id	sid	tid	token	lemma	pos
cuesj-1365	1	1	tx_1	tx_1	PROPN
cuesj-1365	1	2	~	~	X
cuesj-1365	1	3	abs	ab	NOUN
cuesj-1365	1	4	:	:	PUNCT
cuesj-1365	1	5	at	at	ADP
cuesj-1365	1	6	/	/	SYM
cuesj-1365	1	7	add	add	VERB
cuesj-1365	1	8	:	:	PUNCT
cuesj-1365	1	9	tx_2	tx_2	PROPN
cuesj-1365	1	10	~	~	NOUN
cuesj-1365	1	11	abs	ab	NOUN
cuesj-1365	1	12	:	:	PUNCT
cuesj-1365	1	13	at	at	ADP
cuesj-1365	1	14	56	56	NUM
cuesj-1365	1	15	http://journals.cihanuniversity.edu.iq/index.php/cuesj	http://journals.cihanuniversity.edu.iq/index.php/cuesj	ADJ
cuesj-1365	1	16	cuesj	cuesj	NOUN
cuesj-1365	1	17	2025	2025	NUM
cuesj-1365	1	18	,	,	PUNCT
cuesj-1365	1	19	9	9	NUM
cuesj-1365	1	20	(	(	PUNCT
cuesj-1365	1	21	2	2	NUM
cuesj-1365	1	22	):	):	PUNCT
cuesj-1365	1	23	56	56	NUM
cuesj-1365	1	24	-	-	SYM
cuesj-1365	1	25	60	60	NUM
cuesj-1365	1	26	research	research	NOUN
cuesj-1365	1	27	article	article	NOUN
cuesj-1365	1	28	computations	computation	NOUN
cuesj-1365	1	29	of	of	ADP
cuesj-1365	1	30	the	the	DET
cuesj-1365	1	31	effects	effect	NOUN
cuesj-1365	1	32	of	of	ADP
cuesj-1365	1	33	flat	flat	ADJ
cuesj-1365	1	34	and	and	CCONJ
cuesj-1365	1	35	sloped	sloped	ADJ
cuesj-1365	1	36	steps	step	NOUN
cuesj-1365	1	37	of	of	ADP
cuesj-1365	1	38	stepped	step	VERB
cuesj-1365	1	39	spillways	spillway	NOUN
cuesj-1365	1	40	types	type	NOUN
cuesj-1365	1	41	on	on	ADP
cuesj-1365	1	42	the	the	DET
cuesj-1365	1	43	size	size	NOUN
cuesj-1365	1	44	of	of	ADP
cuesj-1365	1	45	stilling	still	VERB
cuesj-1365	1	46	basin	basin	NOUN
cuesj-1365	1	47	using	use	VERB
cuesj-1365	1	48	computational	computational	ADJ
cuesj-1365	1	49	fluid	fluid	ADJ
cuesj-1365	1	50	dynamic	dynamic	ADJ
cuesj-1365	1	51	pshtiwan	pshtiwan	PROPN
cuesj-1365	1	52	o.	o.	PROPN
cuesj-1365	1	53	zaid	zaid	PROPN
cuesj-1365	1	54	,	,	PUNCT
cuesj-1365	1	55	abdulla	abdulla	PROPN
cuesj-1365	1	56	a.	a.	PROPN
cuesj-1365	1	57	abo	abo	PROPN
cuesj-1365	1	58	department	department	PROPN
cuesj-1365	1	59	of	of	ADP
cuesj-1365	1	60	water	water	NOUN
cuesj-1365	1	61	resources	resource	NOUN
cuesj-1365	1	62	engineering	engineering	NOUN
cuesj-1365	1	63	,	,	PUNCT
cuesj-1365	1	64	college	college	NOUN
cuesj-1365	1	65	of	of	ADP
cuesj-1365	1	66	engineering	engineering	NOUN
cuesj-1365	1	67	,	,	PUNCT
cuesj-1365	1	68	salahaddin	salahaddin	VERB
cuesj-1365	1	69	university	university	NOUN
cuesj-1365	1	70	-	-	PUNCT
cuesj-1365	1	71	erbil	erbil	PROPN
cuesj-1365	1	72	,	,	PUNCT
cuesj-1365	1	73	iraq	iraq	PROPN
cuesj-1365	1	74	abstract	abstract	NOUN
cuesj-1365	1	75	the	the	DET
cuesj-1365	1	76	objective	objective	NOUN
cuesj-1365	1	77	of	of	ADP
cuesj-1365	1	78	this	this	DET
cuesj-1365	1	79	study	study	NOUN
cuesj-1365	1	80	was	be	AUX
cuesj-1365	1	81	to	to	PART
cuesj-1365	1	82	assess	assess	VERB
cuesj-1365	1	83	the	the	DET
cuesj-1365	1	84	impact	impact	NOUN
cuesj-1365	1	85	of	of	ADP
cuesj-1365	1	86	stepped	step	VERB
cuesj-1365	1	87	spillways	spillway	NOUN
cuesj-1365	1	88	on	on	ADP
cuesj-1365	1	89	the	the	DET
cuesj-1365	1	90	dimensions	dimension	NOUN
cuesj-1365	1	91	of	of	ADP
cuesj-1365	1	92	stilling	still	VERB
cuesj-1365	1	93	basins	basin	NOUN
cuesj-1365	1	94	.	.	PUNCT
cuesj-1365	2	1	this	this	DET
cuesj-1365	2	2	goal	goal	NOUN
cuesj-1365	2	3	can	can	AUX
cuesj-1365	2	4	be	be	AUX
cuesj-1365	2	5	reached	reach	VERB
cuesj-1365	2	6	by	by	ADP
cuesj-1365	2	7	using	use	VERB
cuesj-1365	2	8	the	the	DET
cuesj-1365	2	9	computational	computational	ADJ
cuesj-1365	2	10	fluid	fluid	ADJ
cuesj-1365	2	11	dynamics	dynamic	NOUN
cuesj-1365	2	12	code	code	NOUN
cuesj-1365	2	13	fluent	fluent	NOUN
cuesj-1365	2	14	,	,	PUNCT
cuesj-1365	2	15	which	which	PRON
cuesj-1365	2	16	works	work	VERB
cuesj-1365	2	17	with	with	ADP
cuesj-1365	2	18	the	the	DET
cuesj-1365	2	19	ansys	ansys	PROPN
cuesj-1365	2	20	software	software	PROPN
cuesj-1365	2	21	.	.	PUNCT
cuesj-1365	3	1	the	the	DET
cuesj-1365	3	2	experiment	experiment	NOUN
cuesj-1365	3	3	’s	’s	PART
cuesj-1365	3	4	results	result	NOUN
cuesj-1365	3	5	were	be	AUX
cuesj-1365	3	6	used	use	VERB
cuesj-1365	3	7	to	to	PART
cuesj-1365	3	8	test	test	VERB
cuesj-1365	3	9	the	the	DET
cuesj-1365	3	10	code	code	NOUN
cuesj-1365	3	11	.	.	PUNCT
cuesj-1365	4	1	the	the	DET
cuesj-1365	4	2	results	result	NOUN
cuesj-1365	4	3	from	from	ADP
cuesj-1365	4	4	the	the	DET
cuesj-1365	4	5	code	code	NOUN
cuesj-1365	4	6	were	be	AUX
cuesj-1365	4	7	identical	identical	ADJ
cuesj-1365	4	8	to	to	ADP
cuesj-1365	4	9	what	what	PRON
cuesj-1365	4	10	the	the	DET
cuesj-1365	4	11	first	first	ADJ
cuesj-1365	4	12	results	result	NOUN
cuesj-1365	4	13	of	of	ADP
cuesj-1365	4	14	the	the	DET
cuesj-1365	4	15	experiment	experiment	NOUN
cuesj-1365	4	16	showed	show	VERB
cuesj-1365	4	17	.	.	PUNCT
cuesj-1365	5	1	then	then	ADV
cuesj-1365	5	2	,	,	PUNCT
cuesj-1365	5	3	the	the	DET
cuesj-1365	5	4	code	code	NOUN
cuesj-1365	5	5	was	be	AUX
cuesj-1365	5	6	used	use	VERB
cuesj-1365	5	7	on	on	ADP
cuesj-1365	5	8	45	45	NUM
cuesj-1365	5	9	different	different	ADJ
cuesj-1365	5	10	stepped	step	VERB
cuesj-1365	5	11	spillways	spillway	NOUN
cuesj-1365	5	12	,	,	PUNCT
cuesj-1365	5	13	each	each	PRON
cuesj-1365	5	14	with	with	ADP
