NOUN
cet-13710	99	21	6	6	NUM
cet-13710	99	22	,	,	PUNCT
cet-13710	99	23	middle	middle	ADJ
cet-13710	99	24	)	)	PUNCT
cet-13710	99	25	.	.	PUNCT
cet-13710	100	1	figure	figure	VERB
cet-13710	100	2	6	6	NUM
cet-13710	100	3	:	:	PUNCT
cet-13710	100	4	comparison	comparison	NOUN
cet-13710	100	5	of	of	ADP
cet-13710	100	6	simulations	simulation	NOUN
cet-13710	100	7	and	and	CCONJ
cet-13710	100	8	experimental	experimental	ADJ
cet-13710	100	9	data	datum	NOUN
cet-13710	100	10	for	for	ADP
cet-13710	100	11	a	a	DET
cet-13710	100	12	release	release	NOUN
cet-13710	100	13	of	of	ADP
cet-13710	100	14	:	:	PUNCT
cet-13710	100	15	ethylene	ethylene	NOUN
cet-13710	100	16	at	at	ADP
cet-13710	100	17	8bar	8bar	NUM
cet-13710	100	18	,	,	PUNCT
cet-13710	100	19	2.7	2.7	NUM
cet-13710	100	20	mm	mm	NOUN
cet-13710	100	21	hole	hole	NOUN
cet-13710	100	22	(	(	PUNCT
cet-13710	100	23	birch	birch	NOUN
cet-13710	100	24	et	et	PROPN
cet-13710	100	25	al	al	PROPN
cet-13710	100	26	.	.	PROPN
cet-13710	100	27	,	,	PUNCT
cet-13710	100	28	1987	1987	NUM
cet-13710	100	29	)	)	PUNCT
cet-13710	100	30	(	(	PUNCT
cet-13710	100	31	left	left	ADV
cet-13710	100	32	)	)	PUNCT
cet-13710	100	33	,	,	PUNCT
cet-13710	100	34	air	air	NOUN
cet-13710	100	35	at	at	ADP
cet-13710	100	36	31bar	31bar	NOUN
cet-13710	100	37	,	,	PUNCT
cet-13710	100	38	2.7	2.7	NUM
cet-13710	100	39	mm	mm	NOUN
cet-13710	100	40	hole	hole	NOUN
cet-13710	100	41	(	(	PUNCT
cet-13710	100	42	birch	birch	NOUN
cet-13710	100	43	et	et	PROPN
cet-13710	100	44	al	al	PROPN
cet-13710	100	45	.	.	PROPN
cet-13710	100	46	,	,	PUNCT
cet-13710	100	47	1984	1984	NUM
cet-13710	100	48	)	)	PUNCT
cet-13710	100	49	(	(	PUNCT
cet-13710	100	50	middle	middle	ADJ
cet-13710	100	51	)	)	PUNCT
cet-13710	100	52	and	and	CCONJ
cet-13710	100	53	h2	h2	PROPN
cet-13710	100	54	/	/	SYM
cet-13710	100	55	n2	n2	NOUN
cet-13710	100	56	mixture	mixture	NOUN
cet-13710	100	57	(	(	PUNCT
cet-13710	100	58	sautet	sautet	NOUN
cet-13710	100	59	and	and	CCONJ
cet-13710	100	60	stepowski	stepowski	NOUN
cet-13710	100	61	,	,	PUNCT
cet-13710	100	62	1995	1995	NUM
cet-13710	100	63	)	)	PUNCT
cet-13710	100	64	for	for	ADP
cet-13710	100	65	low	low	ADJ
cet-13710	100	66	speed	speed	NOUN
cet-13710	100	67	release	release	NOUN
cet-13710	100	68	of	of	ADP
cet-13710	100	69	45	45	NUM
cet-13710	100	70	m/s	m/s	PROPN
cet-13710	100	71	,	,	PUNCT
cet-13710	100	72	10	10	NUM
cet-13710	100	73	mm	mm	PROPN
cet-13710	100	74	hole	hole	NOUN
cet-13710	100	75	(	(	PUNCT
cet-13710	100	76	right	right	ADJ
cet-13710	100	77	)	)	PUNCT
cet-13710	100	78	29	29	NUM
cet-13710	100	79	comparing	compare	VERB
cet-13710	100	80	the	the	DET
cet-13710	100	81	birch	birch	NOUN
cet-13710	100	82	et	et	PROPN
cet-13710	100	83	al	al	PROPN
cet-13710	100	84	.	.	PROPN
cet-13710	100	85	1987	1987	NUM
cet-13710	100	86	publications	publication	NOUN
cet-13710	100	87	with	with	ADP
cet-13710	100	88	birch	birch	NOUN
cet-13710	100	89	et	et	PROPN
cet-13710	100	90	al	al	PROPN
cet-13710	100	91	.	.	PROPN
cet-13710	101	1	(	(	PUNCT
cet-13710	101	2	1984	1984	NUM
cet-13710	101	3	)	)	PUNCT
cet-13710	101	4	it	it	PRON
cet-13710	101	5	turns	turn	VERB
cet-13710	101	6	out	out	ADP
cet-13710	101	7	that	that	SCONJ
cet-13710	101	8	the	the	DET
cet-13710	101	9	experimental	experimental	ADJ
cet-13710	101	10	concentration	concentration	NOUN
cet-13710	101	11	data	datum	NOUN
cet-13710	101	12	has	have	AUX
cet-13710	101	13	been	be	AUX
cet-13710	101	14	nondimensionalized	nondimensionalize	VERB
cet-13710	101	15	in	in	ADP
cet-13710	101	16	different	different	ADJ
cet-13710	101	17	ways	way	NOUN
cet-13710	101	18	applying	apply	VERB
cet-13710	101	19	a	a	DET
cet-13710	101	20	discharge	discharge	NOUN
cet-13710	101	21	coefficient	coefficient	NOUN
cet-13710	101	22	of	of	ADP
cet-13710	101	23	0.85	0.85	NUM
cet-13710	101	24	in	in	ADP
cet-13710	101	25	the	the	DET
cet-13710	101	26	1984	1984	NUM
cet-13710	101	27	paper	paper	NOUN
cet-13710	101	28	.	.	PUNCT
cet-13710	102	1	from	from	ADP
cet-13710	102	2	the	the	DET
cet-13710	102	3	1987	1987	NUM
cet-13710	102	4	publication	publication	NOUN
cet-13710	102	5	,	,	PUNCT
cet-13710	102	6	the	the	DET
cet-13710	102	7	absolute	absolute	ADJ
cet-13710	102	8	concentrations	concentration	NOUN
cet-13710	102	9	could	could	AUX
cet-13710	102	10	be	be	AUX
cet-13710	102	11	reconstructed	reconstruct	VERB
cet-13710	102	12	applying	apply	VERB
cet-13710	102	13	the	the	DET
cet-13710	102	14	given	give	VERB
cet-13710	102	15	discharge	discharge	NOUN
cet-13710	102	16	coefficient	coefficient	NOUN
cet-13710	102	17	of	of	ADP
cet-13710	102	18	1	1	NUM
cet-13710	102	19	which	which	PRON
cet-13710	102	20	was	be	AUX
cet-13710	102	21	also	also	ADV
cet-13710	102	22	used	use	VERB
cet-13710	102	23	during	during	ADP
cet-13710	102	24	the	the	DET
cet-13710	102	25	simulations	simulation	NOUN
cet-13710	102	26	and	and	CCONJ
cet-13710	102	27	the	the	DET
cet-13710	102	28	given	give	VERB
cet-13710	102	29	pseudo	pseudo	NOUN
cet-13710	102	30	-	-	PUNCT
cet-13710	102	31	source	source	NOUN
cet-13710	102	32	dimension	dimension	NOUN
cet-13710	102	33	.	.	PUNCT
cet-13710	103	1	since	since	SCONJ
cet-13710	103	2	all	all	DET
cet-13710	103	3	experiments	experiment	NOUN
cet-13710	103	4	have	have	AUX
cet-13710	103	5	been	be	AUX
cet-13710	103	6	performed	perform	VERB
cet-13710	103	7	with	with	ADP
cet-13710	103	8	a	a	DET
cet-13710	103	9	contoured	contoured	ADJ
cet-13710	103	10	amal	amal	ADJ
cet-13710	103	11	type	type	NOUN
cet-13710	103	12	10120	10120	NUM
cet-13710	103	13	nozzle	nozzle	NOUN
cet-13710	103	14	,	,	PUNCT
cet-13710	103	15	the	the	DET
cet-13710	103	16	value	value	NOUN
cet-13710	103	17	for	for	ADP
cet-13710	103	18	the	the	DET
cet-13710	103	19	discharge	discharge	NOUN
cet-13710	103	20	coefficient	coefficient	NOUN
cet-13710	103	21	can	can	AUX
cet-13710	103	22	be	be	AUX
cet-13710	103	23	justified	justify	VERB
cet-13710	103	24	.	.	PUNCT
cet-13710	104	1	for	for	ADP
cet-13710	104	2	very	very	ADV
cet-13710	104	3	low	low	ADJ
cet-13710	104	4	mach	mach	NOUN
cet-13710	104	5	number	number	NOUN
cet-13710	104	6	release	release	NOUN
cet-13710	104	7	conditions	condition	NOUN
cet-13710	104	8	,	,	PUNCT
cet-13710	104	9	the	the	DET
cet-13710	104	10	experimental	experimental	ADJ
cet-13710	104	11	data	datum	NOUN
cet-13710	104	12	of	of	ADP
cet-13710	104	13	sautet	sautet	NOUN
cet-13710	104	14	and	and	CCONJ
cet-13710	104	15	stepowski	stepowski	NOUN
cet-13710	104	16	(	(	PUNCT
cet-13710	104	17	1995	1995	NUM
cet-13710	104	18	)	)	PUNCT
cet-13710	104	19	with	with	ADP
cet-13710	104	20	a	a	DET
cet-13710	104	21	release	release	NOUN
cet-13710	104	22	of	of	ADP
cet-13710	104	23	a	a	DET
cet-13710	104	24	mixture	mixture	NOUN
cet-13710	104	25	of	of	ADP
cet-13710	104	26	80	80	NUM
cet-13710	104	27	%	%	NOUN
cet-13710	104	28	hydrogen	hydrogen	NOUN
cet-13710	104	29	and	and	CCONJ
cet-13710	104	30	20	20	NUM
cet-13710	104	31	%	%	NOUN
cet-13710	104	32	nitrogen	nitrogen	NOUN
cet-13710	104	33	was	be	AUX
cet-13710	104	34	simulated	simulate	VERB
cet-13710	104	35	.	.	PUNCT
cet-13710	105	1	applying	apply	VERB
cet-13710	105	2	the	the	DET
cet-13710	105	3	witze	witze	PROPN
cet-13710	105	4	correction	correction	NOUN
cet-13710	105	5	shows	show	VERB
cet-13710	105	6	a	a	DET
cet-13710	105	7	significantly	significantly	ADV
cet-13710	105	8	improved	improve	VERB
cet-13710	105	9	agreement	agreement	NOUN
cet-13710	105	10	with	with	ADP
cet-13710	105	11	the	the	DET
cet-13710	105	12	experimental	experimental	ADJ
cet-13710	105	13	data	datum	NOUN
cet-13710	105	14	,	,	PUNCT
cet-13710	105	15	compare	compare	ADJ
cet-13710	105	16	figure	figure	NOUN
cet-13710	105	17	6c	6c	NOUN
cet-13710	105	18	.	.	PUNCT
cet-13710	106	1	4	4	X
cet-13710	106	2	.	.	X
cet-13710	106	3	conclusions	conclusion	NOUN
cet-13710	106	4	the	the	DET