cuesj-1365	5	15	three	three	NUM
cuesj-1365	5	16	different	different	ADJ
cuesj-1365	5	17	step	step	NOUN
cuesj-1365	5	18	numbers	number	NOUN
cuesj-1365	5	19	:	:	PUNCT
cuesj-1365	5	20	20	20	NUM
cuesj-1365	5	21	,	,	PUNCT
cuesj-1365	5	22	30	30	NUM
cuesj-1365	5	23	,	,	PUNCT
cuesj-1365	5	24	and	and	CCONJ
cuesj-1365	5	25	40	40	NUM
cuesj-1365	5	26	steps	step	NOUN
cuesj-1365	5	27	.	.	PUNCT
cuesj-1365	6	1	then	then	ADV
cuesj-1365	6	2	,	,	PUNCT
cuesj-1365	6	3	the	the	DET
cuesj-1365	6	4	code	code	NOUN
cuesj-1365	6	5	was	be	AUX
cuesj-1365	6	6	used	use	VERB
cuesj-1365	6	7	on	on	ADP
cuesj-1365	6	8	each	each	PRON
cuesj-1365	6	9	of	of	ADP
cuesj-1365	6	10	the	the	DET
cuesj-1365	6	11	spillways	spillway	NOUN
cuesj-1365	6	12	.	.	PUNCT
cuesj-1365	7	1	there	there	PRON
cuesj-1365	7	2	are	be	VERB
cuesj-1365	7	3	three	three	NUM
cuesj-1365	7	4	different	different	ADJ
cuesj-1365	7	5	step	step	NOUN
cuesj-1365	7	6	slopes	slope	NOUN
cuesj-1365	7	7	in	in	ADP
cuesj-1365	7	8	this	this	DET
cuesj-1365	7	9	area	area	NOUN
cuesj-1365	7	10	:	:	PUNCT
cuesj-1365	7	11	0	0	NUM
cuesj-1365	7	12	°	°	NUM
cuesj-1365	7	13	,	,	PUNCT
cuesj-1365	7	14	6	6	NUM
cuesj-1365	7	15	°	°	NOUN
cuesj-1365	7	16	,	,	PUNCT
cuesj-1365	7	17	and	and	CCONJ
cuesj-1365	7	18	12	12	NUM
cuesj-1365	7	19	°	°	NOUN
cuesj-1365	7	20	.	.	PUNCT
cuesj-1365	8	1	there	there	PRON
cuesj-1365	8	2	were	be	VERB
cuesj-1365	8	3	five	five	NUM
cuesj-1365	8	4	different	different	ADJ
cuesj-1365	8	5	flows	flow	NOUN
cuesj-1365	8	6	:	:	PUNCT
cuesj-1365	8	7	0.16	0.16	NUM
cuesj-1365	8	8	,	,	PUNCT
cuesj-1365	8	9	0.32	0.32	NUM
cuesj-1365	8	10	,	,	PUNCT
cuesj-1365	8	11	0.48	0.48	NUM
cuesj-1365	8	12	,	,	PUNCT
cuesj-1365	8	13	0.64	0.64	NUM
cuesj-1365	8	14	,	,	PUNCT
cuesj-1365	8	15	and	and	CCONJ
cuesj-1365	8	16	0.8	0.8	NUM
cuesj-1365	8	17	m3	m3	PROPN
cuesj-1365	8	18	/	/	SYM
cuesj-1365	8	19	s.	s.	PROPN
cuesj-1365	8	20	the	the	DET
cuesj-1365	8	21	study	study	NOUN
cuesj-1365	8	22	found	find	VERB
cuesj-1365	8	23	that	that	SCONJ
cuesj-1365	8	24	stepped	step	VERB
cuesj-1365	8	25	spillways	spillway	NOUN
cuesj-1365	8	26	with	with	ADP
cuesj-1365	8	27	sloped	slope	VERB
cuesj-1365	8	28	steps	step	NOUN
cuesj-1365	8	29	needed	need	VERB
cuesj-1365	8	30	a	a	DET
cuesj-1365	8	31	stilling	still	VERB
cuesj-1365	8	32	basin	basin	NOUN
cuesj-1365	8	33	that	that	PRON
cuesj-1365	8	34	was	be	AUX
cuesj-1365	8	35	16	16	NUM
cuesj-1365	8	36	%	%	NOUN
cuesj-1365	8	37	shorter	short	ADJ
cuesj-1365	8	38	.	.	PUNCT
cuesj-1365	9	1	this	this	PRON
cuesj-1365	9	2	was	be	AUX
cuesj-1365	9	3	in	in	ADP
cuesj-1365	9	4	contrast	contrast	NOUN
cuesj-1365	9	5	to	to	ADP
cuesj-1365	9	6	stepped	step	VERB
cuesj-1365	9	7	spillways	spillway	NOUN
cuesj-1365	9	8	featuring	feature	VERB
cuesj-1365	9	9	level	level	NOUN
cuesj-1365	9	10	steps	step	NOUN
cuesj-1365	9	11	.	.	PUNCT
cuesj-1365	10	1	keywords	keyword	NOUN
cuesj-1365	10	2	:	:	PUNCT
cuesj-1365	10	3	flat	flat	ADJ
cuesj-1365	10	4	steps	step	NOUN
cuesj-1365	10	5	,	,	PUNCT
cuesj-1365	10	6	sloped	slope	VERB
cuesj-1365	10	7	steps	step	NOUN
cuesj-1365	10	8	,	,	PUNCT
cuesj-1365	10	9	stepped	step	VERB
cuesj-1365	10	10	spillway	spillway	NOUN
cuesj-1365	10	11	,	,	PUNCT
cuesj-1365	10	12	stilling	still	VERB
cuesj-1365	10	13	basin	basin	NOUN
cuesj-1365	10	14	,	,	PUNCT
cuesj-1365	10	15	ansys	ansys	NOUN
cuesj-1365	10	16	-	-	PUNCT
cuesj-1365	10	17	fluent	fluent	ADJ
cuesj-1365	10	18	,	,	PUNCT
cuesj-1365	10	19	computational	computational	ADJ
cuesj-1365	10	20	fluid	fluid	ADJ
cuesj-1365	10	21	dynamics	dynamic	NOUN
cuesj-1365	10	22	introduction	introduction	NOUN
cuesj-1365	10	23	a	a	DET
cuesj-1365	10	24	dam	dam	NOUN
cuesj-1365	10	25	’s	’s	PART
cuesj-1365	10	26	spillway	spillway	NOUN
cuesj-1365	10	27	is	be	AUX
cuesj-1365	10	28	an	an	DET
cuesj-1365	10	29	important	important	ADJ
cuesj-1365	10	30	part	part	NOUN
cuesj-1365	10	31	of	of	ADP
cuesj-1365	10	32	managing	manage	VERB
cuesj-1365	10	33	and	and	CCONJ
cuesj-1365	10	34	releasing	release	VERB
cuesj-1365	10	35	floodwaters	floodwater	NOUN
cuesj-1365	10	36	,	,	PUNCT
cuesj-1365	10	37	making	make	VERB
cuesj-1365	10	38	sure	sure	ADJ
cuesj-1365	10	39	that	that	SCONJ
cuesj-1365	10	40	extra	extra	ADJ
cuesj-1365	10	41	water	water	NOUN
cuesj-1365	10	42	can	can	AUX
cuesj-1365	10	43	safely	safely	ADV
cuesj-1365	10	44	flow	flow	VERB
cuesj-1365	10	45	through	through	ADP
cuesj-1365	10	46	during	during	ADP
cuesj-1365	10	47	times	time	NOUN
cuesj-1365	10	48	of	of	ADP
cuesj-1365	10	49	heavy	heavy	ADJ
cuesj-1365	10	50	rain	rain	NOUN
cuesj-1365	10	51	.	.	PUNCT
cuesj-1365	11	1	however	however	ADV
cuesj-1365	11	2	,	,	PUNCT
cuesj-1365	11	3	spillways	spillway	NOUN
cuesj-1365	11	4	often	often	ADV
cuesj-1365	11	5	have	have	VERB
cuesj-1365	11	6	problems	problem	NOUN
cuesj-1365	11	7	,	,	PUNCT
cuesj-1365	11	8	such	such	ADJ
cuesj-1365	11	9	as	as	ADP
cuesj-1365	11	10	cavitation	cavitation	NOUN
cuesj-1365	11	11	and	and	CCONJ
cuesj-1365	11	12	high	high	ADJ
cuesj-1365	11	13	kinetic	kinetic	ADJ
cuesj-1365	11	14	energy	energy	NOUN
cuesj-1365	11	15	because	because	SCONJ
cuesj-1365	11	16	of	of	ADP
cuesj-1365	11	17	the	the	DET