cet-13710	106	5	present	present	ADJ
cet-13710	106	6	paper	paper	NOUN
cet-13710	106	7	describes	describe	VERB
cet-13710	106	8	the	the	DET
cet-13710	106	9	modifications	modification	NOUN
cet-13710	106	10	in	in	ADP
cet-13710	106	11	the	the	DET
cet-13710	106	12	effects	effect	NOUN
cet-13710	106	13	v12	v12	VERB
cet-13710	106	14	turbulent	turbulent	ADJ
cet-13710	106	15	free	free	ADJ
cet-13710	106	16	jet	jet	NOUN
cet-13710	106	17	model	model	NOUN
cet-13710	106	18	made	make	VERB
cet-13710	106	19	to	to	ADP
cet-13710	106	20	the	the	DET
cet-13710	106	21	original	original	ADJ
cet-13710	106	22	chen	chen	PROPN
cet-13710	106	23	&	&	CCONJ
cet-13710	106	24	rodi	rodi	PROPN
cet-13710	106	25	model	model	NOUN
cet-13710	106	26	including	include	VERB
cet-13710	106	27	corrections	correction	NOUN
cet-13710	106	28	,	,	PUNCT
cet-13710	106	29	as	as	ADV
cet-13710	106	30	well	well	ADV
cet-13710	106	31	as	as	ADP
cet-13710	106	32	the	the	DET
cet-13710	106	33	new	new	ADJ
cet-13710	106	34	model	model	NOUN
cet-13710	106	35	for	for	ADP
cet-13710	106	36	an	an	DET
cet-13710	106	37	equivalent	equivalent	ADJ
cet-13710	106	38	source	source	NOUN
cet-13710	106	39	for	for	ADP
cet-13710	106	40	under	under	ADP
cet-13710	106	41	expanded	expand	VERB
cet-13710	106	42	conditions	condition	NOUN
cet-13710	106	43	.	.	PUNCT
cet-13710	107	1	the	the	DET
cet-13710	107	2	model	model	NOUN
cet-13710	107	3	uses	use	VERB
cet-13710	107	4	one	one	NUM
cet-13710	107	5	set	set	NOUN
cet-13710	107	6	of	of	ADP
cet-13710	107	7	model	model	NOUN
cet-13710	107	8	constants	constant	NOUN
cet-13710	107	9	for	for	ADP
cet-13710	107	10	the	the	DET
cet-13710	107	11	entire	entire	ADJ
cet-13710	107	12	range	range	NOUN
cet-13710	107	13	of	of	ADP
cet-13710	107	14	release	release	NOUN
cet-13710	107	15	conditions	condition	NOUN
cet-13710	107	16	.	.	PUNCT
cet-13710	108	1	the	the	DET
cet-13710	108	2	concentration	concentration	NOUN
cet-13710	108	3	distributions	distribution	NOUN
cet-13710	108	4	in	in	ADP
cet-13710	108	5	effects	effect	NOUN
cet-13710	108	6	v12	v12	VERB
cet-13710	108	7	are	be	AUX
cet-13710	108	8	less	less	ADV
cet-13710	108	9	conservative	conservative	ADJ
cet-13710	108	10	than	than	ADP
cet-13710	108	11	in	in	ADP
cet-13710	108	12	effects	effect	NOUN
cet-13710	108	13	v11	v11	NOUN
cet-13710	108	14	.	.	PUNCT
cet-13710	109	1	the	the	DET
cet-13710	109	2	model	model	NOUN
cet-13710	109	3	in	in	ADP
cet-13710	109	4	effects	effect	NOUN
cet-13710	109	5	v12	v12	VERB
cet-13710	109	6	has	have	AUX
cet-13710	109	7	been	be	AUX
cet-13710	109	8	extensively	extensively	ADV
cet-13710	109	9	validated	validate	VERB
cet-13710	109	10	and	and	CCONJ
cet-13710	109	11	shows	show	VERB
cet-13710	109	12	excellent	excellent	ADJ
cet-13710	109	13	agreement	agreement	NOUN
cet-13710	109	14	with	with	ADP
cet-13710	109	15	experimental	experimental	ADJ
cet-13710	109	16	data	datum	NOUN
cet-13710	109	17	for	for	ADP
cet-13710	109	18	a	a	DET
cet-13710	109	19	wide	wide	ADJ
cet-13710	109	20	range	range	NOUN
cet-13710	109	21	of	of	ADP
cet-13710	109	22	conditions	condition	NOUN
cet-13710	109	23	from	from	ADP
cet-13710	109	24	low	low	ADJ
cet-13710	109	25	to	to	ADP
cet-13710	109	26	high	high	ADJ
cet-13710	109	27	pressure	pressure	NOUN
cet-13710	109	28	conditions	condition	NOUN
cet-13710	109	29	including	include	VERB
cet-13710	109	30	release	release	NOUN
cet-13710	109	31	substances	substance	NOUN
cet-13710	109	32	ranging	range	VERB
cet-13710	109	33	from	from	ADP
cet-13710	109	34	light	light	NOUN
cet-13710	109	35	to	to	ADP
cet-13710	109	36	heavy	heavy	ADJ
cet-13710	109	37	gas	gas	NOUN
cet-13710	109	38	.	.	PUNCT
cet-13710	110	1	references	reference	NOUN
cet-13710	110	2	birch	birch	PROPN
cet-13710	110	3	,	,	PUNCT
cet-13710	110	4	a.	a.	PROPN
cet-13710	110	5	d.	d.	PROPN
cet-13710	110	6	,	,	PUNCT
cet-13710	110	7	brown	brown	PROPN
cet-13710	110	8	,	,	PUNCT
cet-13710	110	9	d.	d.	PROPN
cet-13710	110	10	r.	r.	PROPN
cet-13710	110	11	,	,	PUNCT
cet-13710	110	12	dodson	dodson	PROPN
cet-13710	110	13	,	,	PUNCT
cet-13710	110	14	m.	m.	NOUN
cet-13710	110	15	g.	g.	PROPN
cet-13710	110	16	,	,	PUNCT
cet-13710	110	17	&	&	CCONJ
cet-13710	110	18	swaffield	swaffield	PROPN
cet-13710	110	19	,	,	PUNCT
cet-13710	110	20	f.	f.	PROPN
cet-13710	110	21	,	,	PUNCT
cet-13710	110	22	1984	1984	NUM
cet-13710	110	23	,	,	PUNCT
cet-13710	110	24	the	the	DET
cet-13710	110	25	structure	structure	NOUN
cet-13710	110	26	and	and	CCONJ
cet-13710	110	27	concentration	concentration	NOUN
cet-13710	110	28	decay	decay	NOUN
cet-13710	110	29	of	of	ADP
cet-13710	110	30	high	high	ADJ
cet-13710	110	31	pressure	pressure	NOUN
cet-13710	110	32	jets	jet	NOUN
cet-13710	110	33	of	of	ADP
cet-13710	110	34	natural	natural	ADJ
cet-13710	110	35	gas	gas	NOUN
cet-13710	110	36	.	.	PUNCT
cet-13710	111	1	combustion	combustion	NOUN
cet-13710	111	2	science	science	NOUN
cet-13710	111	3	and	and	CCONJ
cet-13710	111	4	technology	technology	NOUN
cet-13710	111	5	,	,	PUNCT
cet-13710	111	6	36(5	36(5	NUM
cet-13710	111	7	-	-	SYM
cet-13710	111	8	6	6	NUM
cet-13710	111	9	)	)	PUNCT
cet-13710	111	10	,	,	PUNCT
cet-13710	111	11	249	249	NUM
cet-13710	111	12	-	-	SYM
cet-13710	111	13	261	261	NUM
cet-13710	111	14	.	.	PUNCT
cet-13710	112	1	birch	birch	PROPN
cet-13710	112	2	,	,	PUNCT
cet-13710	112	3	a.	a.	PROPN
cet-13710	112	4	d.	d.	PROPN
cet-13710	112	5	,	,	PUNCT
cet-13710	112	6	hughes	hughes	PROPN
cet-13710	112	7	,	,	PUNCT
cet-13710	112	8	d.	d.	PROPN
cet-13710	112	9	j.	j.	PROPN
cet-13710	112	10	,	,	PUNCT
cet-13710	112	11	&	&	CCONJ
cet-13710	112	12	swaffield	swaffield	PROPN
cet-13710	112	13	,	,	PUNCT
cet-13710	112	14	f.	f.	PROPN
cet-13710	112	15	,	,	PUNCT
cet-13710	112	16	1987	1987	NUM
cet-13710	112	17	,	,	PUNCT
cet-13710	112	18	velocity	velocity	NOUN
cet-13710	112	19	decay	decay	NOUN
cet-13710	112	20	of	of	ADP
cet-13710	112	21	high	high	ADJ
cet-13710	112	22	pressure	pressure	NOUN
cet-13710	112	23	jets	jet	NOUN
cet-13710	112	24	.	.	PUNCT
cet-13710	113	1	combustion	combustion	NOUN
cet-13710	113	2	science	science	NOUN
cet-13710	113	3	and	and	CCONJ
cet-13710	113	4	technology	technology	NOUN
cet-13710	113	5	,	,	PUNCT
cet-13710	113	6	52(1	52(1	NOUN
cet-13710	113	7	-	-	SYM
cet-13710	113	8	3	3	NUM
cet-13710	113	9	)	)	PUNCT
cet-13710	113	10	,	,	PUNCT
cet-13710	113	11	161	161	NUM
cet-13710	113	12	-	-	SYM
cet-13710	113	13	171	171	NUM
cet-13710	113	14	.	.	PUNCT
cet-13710	114	1	bonelli	bonelli	PROPN
cet-13710	114	2	,	,	PUNCT
cet-13710	114	3	f.	f.	PROPN
cet-13710	114	4	,	,	PUNCT
cet-13710	114	5	2013	2013	NUM
cet-13710	114	6	,	,	PUNCT
cet-13710	114	7	a	a	DET
cet-13710	114	8	numerical	numerical	ADJ
cet-13710	114	9	investigation	investigation	NOUN
cet-13710	114	10	of	of	ADP
cet-13710	114	11	turbulent	turbulent	ADJ
cet-13710	114	12	compressible	compressible	ADJ
cet-13710	114	13	hydrogen	hydrogen	NOUN
cet-13710	114	14	jets	jet	NOUN
cet-13710	114	15	(	(	PUNCT
cet-13710	114	16	doctoral	doctoral	ADJ
cet-13710	114	17	dissertation	dissertation	NOUN
cet-13710	114	18	,	,	PUNCT
cet-13710	114	19	phd	phd	NOUN
cet-13710	114	20	thesis	thesis	NOUN
cet-13710	114	21	,	,	PUNCT
cet-13710	114	22	school	school	NOUN
cet-13710	114	23	of	of	ADP
cet-13710	114	24	engineering	engineering	NOUN
cet-13710	114	25	,	,	PUNCT
cet-13710	114	26	university	university	PROPN
cet-13710	114	27	of	of	ADP
cet-13710	114	28	basilicata	basilicata	PROPN
cet-13710	114	29	,	,	PUNCT
cet-13710	114	30	potenza	potenza	PROPN
cet-13710	114	31	,	,	PUNCT
cet-13710	114	32	italy	italy	PROPN
cet-13710	114	33	)	)	PUNCT
cet-13710	114	34	.	.	PUNCT
cet-13710	115	1	chen	chen	PROPN
cet-13710	115	2	,	,	PUNCT
cet-13710	115	3	c.j	c.j	PROPN
cet-13710	115	4	.	.	PROPN
cet-13710	115	5	,	,	PUNCT
cet-13710	115	6	rodi	rodi	PROPN
cet-13710	115	7	,	,	PUNCT
cet-13710	115	8	w.	w.	NOUN