cuesj-1365	11	18	strong	strong	ADJ
cuesj-1365	11	19	flow	flow	NOUN
cuesj-1365	11	20	discharge.[1	discharge.[1	NOUN
cuesj-1365	11	21	]	]	PUNCT
cuesj-1365	11	22	aeration	aeration	NOUN
cuesj-1365	11	23	devices	device	NOUN
cuesj-1365	11	24	are	be	AUX
cuesj-1365	11	25	often	often	ADV
cuesj-1365	11	26	put	put	VERB
cuesj-1365	11	27	on	on	ADP
cuesj-1365	11	28	the	the	DET
cuesj-1365	11	29	bottom	bottom	NOUN
cuesj-1365	11	30	and	and	CCONJ
cuesj-1365	11	31	sides	side	NOUN
cuesj-1365	11	32	of	of	ADP
cuesj-1365	11	33	the	the	DET
cuesj-1365	11	34	spillway	spillway	NOUN
cuesj-1365	11	35	to	to	PART
cuesj-1365	11	36	bring	bring	VERB
cuesj-1365	11	37	air	air	NOUN
cuesj-1365	11	38	close	close	ADV
cuesj-1365	11	39	to	to	ADP
cuesj-1365	11	40	the	the	DET
cuesj-1365	11	41	surface	surface	NOUN
cuesj-1365	11	42	and	and	CCONJ
cuesj-1365	11	43	lower	low	ADJ
cuesj-1365	11	44	the	the	DET
cuesj-1365	11	45	risk	risk	NOUN
cuesj-1365	11	46	of	of	ADP
cuesj-1365	11	47	cavitation	cavitation	NOUN
cuesj-1365	11	48	erosion.[2	erosion.[2	ADV
cuesj-1365	11	49	]	]	PUNCT
cuesj-1365	11	50	the	the	DET
cuesj-1365	11	51	supercritical	supercritical	ADJ
cuesj-1365	11	52	flow	flow	NOUN
cuesj-1365	11	53	conditions	condition	NOUN
cuesj-1365	11	54	and	and	CCONJ
cuesj-1365	11	55	high	high	ADJ
cuesj-1365	11	56	speeds	speed	NOUN
cuesj-1365	11	57	make	make	VERB
cuesj-1365	11	58	the	the	DET
cuesj-1365	11	59	erosive	erosive	ADJ
cuesj-1365	11	60	potential	potential	NOUN
cuesj-1365	11	61	even	even	ADV
cuesj-1365	11	62	worse	bad	ADJ
cuesj-1365	11	63	,	,	PUNCT
cuesj-1365	11	64	so	so	ADV
cuesj-1365	11	65	effective	effective	ADJ
cuesj-1365	11	66	energy	energy	NOUN
cuesj-1365	11	67	dissipation	dissipation	NOUN
cuesj-1365	11	68	mechanisms	mechanism	NOUN
cuesj-1365	11	69	are	be	AUX
cuesj-1365	11	70	needed	need	VERB
cuesj-1365	11	71	to	to	PART
cuesj-1365	11	72	protect	protect	VERB
cuesj-1365	11	73	riverbeds	riverbed	NOUN
cuesj-1365	11	74	and	and	CCONJ
cuesj-1365	11	75	foundation	foundation	NOUN
cuesj-1365	11	76	structures	structure	NOUN
cuesj-1365	11	77	downstream	downstream	ADJ
cuesj-1365	11	78	.	.	PUNCT
cuesj-1365	12	1	stepped	step	VERB
cuesj-1365	12	2	spillways	spillway	NOUN
cuesj-1365	12	3	have	have	AUX
cuesj-1365	12	4	become	become	VERB
cuesj-1365	12	5	a	a	DET
cuesj-1365	12	6	promising	promising	ADJ
cuesj-1365	12	7	way	way	NOUN
cuesj-1365	12	8	to	to	PART
cuesj-1365	12	9	improve	improve	VERB
cuesj-1365	12	10	energy	energy	NOUN
cuesj-1365	12	11	dissipation	dissipation	NOUN
cuesj-1365	12	12	.	.	PUNCT
cuesj-1365	13	1	these	these	DET
cuesj-1365	13	2	spillways	spillway	NOUN
cuesj-1365	13	3	break	break	VERB
cuesj-1365	13	4	up	up	ADP
cuesj-1365	13	5	the	the	DET
cuesj-1365	13	6	flow	flow	NOUN
cuesj-1365	13	7	into	into	ADP
cuesj-1365	13	8	smaller	small	ADJ
cuesj-1365	13	9	steps	step	NOUN
cuesj-1365	13	10	,	,	PUNCT
cuesj-1365	13	11	which	which	PRON
cuesj-1365	13	12	lowers	lower	VERB
cuesj-1365	13	13	river	river	NOUN
cuesj-1365	13	14	speeds	speed	NOUN
cuesj-1365	13	15	,	,	PUNCT
cuesj-1365	13	16	lowers	lower	VERB
cuesj-1365	13	17	kinetic	kinetic	ADJ
cuesj-1365	13	18	energy	energy	NOUN
cuesj-1365	13	19	,	,	PUNCT
cuesj-1365	13	20	and	and	CCONJ
cuesj-1365	13	21	raises	raise	VERB
cuesj-1365	13	22	air	air	NOUN
cuesj-1365	13	23	entrainment	entrainment	NOUN
cuesj-1365	13	24	rates	rate	NOUN
cuesj-1365	13	25	.	.	PUNCT
cuesj-1365	14	1	this	this	PRON
cuesj-1365	14	2	makes	make	VERB
cuesj-1365	14	3	cavitation	cavitation	NOUN
cuesj-1365	14	4	less	less	ADJ
cuesj-1365	14	5	likely.[3	likely.[3	NOUN
cuesj-1365	14	6	]	]	PUNCT
cuesj-1365	14	7	researchers	researcher	NOUN
cuesj-1365	14	8	like	like	VERB
cuesj-1365	14	9	obaid	obaid	PROPN
cuesj-1365	14	10	et	et	PROPN
cuesj-1365	14	11	al	al	PROPN
cuesj-1365	14	12	.	.	PROPN
cuesj-1365	14	13	,[4	,[4	PROPN
cuesj-1365	14	14	]	]	PUNCT
cuesj-1365	14	15	have	have	AUX
cuesj-1365	14	16	done	do	VERB
cuesj-1365	14	17	experimental	experimental	ADJ
cuesj-1365	14	18	studies	study	NOUN
cuesj-1365	14	19	to	to	PART
cuesj-1365	14	20	find	find	VERB
cuesj-1365	14	21	out	out	ADP
cuesj-1365	14	22	what	what	PRON
cuesj-1365	14	23	the	the	DET
cuesj-1365	14	24	limits	limit	NOUN
cuesj-1365	14	25	are	be	AUX
cuesj-1365	14	26	for	for	ADP
cuesj-1365	14	27	stepped	step	VERB
cuesj-1365	14	28	spillways	spillway	NOUN
cuesj-1365	14	29	.	.	PUNCT
cuesj-1365	15	1	they	they	PRON
cuesj-1365	15	2	looked	look	VERB
cuesj-1365	15	3	at	at	ADP
cuesj-1365	15	4	how	how	SCONJ
cuesj-1365	15	5	different	different	ADJ
cuesj-1365	15	6	downstream	downstream	ADJ
cuesj-1365	15	7	slope	slope	NOUN
cuesj-1365	15	8	angles	angle	NOUN
cuesj-1365	15	9	(	(	PUNCT
cuesj-1365	15	10	25	25	NUM
cuesj-1365	15	11	°	°	NOUN
cuesj-1365	15	12	,	,	PUNCT
cuesj-1365	15	13	35	35	NUM
cuesj-1365	15	14	°	°	NOUN
cuesj-1365	15	15	,	,	PUNCT
cuesj-1365	15	16	and	and	CCONJ
cuesj-1365	15	17	45	45	NUM
cuesj-1365	15	18	°	°	NUM
cuesj-1365	15	19	)	)	PUNCT
cuesj-1365	15	20	and	and	CCONJ
cuesj-1365	15	21	step	step	NOUN
cuesj-1365	15	22	configurations	configuration	NOUN
cuesj-1365	15	23	(	(	PUNCT
cuesj-1365	15	24	flat	flat	ADJ
cuesj-1365	15	25	,	,	PUNCT