cet-13710	115	9	,	,	PUNCT
cet-13710	115	10	1980	1980	NUM
cet-13710	115	11	,	,	PUNCT
cet-13710	115	12	vertical	vertical	ADJ
cet-13710	115	13	turbulent	turbulent	ADJ
cet-13710	115	14	buoyant	buoyant	ADJ
cet-13710	115	15	jets	jet	NOUN
cet-13710	115	16	:	:	PUNCT
cet-13710	115	17	a	a	DET
cet-13710	115	18	review	review	NOUN
cet-13710	115	19	of	of	ADP
cet-13710	115	20	experimental	experimental	ADJ
cet-13710	115	21	data	datum	NOUN
cet-13710	115	22	.	.	PUNCT
cet-13710	116	1	oxford	oxford	PROPN
cet-13710	116	2	and	and	CCONJ
cet-13710	116	3	new	new	PROPN
cet-13710	116	4	york	york	PROPN
cet-13710	116	5	,	,	PUNCT
cet-13710	116	6	pergamon	pergamon	PROPN
cet-13710	116	7	press	press	PROPN
cet-13710	116	8	(	(	PUNCT
cet-13710	116	9	hmt	hmt	NOUN
cet-13710	116	10	science	science	NOUN
cet-13710	116	11	and	and	CCONJ
cet-13710	116	12	applications	application	NOUN
cet-13710	116	13	of	of	ADP
cet-13710	116	14	heat	heat	NOUN
cet-13710	116	15	and	and	CCONJ
cet-13710	116	16	mass	mass	NOUN
cet-13710	116	17	transfer	transfer	NOUN
cet-13710	116	18	.	.	PUNCT
cet-13710	117	1	volume	volume	NOUN
cet-13710	117	2	4	4	NUM
cet-13710	117	3	)	)	PUNCT
cet-13710	117	4	.	.	PUNCT
cet-13710	118	1	crist	crist	PROPN
cet-13710	118	2	s.	s.	PROPN
cet-13710	118	3	,	,	PUNCT
cet-13710	118	4	sherman	sherman	PROPN
cet-13710	118	5	p.m.	p.m.	PROPN
cet-13710	118	6	,	,	PUNCT
cet-13710	118	7	glass	glass	PROPN
cet-13710	118	8	d.r	d.r	PROPN
cet-13710	118	9	.	.	PROPN
cet-13710	118	10	,	,	PUNCT
cet-13710	118	11	1966	1966	NUM
cet-13710	118	12	,	,	PUNCT
cet-13710	118	13	study	study	NOUN
cet-13710	118	14	of	of	ADP
cet-13710	118	15	the	the	DET
cet-13710	118	16	highly	highly	ADV
cet-13710	118	17	underexpanded	underexpanded	ADJ
cet-13710	118	18	sonic	sonic	ADJ
cet-13710	118	19	jet	jet	NOUN
cet-13710	118	20	,	,	PUNCT
cet-13710	118	21	aiaa	aiaa	ADJ
cet-13710	118	22	journal	journal	PROPN
cet-13710	118	23	,	,	PUNCT
cet-13710	118	24	4	4	NUM
cet-13710	118	25	,	,	PUNCT
cet-13710	118	26	pp68	pp68	PROPN
cet-13710	118	27	-	-	SYM
cet-13710	118	28	71	71	NUM
cet-13710	118	29	daubech	daubech	NOUN
cet-13710	118	30	,	,	PUNCT
cet-13710	118	31	j.	j.	PROPN
cet-13710	118	32	,	,	PUNCT
cet-13710	118	33	hebrard	hebrard	PROPN
cet-13710	118	34	,	,	PUNCT
cet-13710	118	35	j.	j.	PROPN
cet-13710	118	36	,	,	PUNCT
cet-13710	118	37	jallais	jallais	PROPN
cet-13710	118	38	,	,	PUNCT
cet-13710	118	39	s.	s.	PROPN
cet-13710	118	40	,	,	PUNCT
cet-13710	118	41	vyazmina	vyazmina	PROPN
cet-13710	118	42	,	,	PUNCT
cet-13710	118	43	e.	e.	PROPN
cet-13710	118	44	,	,	PUNCT
cet-13710	118	45	jamois	jamois	PROPN
cet-13710	118	46	,	,	PUNCT
cet-13710	118	47	d.	d.	PROPN
cet-13710	118	48	,	,	PUNCT
cet-13710	118	49	&	&	CCONJ
cet-13710	118	50	verbecke	verbecke	PROPN
cet-13710	118	51	,	,	PUNCT
cet-13710	118	52	f.	f.	PROPN
cet-13710	118	53	,	,	PUNCT
cet-13710	118	54	2015	2015	NUM
cet-13710	118	55	,	,	PUNCT
cet-13710	118	56	un	un	ADJ
cet-13710	118	57	-	-	ADJ
cet-13710	118	58	ignited	ignite	VERB
cet-13710	118	59	and	and	CCONJ
cet-13710	118	60	ignited	ignite	VERB
cet-13710	118	61	high	high	ADJ
cet-13710	118	62	pressure	pressure	NOUN
cet-13710	118	63	hydrogen	hydrogen	NOUN
cet-13710	118	64	releases	release	NOUN
cet-13710	118	65	:	:	PUNCT
cet-13710	118	66	concentration	concentration	NOUN
cet-13710	118	67	–	–	PUNCT
cet-13710	118	68	turbulence	turbulence	NOUN
cet-13710	118	69	mapping	mapping	NOUN
cet-13710	118	70	and	and	CCONJ
cet-13710	118	71	overpressure	overpressure	NOUN
cet-13710	118	72	effects	effect	NOUN
cet-13710	118	73	.	.	PUNCT
cet-13710	119	1	journal	journal	NOUN
cet-13710	119	2	of	of	ADP
cet-13710	119	3	loss	loss	NOUN
cet-13710	119	4	prevention	prevention	NOUN
cet-13710	119	5	in	in	ADP
cet-13710	119	6	the	the	DET
cet-13710	119	7	process	process	NOUN
cet-13710	119	8	industries	industry	NOUN
cet-13710	119	9	,	,	PUNCT
cet-13710	119	10	36	36	NUM
cet-13710	119	11	,	,	PUNCT
cet-13710	119	12	439	439	NUM
cet-13710	119	13	-	-	SYM
cet-13710	119	14	446	446	NUM
cet-13710	119	15	.	.	PUNCT
cet-13710	120	1	donaldson	donaldson	PROPN
cet-13710	120	2	,	,	PUNCT
cet-13710	120	3	c.d	c.d	PROPN
cet-13710	120	4	.	.	PROPN
cet-13710	120	5	,	,	PUNCT
cet-13710	120	6	snedeker	snedeker	PROPN
cet-13710	120	7	r.s	r.s	PROPN
cet-13710	120	8	.	.	PROPN
cet-13710	120	9	,	,	PUNCT
cet-13710	120	10	1971	1971	NUM
cet-13710	120	11	,	,	PUNCT
cet-13710	120	12	a	a	DET
cet-13710	120	13	study	study	NOUN
cet-13710	120	14	of	of	ADP
cet-13710	120	15	free	free	ADJ
cet-13710	120	16	jet	jet	NOUN
cet-13710	120	17	impingement	impingement	NOUN
cet-13710	120	18	.	.	PUNCT
cet-13710	121	1	part	part	NOUN
cet-13710	121	2	1	1	NUM
cet-13710	121	3	.	.	PUNCT
cet-13710	122	1	mean	mean	ADJ
cet-13710	122	2	properties	property	NOUN
cet-13710	122	3	of	of	ADP
cet-13710	122	4	free	free	ADJ
cet-13710	122	5	and	and	CCONJ
cet-13710	122	6	impinging	impinge	VERB
cet-13710	122	7	jets	jet	NOUN
cet-13710	122	8	,	,	PUNCT
cet-13710	122	9	journal	journal	NOUN
cet-13710	122	10	of	of	ADP
cet-13710	122	11	fluid	fluid	ADJ
cet-13710	122	12	mechanics	mechanic	NOUN
cet-13710	122	13	,	,	PUNCT
cet-13710	122	14	45	45	NUM
cet-13710	122	15	,	,	PUNCT
cet-13710	122	16	pp281	pp281	NOUN
cet-13710	122	17	-	-	SYM
cet-13710	122	18	319	319	NUM
cet-13710	122	19	franquet	franquet	NOUN
cet-13710	122	20	,	,	PUNCT
cet-13710	122	21	e.	e.	PROPN
cet-13710	122	22	,	,	PUNCT
cet-13710	122	23	perrier	perrier	PROPN
cet-13710	122	24	,	,	PUNCT
cet-13710	122	25	v.	v.	ADV
cet-13710	122	26	,	,	PUNCT
cet-13710	122	27	gibout	gibout	NOUN
cet-13710	122	28	,	,	PUNCT
cet-13710	122	29	s.	s.	PROPN
cet-13710	122	30	,	,	PUNCT
cet-13710	122	31	&	&	CCONJ
cet-13710	122	32	bruel	bruel	PROPN
cet-13710	122	33	,	,	PUNCT
cet-13710	122	34	p.	p.	NOUN
cet-13710	122	35	,	,	PUNCT
cet-13710	122	36	2015	2015	NUM
cet-13710	122	37	,	,	PUNCT
cet-13710	122	38	free	free	ADJ
cet-13710	122	39	underexpanded	underexpanded	ADJ
cet-13710	122	40	jets	jet	NOUN
cet-13710	122	41	in	in	ADP
cet-13710	122	42	a	a	DET
cet-13710	122	43	quiescent	quiescent	ADJ
cet-13710	122	44	medium	medium	NOUN
cet-13710	122	45	:	:	PUNCT
cet-13710	122	46	a	a	DET
cet-13710	122	47	review	review	NOUN
cet-13710	122	48	.	.	PUNCT
cet-13710	123	1	progress	progress	NOUN
cet-13710	123	2	in	in	ADP
cet-13710	123	3	aerospace	aerospace	NOUN
cet-13710	123	4	sciences	science	NOUN
cet-13710	123	5	,	,	PUNCT
cet-13710	123	6	77	77	NUM
cet-13710	123	7	,	,	PUNCT
cet-13710	123	8	25	25	NUM
cet-13710	123	9	-	-	SYM
cet-13710	123	10	53	53	NUM
cet-13710	123	11	.	.	PUNCT
cet-13710	124	1	han	han	PROPN
cet-13710	124	2	,	,	PUNCT
cet-13710	124	3	s.	s.	PROPN
cet-13710	124	4	h.	h.	PROPN
cet-13710	124	5	,	,	PUNCT
cet-13710	124	6	chang	chang	PROPN
cet-13710	124	7	,	,	PUNCT
cet-13710	124	8	d.	d.	PROPN
cet-13710	124	9	,	,	PUNCT
cet-13710	124	10	&	&	CCONJ
cet-13710	124	11	kim	kim	PROPN
cet-13710	124	12	,	,	PUNCT
cet-13710	124	13	j.	j.	PROPN
cet-13710	124	14	s.	s.	PROPN
cet-13710	124	15	,	,	PUNCT
cet-13710	124	16	2013	2013	NUM
cet-13710	124	17	,	,	PUNCT
cet-13710	124	18	release	release	VERB
cet-13710	124	19	characteristics	characteristic	NOUN
cet-13710	124	20	of	of	ADP
cet-13710	124	21	highly	highly	ADV
cet-13710	124	22	pressurized	pressurized	ADJ
cet-13710	124	23	hydrogen	hydrogen	NOUN
cet-13710	124	24	through	through	ADP
cet-13710	124	25	a	a	DET
cet-13710	124	26	small	small	ADJ
cet-13710	124	27	hole	hole	NOUN
cet-13710	124	28	.	.	PUNCT
cet-13710	125	1	international	international	ADJ
cet-13710	125	2	journal	journal	PROPN
cet-13710	125	3	of	of	ADP
cet-13710	125	4	hydrogen	hydrogen	NOUN
cet-13710	125	5	energy	energy	NOUN
cet-13710	125	6	,	,	PUNCT
cet-13710	125	7	38(8	38(8	NUM
cet-13710	125	8	)	)	PUNCT
cet-13710	125	9	,	,	PUNCT
cet-13710	125	10	3503	3503	NUM
cet-13710	125	11	-	-	SYM