cuesj-1365	15	26	pooling	pooling	NOUN
cuesj-1365	15	27	,	,	PUNCT
cuesj-1365	15	28	porous	porous	ADJ
cuesj-1365	15	29	end	end	NOUN
cuesj-1365	15	30	sills	sill	NOUN
cuesj-1365	15	31	,	,	PUNCT
cuesj-1365	15	32	and	and	CCONJ
cuesj-1365	15	33	gabions	gabion	NOUN
cuesj-1365	15	34	)	)	PUNCT
cuesj-1365	15	35	affect	affect	VERB
cuesj-1365	15	36	the	the	DET
cuesj-1365	15	37	flow	flow	NOUN
cuesj-1365	15	38	.	.	PUNCT
cuesj-1365	16	1	their	their	PRON
cuesj-1365	16	2	findings	finding	NOUN
cuesj-1365	16	3	underscore	underscore	VERB
cuesj-1365	16	4	the	the	DET
cuesj-1365	16	5	substantial	substantial	ADJ
cuesj-1365	16	6	impact	impact	NOUN
cuesj-1365	16	7	of	of	ADP
cuesj-1365	16	8	end	end	NOUN
cuesj-1365	16	9	sills	sill	NOUN
cuesj-1365	16	10	on	on	ADP
cuesj-1365	16	11	flow	flow	NOUN
cuesj-1365	16	12	regimes	regime	NOUN
cuesj-1365	16	13	,	,	PUNCT
cuesj-1365	16	14	especially	especially	ADV
cuesj-1365	16	15	in	in	ADP
cuesj-1365	16	16	prolonging	prolong	VERB
cuesj-1365	16	17	the	the	DET
cuesj-1365	16	18	transition	transition	NOUN
cuesj-1365	16	19	flow	flow	NOUN
cuesj-1365	16	20	regime	regime	NOUN
cuesj-1365	16	21	and	and	CCONJ
cuesj-1365	16	22	enhancing	enhance	VERB
cuesj-1365	16	23	stability	stability	NOUN
cuesj-1365	16	24	.	.	PUNCT
cuesj-1365	17	1	recent	recent	ADJ
cuesj-1365	17	2	improvements	improvement	NOUN
cuesj-1365	17	3	in	in	ADP
cuesj-1365	17	4	computational	computational	ADJ
cuesj-1365	17	5	fluid	fluid	ADJ
cuesj-1365	17	6	dynamics	dynamic	NOUN
cuesj-1365	17	7	(	(	PUNCT
cuesj-1365	17	8	cfds	cfds	NOUN
cuesj-1365	17	9	)	)	PUNCT
cuesj-1365	17	10	have	have	AUX
cuesj-1365	17	11	made	make	VERB
cuesj-1365	17	12	it	it	PRON
cuesj-1365	17	13	possible	possible	ADJ
cuesj-1365	17	14	to	to	PART
cuesj-1365	17	15	do	do	VERB
cuesj-1365	17	16	detailed	detailed	ADJ
cuesj-1365	17	17	numerical	numerical	ADJ
cuesj-1365	17	18	studies	study	NOUN
cuesj-1365	17	19	of	of	ADP
cuesj-1365	17	20	how	how	SCONJ
cuesj-1365	17	21	well	well	ADV
cuesj-1365	17	22	spillways	spillway	NOUN
cuesj-1365	17	23	work	work	VERB
cuesj-1365	17	24	.	.	PUNCT
cuesj-1365	18	1	for	for	ADP
cuesj-1365	18	2	example	example	NOUN
cuesj-1365	18	3	,	,	PUNCT
cuesj-1365	18	4	zaid	zaid	PROPN
cuesj-1365	18	5	et	et	PROPN
cuesj-1365	18	6	al	al	PROPN
cuesj-1365	18	7	.	.	PROPN
cuesj-1365	18	8	,[5	,[5	PROPN
cuesj-1365	18	9	]	]	PUNCT
cuesj-1365	18	10	used	use	VERB
cuesj-1365	18	11	ansysfluent	ansysfluent	NOUN
cuesj-1365	18	12	to	to	PART
cuesj-1365	18	13	look	look	VERB
cuesj-1365	18	14	at	at	ADP
cuesj-1365	18	15	how	how	SCONJ
cuesj-1365	18	16	well	well	ADV
cuesj-1365	18	17	an	an	DET
cuesj-1365	18	18	ogee	ogee	NOUN
cuesj-1365	18	19	spillway	spillway	NOUN
cuesj-1365	18	20	with	with	ADP
cuesj-1365	18	21	a	a	DET
cuesj-1365	18	22	buckettype	buckettype	NOUN
cuesj-1365	18	23	energy	energy	NOUN
cuesj-1365	18	24	dissipater	dissipater	NOUN
cuesj-1365	18	25	worked	work	VERB
cuesj-1365	18	26	hydraulically	hydraulically	ADV
cuesj-1365	18	27	.	.	PUNCT
cuesj-1365	19	1	the	the	DET
cuesj-1365	19	2	numerical	numerical	ADJ
cuesj-1365	19	3	and	and	CCONJ
cuesj-1365	19	4	theoretical	theoretical	ADJ
cuesj-1365	19	5	results	result	NOUN
cuesj-1365	19	6	were	be	AUX
cuesj-1365	19	7	very	very	ADV
cuesj-1365	19	8	similar	similar	ADJ
cuesj-1365	19	9	.	.	PUNCT
cuesj-1365	20	1	their	their	PRON
cuesj-1365	20	2	research	research	NOUN
cuesj-1365	20	3	highlighted	highlight	VERB
cuesj-1365	20	4	the	the	DET
cuesj-1365	20	5	dependability	dependability	NOUN
cuesj-1365	20	6	of	of	ADP
cuesj-1365	20	7	cfd	cfd	NOUN
cuesj-1365	20	8	in	in	ADP
cuesj-1365	20	9	modeling	model	VERB
cuesj-1365	20	10	intricate	intricate	ADJ
cuesj-1365	20	11	flow	flow	NOUN
cuesj-1365	20	12	dynamics	dynamic	NOUN
cuesj-1365	20	13	,	,	PUNCT
cuesj-1365	20	14	encompassing	encompass	VERB
cuesj-1365	20	15	water	water	NOUN
cuesj-1365	20	16	surface	surface	NOUN
cuesj-1365	20	17	profiles	profile	NOUN
cuesj-1365	20	18	,	,	PUNCT
cuesj-1365	20	19	velocity	velocity	NOUN
cuesj-1365	20	20	distributions	distribution	NOUN
cuesj-1365	20	21	,	,	PUNCT
cuesj-1365	20	22	and	and	CCONJ
cuesj-1365	20	23	pressure	pressure	NOUN
cuesj-1365	20	24	metrics	metric	NOUN
cuesj-1365	20	25	.	.	PUNCT
cuesj-1365	21	1	in	in	ADP
cuesj-1365	21	2	the	the	DET
cuesj-1365	21	3	same	same	ADJ
cuesj-1365	21	4	way	way	NOUN
cuesj-1365	21	5	,	,	PUNCT
cuesj-1365	21	6	mamand	mamand	NOUN
cuesj-1365	21	7	and	and	CCONJ
cuesj-1365	21	8	zaid[6	zaid[6	NUM
cuesj-1365	21	9	]	]	X
cuesj-1365	21	10	used	use	VERB
cuesj-1365	21	11	ansys	ansys	PROPN
cuesj-1365	21	12	-	-	PUNCT
cuesj-1365	21	13	fluent	fluent	NOUN
cuesj-1365	21	14	to	to	PART
cuesj-1365	21	15	check	check	VERB
cuesj-1365	21	16	the	the	DET
cuesj-1365	21	17	flow	flow	NOUN
cuesj-1365	21	18	over	over	ADP
cuesj-1365	21	19	a	a	DET
cuesj-1365	21	20	rectangular	rectangular	ADJ
cuesj-1365	21	21	sharpcrested	sharpcreste	VERB
cuesj-1365	21	22	weir	weir	NOUN
cuesj-1365	21	23	by	by	ADP
cuesj-1365	21	24	comparing	compare	VERB
cuesj-1365	21	25	experimental	experimental	ADJ
cuesj-1365	21	26	and	and	CCONJ
cuesj-1365	21	27	numerical	numerical	ADJ
cuesj-1365	21	28	results	result	NOUN
cuesj-1365	21	29	.	.	PUNCT
cuesj-1365	22	1	their	their	PRON
cuesj-1365	22	2	research	research	NOUN
cuesj-1365	22	3	underscored	underscore	VERB
cuesj-1365	22	4	the	the	DET
cuesj-1365	22	5	precision	precision	NOUN
cuesj-1365	22	6	of	of	ADP
cuesj-1365	22	7	the	the	DET
cuesj-1365	22	8	renormalization	renormalization	NOUN
cuesj-1365	22	9	group	group	NOUN
cuesj-1365	22	10	(	(	PUNCT
cuesj-1365	22	11	rng	rng	PROPN
cuesj-1365	22	12	)	)	PUNCT
cuesj-1365	22	13	k	k	ADJ
cuesj-1365	22	14	-	-	PUNCT
cuesj-1365	22	15	epsilon	epsilon	PROPN
cuesj-1365	22	16	turbulence	turbulence	NOUN
cuesj-1365	22	17	model	model	NOUN
cuesj-1365	22	18	in	in	ADP
cuesj-1365	22	19	forecasting	forecasting	NOUN
cuesj-1365	22	20	flow	flow	NOUN
cuesj-1365	22	21	characteristics	characteristic	NOUN
cuesj-1365	22	22	,	,	PUNCT
cuesj-1365	22	23	exhibiting	exhibit	VERB
cuesj-1365	22	24	negligible	negligible	ADJ
cuesj-1365	22	25	error	error	NOUN
cuesj-1365	22	26	margins	margin	NOUN
cuesj-1365	22	27	.	.	PUNCT
cuesj-1365	23	1	this	this	DET
cuesj-1365	23	2	research	research	NOUN
cuesj-1365	23	3	seeks	seek	VERB
cuesj-1365	23	4	to	to	PART
cuesj-1365	23	5	numerically	numerically	ADV
cuesj-1365	23	6	examine	examine	VERB
cuesj-1365	23	7	the	the	DET
cuesj-1365	23	8	effects	effect	NOUN
cuesj-1365	23	9	of	of	ADP
cuesj-1365	23	10	step	step	NOUN
cuesj-1365	23	11	heights	height	NOUN
cuesj-1365	23	12	and	and	CCONJ
cuesj-1365	23	13	slopes	slope	NOUN
cuesj-1365	23	14	on	on	ADP
cuesj-1365	23	15	skimming	skim	VERB
cuesj-1365	23	16	flow	flow	NOUN
cuesj-1365	23	17	characteristics	characteristic	NOUN
cuesj-1365	23	18	,	,	PUNCT
cuesj-1365	23	19	with	with	ADP
cuesj-1365	23	20	a	a	DET
cuesj-1365	23	21	focus	focus	NOUN
cuesj-1365	23	22	on	on	ADP
cuesj-1365	23	23	energy	energy	NOUN
cuesj-1365	23	24	dissipation	dissipation	NOUN
cuesj-1365	23	25	,	,	PUNCT
cuesj-1365	23	26	building	build	VERB
cuesj-1365	23	27	upon	upon	SCONJ
cuesj-1365	23	28	previous	previous	ADJ
cuesj-1365	23	29	studies	study	NOUN
cuesj-1365	23	30	.	.	PUNCT
cuesj-1365	24	1	we	we	PRON
cuesj-1365	24	2	will	will	AUX
cuesj-1365	24	3	use	use	VERB
cuesj-1365	24	4	ansys	ansy	NOUN
cuesj-1365	24	5	-	-	PUNCT
cuesj-1365	24	6	fluent	fluent	NOUN
cuesj-1365	24	7	to	to	PART
cuesj-1365	24	8	look	look	VERB
cuesj-1365	24	9	at	at	ADP
cuesj-1365	24	10	forty	forty	NUM
cuesj-1365	24	11	-	-	PUNCT
cuesj-1365	24	12	five	five	NUM
cuesj-1365	24	13	different	different	ADJ
cuesj-1365	24	14	configurations	configuration	NOUN
cuesj-1365	24	15	with	with	ADP
cuesj-1365	24	16	the	the	DET
cuesj-1365	24	17	same	same	ADJ
cuesj-1365	24	18	chute	chute	NOUN
cuesj-1365	24	19	slopes	slope	NOUN
cuesj-1365	24	20	but	but	CCONJ
cuesj-1365	24	21	different	different	ADJ
cuesj-1365	24	22	flow	flow	NOUN
cuesj-1365	24	23	conditions	condition	NOUN
cuesj-1365	24	24	.	.	PUNCT
cuesj-1365	25	1	the	the	DET
cuesj-1365	25	2	results	result	NOUN
cuesj-1365	25	3	will	will	AUX
cuesj-1365	25	4	help	help	VERB
cuesj-1365	25	5	improve	improve	VERB
cuesj-1365	25	6	stepped	step	VERB
cuesj-1365	25	7	spillway	spillway	NOUN
cuesj-1365	25	8	designs	design	NOUN
cuesj-1365	25	9	by	by	ADP
cuesj-1365	25	10	making	make	VERB
cuesj-1365	25	11	them	they	PRON
cuesj-1365	25	12	more	more	ADV
cuesj-1365	25	13	efficient	efficient	ADJ
cuesj-1365	25	14	at	at	ADP
cuesj-1365	25	15	dissipating	dissipate	VERB
cuesj-1365	25	16	energy	energy	NOUN
cuesj-1365	25	17	and	and	CCONJ
cuesj-1365	25	18	keeping	keep	VERB
cuesj-1365	25	19	the	the	DET
cuesj-1365	25	20	flow	flow	NOUN
cuesj-1365	25	21	stable	stable	ADJ
cuesj-1365	25	22	.	.	PUNCT
cuesj-1365	26	1	corresponding	correspond	VERB
cuesj-1365	26	2	author	author	NOUN
cuesj-1365	26	3	:	:	PUNCT
cuesj-1365	26	4	pshtiwan	pshtiwan	PROPN
cuesj-1365	26	5	o.	o.	PROPN
cuesj-1365	26	6	zaid	zaid	PROPN
cuesj-1365	26	7	,	,	PUNCT
cuesj-1365	26	8	department	department	NOUN
cuesj-1365	26	9	of	of	ADP
cuesj-1365	26	10	water	water	NOUN
cuesj-1365	26	11	resources	resource	NOUN
cuesj-1365	26	12	engineering	engineering	NOUN
cuesj-1365	26	13	,	,	PUNCT
cuesj-1365	26	14	college	college	NOUN
cuesj-1365	26	15	of	of	ADP
cuesj-1365	26	16	engineering	engineering	NOUN
cuesj-1365	26	17	,	,	PUNCT
cuesj-1365	26	18	salahaddin	salahaddin	VERB
cuesj-1365	26	19	university	university	NOUN
cuesj-1365	26	20	-	-	PUNCT
cuesj-1365	26	21	erbil	erbil	PROPN
cuesj-1365	26	22	,	,	PUNCT
cuesj-1365	26	23	iraq	iraq	PROPN
cuesj-1365	26	24	.	.	PUNCT
cuesj-1365	27	1	e	e	X
cuesj-1365	27	2	-	-	NOUN
cuesj-1365	27	3	mail	mail	NOUN
cuesj-1365	27	4	:	:	PUNCT
cuesj-1365	27	5	pshtiwan.zaid@su.edu.krd	pshtiwan.zaid@su.edu.krd	NOUN
cuesj-1365	27	6	received	receive	VERB
cuesj-1365	27	7	:	:	PUNCT
cuesj-1365	27	8	january	january	PROPN
cuesj-1365	27	9	09	09	NUM
cuesj-1365	27	10	,	,	PUNCT
cuesj-1365	27	11	2025	2025	NUM
cuesj-1365	27	12	accepted	accept	VERB
cuesj-1365	27	13	:	:	PUNCT
cuesj-1365	27	14	july	july	PROPN
cuesj-1365	27	15	12	12	NUM
cuesj-1365	27	16	,	,	PUNCT
cuesj-1365	27	17	2025	2025	NUM
cuesj-1365	27	18	published	publish	VERB
cuesj-1365	27	19	:	:	PUNCT
cuesj-1365	27	20	september	september	PROPN