cet-13710	125	12	3512	3512	NUM
cet-13710	125	13	.	.	PUNCT
cet-13710	126	1	jallais	jallais	PROPN
cet-13710	126	2	,	,	PUNCT
cet-13710	126	3	s.	s.	PROPN
cet-13710	126	4	,	,	PUNCT
cet-13710	126	5	vyazmina	vyazmina	PROPN
cet-13710	126	6	,	,	PUNCT
cet-13710	126	7	e.	e.	PROPN
cet-13710	126	8	,	,	PUNCT
cet-13710	126	9	miller	miller	PROPN
cet-13710	126	10	,	,	PUNCT
cet-13710	126	11	d.	d.	PROPN
cet-13710	126	12	,	,	PUNCT
cet-13710	126	13	&	&	CCONJ
cet-13710	126	14	thomas	thomas	PROPN
cet-13710	126	15	,	,	PUNCT
cet-13710	126	16	j.	j.	PROPN
cet-13710	126	17	k.	k.	PROPN
cet-13710	126	18	,	,	PUNCT
cet-13710	126	19	2018	2018	NUM
cet-13710	126	20	,	,	PUNCT
cet-13710	126	21	hydrogen	hydrogen	NOUN
cet-13710	126	22	jet	jet	NOUN
cet-13710	126	23	vapor	vapor	NOUN
cet-13710	126	24	cloud	cloud	NOUN
cet-13710	126	25	explosion	explosion	NOUN
cet-13710	126	26	:	:	PUNCT
cet-13710	126	27	a	a	DET
cet-13710	126	28	model	model	NOUN
cet-13710	126	29	for	for	ADP
cet-13710	126	30	predicting	predict	VERB
cet-13710	126	31	blast	blast	NOUN
cet-13710	126	32	size	size	NOUN
cet-13710	126	33	and	and	CCONJ
cet-13710	126	34	application	application	NOUN
cet-13710	126	35	to	to	PART
cet-13710	126	36	risk	risk	VERB
cet-13710	126	37	assessment	assessment	NOUN
cet-13710	126	38	.	.	PUNCT
cet-13710	127	1	process	process	NOUN
cet-13710	127	2	safety	safety	NOUN
cet-13710	127	3	progress	progress	NOUN
cet-13710	127	4	,	,	PUNCT
cet-13710	127	5	37(3	37(3	NUM
cet-13710	127	6	)	)	PUNCT
cet-13710	127	7	,	,	PUNCT
cet-13710	127	8	397	397	NUM
cet-13710	127	9	-	-	SYM
cet-13710	127	10	410	410	NUM
cet-13710	127	11	.	.	PUNCT
cet-13710	128	1	mack	mack	PROPN
cet-13710	128	2	,	,	PUNCT
cet-13710	128	3	a.	a.	NOUN
cet-13710	128	4	,	,	PUNCT
cet-13710	128	5	ruiz	ruiz	NOUN
cet-13710	128	6	-	-	PUNCT
cet-13710	128	7	pérez	pérez	NOUN
cet-13710	128	8	,	,	PUNCT
cet-13710	128	9	s.	s.	PROPN
cet-13710	128	10	,	,	PUNCT
cet-13710	128	11	boot	boot	PROPN
cet-13710	128	12	,	,	PUNCT
cet-13710	128	13	h.	h.	PROPN
cet-13710	128	14	,	,	PUNCT
cet-13710	128	15	2023	2023	NUM
cet-13710	128	16	,	,	PUNCT
cet-13710	128	17	extension	extension	NOUN
cet-13710	128	18	of	of	ADP
cet-13710	128	19	the	the	DET
cet-13710	128	20	effects	effect	NOUN
cet-13710	128	21	dispersion	dispersion	NOUN
cet-13710	128	22	model	model	NOUN
cet-13710	128	23	for	for	ADP
cet-13710	128	24	buoyant	buoyant	ADJ
cet-13710	128	25	plume	plume	NOUN
cet-13710	128	26	rise	rise	NOUN
cet-13710	128	27	including	include	VERB
cet-13710	128	28	lift	lift	NOUN
cet-13710	128	29	-	-	PUNCT
cet-13710	128	30	off	off	NOUN
cet-13710	128	31	,	,	PUNCT
cet-13710	128	32	process	process	NOUN
cet-13710	128	33	safety	safety	NOUN
cet-13710	128	34	and	and	CCONJ
cet-13710	128	35	environmental	environmental	ADJ
cet-13710	128	36	protection	protection	NOUN
cet-13710	128	37	,	,	PUNCT
cet-13710	128	38	volume	volume	NOUN
cet-13710	128	39	176	176	NUM
cet-13710	128	40	,	,	PUNCT
cet-13710	128	41	747	747	NUM
cet-13710	128	42	-	-	SYM
cet-13710	128	43	762	762	NUM
cet-13710	128	44	.	.	PUNCT
cet-13710	128	45	molkov	molkov	PROPN
cet-13710	128	46	,	,	PUNCT
cet-13710	128	47	v.	v.	ADP
cet-13710	128	48	,	,	PUNCT
cet-13710	128	49	2012	2012	NUM
cet-13710	128	50	,	,	PUNCT
cet-13710	128	51	fundamentals	fundamental	NOUN
cet-13710	128	52	of	of	ADP
cet-13710	128	53	hydrogen	hydrogen	NOUN
cet-13710	128	54	safety	safety	NOUN
cet-13710	128	55	engineering	engineering	NOUN
cet-13710	128	56	.	.	PUNCT
cet-13710	129	1	bookboon.com	bookboon.com	X
cet-13710	129	2	,	,	PUNCT
cet-13710	129	3	isbn	isbn	ADJ
cet-13710	129	4	:	:	PUNCT
cet-13710	129	5	978	978	NUM
cet-13710	129	6	-	-	SYM
cet-13710	129	7	87	87	NUM
cet-13710	129	8	.	.	PUNCT
cet-13710	130	1	roberts	roberts	PROPN
cet-13710	130	2	,	,	PUNCT
cet-13710	130	3	p.	p.	PROPN
cet-13710	130	4	t.	t.	PROPN
cet-13710	130	5	,	,	PUNCT
cet-13710	130	6	shirvill	shirvill	PROPN
cet-13710	130	7	,	,	PUNCT