cuesj-1365	27	21	10	10	NUM
cuesj-1365	27	22	,	,	PUNCT
cuesj-1365	27	23	2025	2025	NUM
cuesj-1365	27	24	doi	doi	NOUN
cuesj-1365	27	25	:	:	PUNCT
cuesj-1365	27	26	10.24086	10.24086	NUM
cuesj-1365	27	27	/	/	SYM
cuesj-1365	27	28	cuesj.v9n2y2025.pp56	cuesj.v9n2y2025.pp56	NOUN
cuesj-1365	27	29	-	-	SYM
cuesj-1365	27	30	60	60	NUM
cuesj-1365	27	31	copyright	copyright	NOUN
cuesj-1365	27	32	©	©	PROPN
cuesj-1365	27	33	2025	2025	NUM
cuesj-1365	27	34	pshtiwan	pshtiwan	PROPN
cuesj-1365	27	35	o.	o.	PROPN
cuesj-1365	27	36	zaid	zaid	PROPN
cuesj-1365	27	37	,	,	PUNCT
cuesj-1365	27	38	abdulla	abdulla	PROPN
cuesj-1365	27	39	a.	a.	NOUN
cuesj-1365	27	40	abo	abo	PROPN
cuesj-1365	27	41	.	.	PUNCT
cuesj-1365	28	1	this	this	PRON
cuesj-1365	28	2	is	be	AUX
cuesj-1365	28	3	an	an	DET
cuesj-1365	28	4	open	open	ADJ
cuesj-1365	28	5	-	-	PUNCT
cuesj-1365	28	6	access	access	NOUN
cuesj-1365	28	7	article	article	NOUN
cuesj-1365	28	8	distributed	distribute	VERB
cuesj-1365	28	9	under	under	ADP
cuesj-1365	28	10	the	the	DET
cuesj-1365	28	11	creative	creative	ADJ
cuesj-1365	28	12	commons	common	NOUN
cuesj-1365	28	13	attribution	attribution	NOUN
cuesj-1365	28	14	license	license	NOUN
cuesj-1365	28	15	.	.	PUNCT
cuesj-1365	29	1	cihan	cihan	VERB
cuesj-1365	29	2	university	university	NOUN
cuesj-1365	29	3	-	-	PUNCT
cuesj-1365	29	4	erbil	erbil	PROPN
cuesj-1365	29	5	scientific	scientific	ADJ
cuesj-1365	29	6	journal	journal	NOUN
cuesj-1365	29	7	(	(	PUNCT
cuesj-1365	29	8	cuesj	cuesj	PROPN
cuesj-1365	29	9	)	)	PUNCT
cuesj-1365	29	10	.	.	PUNCT
cuesj-1365	30	1	cihan	cihan	VERB
cuesj-1365	30	2	university	university	NOUN
cuesj-1365	30	3	-	-	PUNCT
cuesj-1365	30	4	erbil	erbil	PROPN
cuesj-1365	30	5	scientific	scientific	ADJ
cuesj-1365	30	6	journal	journal	NOUN
cuesj-1365	30	7	(	(	PUNCT
cuesj-1365	30	8	cuesj	cuesj	PROPN
cuesj-1365	30	9	)	)	PUNCT
cuesj-1365	30	10	zaid	zaid	PROPN
cuesj-1365	30	11	and	and	CCONJ
cuesj-1365	30	12	abo	abo	NOUN
cuesj-1365	30	13	:	:	PUNCT
cuesj-1365	30	14	cfd	cfd	NOUN
cuesj-1365	30	15	analysis	analysis	NOUN
cuesj-1365	30	16	of	of	ADP
cuesj-1365	30	17	stepped	step	VERB
cuesj-1365	30	18	spillway	spillway	NOUN
cuesj-1365	30	19	effects	effect	NOUN
cuesj-1365	30	20	on	on	ADP
cuesj-1365	30	21	stilling	still	VERB
cuesj-1365	30	22	basin	basin	NOUN
cuesj-1365	30	23	size	size	NOUN
cuesj-1365	30	24	57	57	NUM
cuesj-1365	30	25	http://journals.cihanuniversity.edu.iq/index.php/cuesj	http://journals.cihanuniversity.edu.iq/index.php/cuesj	ADJ
cuesj-1365	30	26	cuesj	cuesj	NOUN
cuesj-1365	30	27	2025	2025	NUM
cuesj-1365	30	28	,	,	PUNCT
cuesj-1365	30	29	9	9	NUM
cuesj-1365	30	30	(	(	PUNCT
cuesj-1365	30	31	2	2	NUM
cuesj-1365	30	32	):	):	PUNCT
cuesj-1365	30	33	56	56	NUM
cuesj-1365	30	34	-	-	SYM
cuesj-1365	30	35	60	60	NUM
cuesj-1365	30	36	methodology	methodology	NOUN
cuesj-1365	30	37	using	use	VERB
cuesj-1365	30	38	the	the	DET
cuesj-1365	30	39	commercial	commercial	ADJ
cuesj-1365	30	40	code	code	NOUN
cuesj-1365	30	41	ansys	ansys	PROPN
cuesj-1365	30	42	-	-	PUNCT
cuesj-1365	30	43	fluent	fluent	ADJ
cuesj-1365	30	44	,	,	PUNCT
cuesj-1365	30	45	numerical	numerical	ADJ
cuesj-1365	30	46	results	result	NOUN
cuesj-1365	30	47	are	be	AUX
cuesj-1365	30	48	compared	compare	VERB
cuesj-1365	30	49	to	to	ADP
cuesj-1365	30	50	the	the	DET
cuesj-1365	30	51	experimental	experimental	ADJ
cuesj-1365	30	52	data	datum	NOUN
cuesj-1365	30	53	for	for	ADP
cuesj-1365	30	54	the	the	DET
cuesj-1365	30	55	spillway	spillway	NOUN
cuesj-1365	30	56	model	model	NOUN
cuesj-1365	30	57	tested	test	VERB
cuesj-1365	30	58	experimentally	experimentally	ADV
cuesj-1365	30	59	,	,	PUNCT
cuesj-1365	30	60	with	with	ADP
cuesj-1365	30	61	a	a	DET
cuesj-1365	30	62	specific	specific	ADJ
cuesj-1365	30	63	focus	focus	NOUN
cuesj-1365	30	64	paid	pay	VERB
cuesj-1365	30	65	to	to	ADP
cuesj-1365	30	66	alternating	alternate	VERB
cuesj-1365	30	67	skimming	skim	VERB
cuesj-1365	30	68	flow	flow	NOUN
cuesj-1365	30	69	behavior	behavior	NOUN
cuesj-1365	30	70	.	.	PUNCT
cuesj-1365	31	1	different	different	ADJ
cuesj-1365	31	2	spillway	spillway	NOUN
cuesj-1365	31	3	configurations	configuration	NOUN
cuesj-1365	31	4	may	may	AUX
cuesj-1365	31	5	then	then	ADV
cuesj-1365	31	6	be	be	AUX
cuesj-1365	31	7	studied	study	VERB
cuesj-1365	31	8	using	use	VERB
cuesj-1365	31	9	the	the	DET
cuesj-1365	31	10	numerical	numerical	PROPN
cuesj-1365	31	11	code	code	PROPN
cuesj-1365	31	12	.	.	PUNCT
cuesj-1365	32	1	these	these	DET
cuesj-1365	32	2	sections	section	NOUN
cuesj-1365	32	3	cover	cover	VERB
cuesj-1365	32	4	the	the	DET
cuesj-1365	32	5	proposed	propose	VERB
cuesj-1365	32	6	numerical	numerical	PROPN
cuesj-1365	32	7	model	model	PROPN
cuesj-1365	32	8	’s	’s	PART
cuesj-1365	32	9	definition	definition	NOUN
cuesj-1365	32	10	and	and	CCONJ
cuesj-1365	32	11	implementation	implementation	NOUN
cuesj-1365	32	12	aspects	aspect	NOUN
cuesj-1365	32	13	in	in	ADP
cuesj-1365	32	14	detail	detail	NOUN
cuesj-1365	32	15	.	.	PUNCT
cuesj-1365	33	1	the	the	DET
cuesj-1365	33	2	mesh	mesh	NOUN
cuesj-1365	33	3	was	be	AUX
cuesj-1365	33	4	generated	generate	VERB
cuesj-1365	33	5	using	use	VERB
cuesj-1365	33	6	an	an	DET
cuesj-1365	33	7	inflation	inflation	NOUN
cuesj-1365	33	8	technique	technique	NOUN
cuesj-1365	33	9	near	near	ADP
cuesj-1365	33	10	the	the	DET
cuesj-1365	33	11	wall	wall	NOUN
cuesj-1365	33	12	boundaries	boundary	NOUN
cuesj-1365	33	13	to	to	PART
cuesj-1365	33	14	accurately	accurately	ADV
cuesj-1365	33	15	capture	capture	VERB
cuesj-1365	33	16	the	the	DET
cuesj-1365	33	17	boundary	boundary	ADJ
cuesj-1365	33	18	layer	layer	NOUN
cuesj-1365	33	19	(	(	PUNCT
cuesj-1365	33	20	see	see	VERB
cuesj-1365	33	21	figure	figure	NOUN
cuesj-1365	33	22	2	2	NUM
cuesj-1365	33	23	)	)	PUNCT
cuesj-1365	33	24	.	.	PUNCT
cuesj-1365	34	1	governing	govern	VERB
cuesj-1365	34	2	equations	equation	NOUN
cuesj-1365	34	3	the	the	DET
cuesj-1365	34	4	rng	rng	PROPN
cuesj-1365	34	5	k	k	PROPN
cuesj-1365	34	6	–	–	PUNCT
cuesj-1365	34	7	ε	ε	PROPN
cuesj-1365	34	8	°	°	ADP
cuesj-1365	34	9	turbulence	turbulence	NOUN
cuesj-1365	34	10	model	model	NOUN
cuesj-1365	34	11	closure	closure	NOUN
cuesj-1365	34	12	is	be	AUX
cuesj-1365	34	13	used	use	VERB
cuesj-1365	34	14	in	in	ADP
cuesj-1365	34	15	cooperation	cooperation	NOUN
cuesj-1365	34	16	with	with	ADP
cuesj-1365	34	17	a	a	DET
cuesj-1365	34	18	set	set	NOUN
cuesj-1365	34	19	of	of	ADP
cuesj-1365	34	20	3d	3d	PROPN
cuesj-1365	34	21	reynolds	reynolds	PROPN
cuesj-1365	34	22	averaged	average	VERB
cuesj-1365	34	23	navier	navier	NOUN
cuesj-1365	34	24	stokes	stokes	PROPN
cuesj-1365	34	25	equations	equation	NOUN
cuesj-1365	34	26	in	in	ADP
cuesj-1365	34	27	the	the	DET
cuesj-1365	34	28	spillway	spillway	NOUN
cuesj-1365	34	29	numerical	numerical	PROPN
cuesj-1365	34	30	model	model	NOUN
cuesj-1365	34	31	and	and	CCONJ
cuesj-1365	34	32	hirt	hirt	PROPN
cuesj-1365	34	33	&	&	CCONJ
cuesj-1365	34	34	and	and	CCONJ
cuesj-1365	34	35	nichols	nichols	PROPN
cuesj-1365	34	36	’	'	PUNCT
cuesj-1365	34	37	nichols	nichols	PROPN
cuesj-1365	34	38	’	'	PUNCT
cuesj-1365	34	39	(	(	PUNCT
cuesj-1365	34	40	1981	1981	NUM
cuesj-1365	34	41	)	)	PUNCT
cuesj-1365	34	42	volume	volume	NOUN
cuesj-1365	34	43	of	of	ADP
cuesj-1365	34	44	fluid	fluid	NOUN
cuesj-1365	34	45	(	(	PUNCT
cuesj-1365	34	46	vof	vof	NOUN
cuesj-1365	34	47	)	)	PUNCT
cuesj-1365	34	48	technique	technique	NOUN
cuesj-1365	34	49	.	.	PUNCT
cuesj-1365	35	1	the	the	DET
cuesj-1365	35	2	water	water	NOUN
cuesj-1365	35	3	volume	volume	NOUN
cuesj-1365	35	4	fraction	fraction	NOUN
cuesj-1365	35	5	(	(	PUNCT
cuesj-1365	35	6	α	α	NOUN
cuesj-1365	35	7	)	)	PUNCT
cuesj-1365	35	8	was	be	AUX
cuesj-1365	35	9	used	use	VERB
cuesj-1365	35	10	to	to	PART
cuesj-1365	35	11	track	track	VERB
cuesj-1365	35	12	the	the	DET
cuesj-1365	35	13	free	free	ADJ
cuesj-1365	35	14	surface	surface	NOUN
cuesj-1365	35	15	interface	interface	NOUN
cuesj-1365	35	16	(	(	PUNCT
cuesj-1365	35	17	see	see	VERB
cuesj-1365	35	18	figure	figure	NOUN
cuesj-1365	35	19	3	3	NUM
cuesj-1365	35	20	)	)	PUNCT
cuesj-1365	35	21	.	.	PUNCT
cuesj-1365	36	1	for	for	ADP
cuesj-1365	36	2	example	example	NOUN
cuesj-1365	36	3	,	,	PUNCT
cuesj-1365	36	4	the	the	DET
cuesj-1365	36	5	model	model	NOUN
cuesj-1365	36	6	functions	function	NOUN
cuesj-1365	36	7	as	as	ADP
cuesj-1365	36	8	a	a	DET
cuesj-1365	36	9	k	k	PROPN
cuesj-1365	36	10	-	-	PUNCT
cuesj-1365	36	11	w	w	NOUN
cuesj-1365	36	12	model	model	NOUN
cuesj-1365	36	13	for	for	ADP
cuesj-1365	36	14	near	near	ADJ
cuesj-1365	36	15	-	-	PUNCT
cuesj-1365	36	16	wall	wall	NOUN
cuesj-1365	36	17	vortices	vortex	NOUN
cuesj-1365	36	18	,	,	PUNCT
cuesj-1365	36	19	and	and	CCONJ
cuesj-1365	36	20	as	as	ADP
cuesj-1365	36	21	a	a	DET
cuesj-1365	36	22	k	k	NOUN
cuesj-1365	36	23	-	-	PUNCT
cuesj-1365	36	24	e	e	ADJ
cuesj-1365	36	25	model	model	NOUN
cuesj-1365	36	26	in	in	ADP
cuesj-1365	36	27	the	the	DET
cuesj-1365	36	28	free	free	ADJ
cuesj-1365	36	29	stream	stream	NOUN
cuesj-1365	36	30	zone	zone	NOUN
cuesj-1365	36	31	(	(	PUNCT
cuesj-1365	36	32	above	above	ADP
cuesj-1365	36	33	the	the	DET
cuesj-1365	36	34	pseudo	pseudo	NOUN
cuesj-1365	36	35	-	-	NOUN
cuesj-1365	36	36	bottom	bottom	NOUN
cuesj-1365	36	37	)	)	PUNCT
cuesj-1365	36	38	,	,	PUNCT
cuesj-1365	36	39	where	where	SCONJ
cuesj-1365	36	40	high	high	ADJ
cuesj-1365	36	41	reynolds	reynold	NOUN
cuesj-1365	36	42	number	number	NOUN
cuesj-1365	36	43	formulation	formulation	NOUN
cuesj-1365	36	44	of	of	ADP
cuesj-1365	36	45	the	the	DET
cuesj-1365	36	46	model	model	NOUN
cuesj-1365	36	47	is	be	AUX
cuesj-1365	36	48	quite	quite	ADV
cuesj-1365	36	49	successful	successful	ADJ
cuesj-1365	36	50	.	.	PUNCT
cuesj-1365	37	1	once	once	ADV
cuesj-1365	37	2	the	the	DET
cuesj-1365	37	3	mass	mass	NOUN
cuesj-1365	37	4	and	and	CCONJ
cuesj-1365	37	5	momentum	momentum	NOUN
cuesj-1365	37	6	conservation	conservation	NOUN
cuesj-1365	37	7	equations	equation	NOUN
cuesj-1365	37	8	(	(	PUNCT
cuesj-1365	37	9	eqs.1	eqs.1	NOUN
cuesj-1365	37	10	and	and	CCONJ
cuesj-1365	37	11	eq	eq	NOUN
cuesj-1365	37	12	.	.	PROPN
cuesj-1365	37	13	2	2	NUM
cuesj-1365	37	14	)	)	PUNCT
cuesj-1365	37	15	for	for	ADP
cuesj-1365	37	16	each	each	DET
cuesj-1365	37	17	phase	phase	NOUN
cuesj-1365	37	18	have	have	AUX
cuesj-1365	37	19	been	be	AUX