cet-13710	130	8	l.	l.	PROPN
cet-13710	130	9	c.	c.	PROPN
cet-13710	130	10	,	,	PUNCT
cet-13710	130	11	roberts	roberts	PROPN
cet-13710	130	12	,	,	PUNCT
cet-13710	130	13	t.	t.	PROPN
cet-13710	130	14	a.	a.	PROPN
cet-13710	130	15	,	,	PUNCT
cet-13710	130	16	butler	butler	PROPN
cet-13710	130	17	,	,	PUNCT
cet-13710	130	18	c.	c.	PROPN
cet-13710	130	19	j.	j.	PROPN
cet-13710	130	20	,	,	PUNCT
cet-13710	130	21	&	&	CCONJ
cet-13710	130	22	royle	royle	PROPN
cet-13710	130	23	,	,	PUNCT
cet-13710	130	24	m.	m.	NOUN
cet-13710	130	25	,	,	PUNCT
cet-13710	130	26	2006	2006	NUM
cet-13710	130	27	,	,	PUNCT
cet-13710	130	28	dispersion	dispersion	NOUN
cet-13710	130	29	of	of	ADP
cet-13710	130	30	hydrogen	hydrogen	NOUN
cet-13710	130	31	from	from	ADP
cet-13710	130	32	high	high	ADJ
cet-13710	130	33	-	-	PUNCT
cet-13710	130	34	pressure	pressure	NOUN
cet-13710	130	35	sources	source	NOUN
cet-13710	130	36	.	.	PUNCT
cet-13710	131	1	in	in	ADP
cet-13710	131	2	:	:	PUNCT
cet-13710	131	3	institution	institution	NOUN
cet-13710	131	4	of	of	ADP
cet-13710	131	5	chemical	chemical	ADJ
cet-13710	131	6	engineers	engineer	NOUN
cet-13710	131	7	symposium	symposium	NOUN
cet-13710	131	8	series	series	PROPN
cet-13710	131	9	.	.	PUNCT
cet-13710	132	1	institution	institution	NOUN
cet-13710	132	2	of	of	ADP
cet-13710	132	3	chemical	chemical	ADJ
cet-13710	132	4	engineers	engineer	NOUN
cet-13710	132	5	1999	1999	NUM
cet-13710	132	6	,	,	PUNCT
cet-13710	132	7	p.	p.	NOUN
cet-13710	132	8	410	410	NUM
cet-13710	132	9	.	.	PUNCT
cet-13710	133	1	sautet	sautet	NOUN
cet-13710	133	2	,	,	PUNCT
cet-13710	133	3	j.	j.	PROPN
cet-13710	133	4	c.	c.	PROPN
cet-13710	133	5	,	,	PUNCT
cet-13710	133	6	and	and	CCONJ
cet-13710	133	7	stepowski	stepowski	NOUN
cet-13710	133	8	,	,	PUNCT
cet-13710	133	9	d.	d.	PROPN
cet-13710	133	10	,	,	PUNCT
cet-13710	133	11	1995	1995	NUM
cet-13710	133	12	,	,	PUNCT
cet-13710	133	13	dynamic	dynamic	ADJ
cet-13710	133	14	behavior	behavior	NOUN
cet-13710	133	15	of	of	ADP
cet-13710	133	16	variable‐density	variable‐density	NOUN
cet-13710	133	17	,	,	PUNCT
cet-13710	133	18	turbulent	turbulent	ADJ
cet-13710	133	19	jets	jet	NOUN
cet-13710	133	20	in	in	ADP
cet-13710	133	21	their	their	PRON
cet-13710	133	22	near	near	ADJ
cet-13710	133	23	development	development	NOUN
cet-13710	133	24	fields	field	NOUN
cet-13710	133	25	.	.	PUNCT
cet-13710	134	1	physics	physics	PROPN
cet-13710	134	2	of	of	ADP
cet-13710	134	3	fluids	fluid	NOUN
cet-13710	134	4	,	,	PUNCT
cet-13710	134	5	7(11	7(11	NUM
cet-13710	134	6	)	)	PUNCT
cet-13710	134	7	,	,	PUNCT
cet-13710	134	8	2796	2796	NUM
cet-13710	134	9	-	-	SYM
cet-13710	134	10	2806	2806	NUM
cet-13710	134	11	.	.	PUNCT
cet-13710	135	1	witze	witze	PROPN
cet-13710	135	2	,	,	PUNCT
cet-13710	135	3	p.	p.	PROPN
cet-13710	135	4	o.	o.	PROPN
cet-13710	135	5	,	,	PUNCT
cet-13710	135	6	1974	1974	NUM
cet-13710	135	7	,	,	PUNCT
cet-13710	135	8	centerline	centerline	NOUN
cet-13710	135	9	velocity	velocity	NOUN
cet-13710	135	10	decay	decay	NOUN
cet-13710	135	11	of	of	ADP
cet-13710	135	12	compressible	compressible	ADJ
cet-13710	135	13	free	free	ADJ
cet-13710	135	14	jets	jet	NOUN
cet-13710	135	15	.	.	PUNCT
cet-13710	136	1	aiaa	aiaa	PROPN
cet-13710	136	2	journal	journal	PROPN
cet-13710	136	3	,	,	PUNCT
cet-13710	136	4	12.4	12.4	NUM
cet-13710	136	5	:	:	PUNCT
cet-13710	136	6	417	417	NUM
cet-13710	136	7	-	-	SYM
cet-13710	136	8	418	418	NUM
cet-13710	136	9	.	.	PUNCT
cet-13710	137	1	30	30	NUM
cet-13710	137	2	17mack.pdf	17mack.pdf	NUM
cet-13710	137	3	improvement	improvement	NOUN
cet-13710	137	4	of	of	ADP
cet-13710	137	5	the	the	DET
cet-13710	137	6	effects	effect	NOUN
cet-13710	137	7	dispersion	dispersion	NOUN
cet-13710	137	8	model	model	NOUN
cet-13710	137	9	for	for	ADP
cet-13710	137	10	under	under	ADP
cet-13710	137	11	expanded	expand	VERB
cet-13710	137	12	turbulent	turbulent	ADJ
cet-13710	137	13	jets	jet	NOUN