cuesj-1365	37	20	solved	solve	VERB
cuesj-1365	37	21	,	,	PUNCT
cuesj-1365	37	22	the	the	DET
cuesj-1365	37	23	fluid	fluid	ADJ
cuesj-1365	37	24	volume	volume	NOUN
cuesj-1365	37	25	in	in	ADP
cuesj-1365	37	26	each	each	DET
cuesj-1365	37	27	domain	domain	NOUN
cuesj-1365	37	28	cell	cell	NOUN
cuesj-1365	37	29	may	may	AUX
cuesj-1365	37	30	be	be	AUX
cuesj-1365	37	31	estimated	estimate	VERB
cuesj-1365	37	32	to	to	PART
cuesj-1365	37	33	get	get	VERB
cuesj-1365	37	34	the	the	DET
cuesj-1365	37	35	free	free	ADJ
cuesj-1365	37	36	surface	surface	NOUN
cuesj-1365	37	37	.	.	PUNCT
cuesj-1365	38	1	values	value	NOUN
cuesj-1365	38	2	of	of	ADP
cuesj-1365	38	3	alpha	alpha	NOUN
cuesj-1365	38	4	(	(	PUNCT
cuesj-1365	38	5	α	α	NOUN
cuesj-1365	38	6	)	)	PUNCT
cuesj-1365	38	7	are	be	AUX
cuesj-1365	38	8	defined	define	VERB
cuesj-1365	38	9	by	by	ADP
cuesj-1365	38	10	vof	vof	NOUN
cuesj-1365	38	11	,	,	PUNCT
cuesj-1365	38	12	and	and	CCONJ
cuesj-1365	38	13	they	they	PRON
cuesj-1365	38	14	range	range	VERB
cuesj-1365	38	15	from	from	ADP
cuesj-1365	38	16	1	1	NUM
cuesj-1365	38	17	to	to	ADP
cuesj-1365	38	18	0	0	NUM
cuesj-1365	38	19	,	,	PUNCT
cuesj-1365	38	20	which	which	PRON
cuesj-1365	38	21	corresponds	correspond	VERB
cuesj-1365	38	22	to	to	ADP
cuesj-1365	38	23	cells	cell	NOUN
cuesj-1365	38	24	filled	fill	VERB
cuesj-1365	38	25	with	with	ADP
cuesj-1365	38	26	water	water	NOUN
cuesj-1365	38	27	or	or	CCONJ
cuesj-1365	38	28	fluid	fluid	ADJ
cuesj-1365	38	29	1	1	NUM
cuesj-1365	38	30	(	(	PUNCT
cuesj-1365	38	31	f1	f1	NOUN
cuesj-1365	38	32	)	)	PUNCT
cuesj-1365	38	33	,	,	PUNCT
cuesj-1365	38	34	α	α	PRON
cuesj-1365	38	35	value	value	NOUN
cuesj-1365	38	36	of	of	ADP
cuesj-1365	38	37	1	1	NUM
cuesj-1365	38	38	;	;	PUNCT
cuesj-1365	38	39	and	and	CCONJ
cuesj-1365	38	40	cells	cell	NOUN
cuesj-1365	38	41	filled	fill	VERB
cuesj-1365	38	42	with	with	ADP
cuesj-1365	38	43	air	air	NOUN
cuesj-1365	38	44	air	air	NOUN
cuesj-1365	38	45	(	(	PUNCT
cuesj-1365	38	46	f2	f2	PROPN
cuesj-1365	38	47	)	)	PUNCT
cuesj-1365	38	48	,	,	PUNCT
cuesj-1365	38	49	α	α	PROPN
cuesj-1365	38	50	value	value	NOUN
cuesj-1365	38	51	of	of	ADP
cuesj-1365	38	52	0	0	NUM
cuesj-1365	38	53	.	.	PUNCT
cuesj-1365	39	1	volume	volume	NOUN
cuesj-1365	39	2	fractions	fraction	NOUN
cuesj-1365	39	3	αα	αα	VERB
cuesj-1365	39	4	may	may	AUX
cuesj-1365	39	5	be	be	AUX
cuesj-1365	39	6	expressed	express	VERB
cuesj-1365	39	7	as	as	ADP
cuesj-1365	39	8	αα=	αα=	PROPN
cuesj-1365	39	9	1−αw	1−αw	NUM
cuesj-1365	39	10	in	in	ADP
cuesj-1365	39	11	each	each	DET
cuesj-1365	39	12	instance	instance	NOUN
cuesj-1365	39	13	,	,	PUNCT
cuesj-1365	39	14	because	because	SCONJ
cuesj-1365	39	15	the	the	DET
cuesj-1365	39	16	volume	volume	NOUN
cuesj-1365	39	17	of	of	ADP
cuesj-1365	39	18	the	the	DET
cuesj-1365	39	19	fluid	fluid	ADJ
cuesj-1365	39	20	fraction	fraction	NOUN
cuesj-1365	39	21	sum	sum	NOUN
cuesj-1365	39	22	of	of	ADP
cuesj-1365	39	23	air	air	NOUN
cuesj-1365	39	24	and	and	CCONJ
cuesj-1365	39	25	water	water	NOUN
cuesj-1365	39	26	equals	equal	VERB
cuesj-1365	39	27	one	one	NUM
cuesj-1365	39	28	.	.	PUNCT
cuesj-1365	40	1	each	each	DET
cuesj-1365	40	2	time	time	NOUN
cuesj-1365	40	3	step	step	NOUN
cuesj-1365	40	4	,	,	PUNCT
cuesj-1365	40	5	the	the	DET
cuesj-1365	40	6	advection	advection	NOUN
cuesj-1365	40	7	equation	equation	NOUN
cuesj-1365	40	8	for	for	ADP
cuesj-1365	40	9	a	a	DET
cuesj-1365	40	10	(	(	PUNCT
cuesj-1365	40	11	eq	eq	NOUN
cuesj-1365	40	12	.	.	NOUN
cuesj-1365	40	13	3	3	NUM
cuesj-1365	40	14	)	)	PUNCT
cuesj-1365	40	15	is	be	AUX
cuesj-1365	40	16	used	use	VERB
cuesj-1365	40	17	to	to	PART
cuesj-1365	40	18	update	update	VERB
cuesj-1365	40	19	α	α	NOUN
cuesj-1365	40	20	.	.	PUNCT
cuesj-1365	41	1	assuming	assume	VERB
cuesj-1365	41	2	that	that	SCONJ
cuesj-1365	41	3	each	each	DET
cuesj-1365	41	4	phase	phase	NOUN
cuesj-1365	41	5	is	be	AUX
cuesj-1365	41	6	highly	highly	ADV
cuesj-1365	41	7	viscous	viscous	ADJ
cuesj-1365	41	8	;	;	PUNCT
cuesj-1365	41	9	,	,	PUNCT
cuesj-1365	41	10	the	the	DET
cuesj-1365	41	11	vof	vof	NOUN
cuesj-1365	41	12	model	model	NOUN
cuesj-1365	41	13	does	do	AUX
cuesj-1365	41	14	not	not	PART
cuesj-1365	41	15	include	include	VERB
cuesj-1365	41	16	air	air	NOUN
cuesj-1365	41	17	entrainment	entrainment	NOUN
cuesj-1365	41	18	in	in	ADP
cuesj-1365	41	19	its	its	PRON
cuesj-1365	41	20	calculations	calculation	NOUN
cuesj-1365	41	21	.	.	PUNCT
cuesj-1365	42	1	to	to	PART
cuesj-1365	42	2	get	get	VERB
cuesj-1365	42	3	a	a	DET
cuesj-1365	42	4	rough	rough	ADJ
cuesj-1365	42	5	idea	idea	NOUN
cuesj-1365	42	6	of	of	ADP
cuesj-1365	42	7	the	the	DET
cuesj-1365	42	8	free	free	ADJ
cuesj-1365	42	9	-	-	PUNCT
cuesj-1365	42	10	surface	surface	NOUN
cuesj-1365	42	11	location	location	NOUN
cuesj-1365	42	12	,	,	PUNCT
cuesj-1365	42	13	α	α	NOUN
cuesj-1365	42	14	=	=	SYM
cuesj-1365	42	15	0.5	0.5	NUM
cuesj-1365	42	16	is	be	AUX
cuesj-1365	42	17	often	often	ADV
cuesj-1365	42	18	used	use	VERB
cuesj-1365	42	19	.	.	PUNCT
cuesj-1365	43	1	gy∇	gy∇	NOUN
cuesj-1365	44	1	=	=	NOUN
cuesj-1365	44	2	.υ	.υ	NOUN
cuesj-1365	44	3	0	0	PUNCT
cuesj-1365	44	4	(	(	PUNCT
cuesj-1365	44	5	1	1	NUM
cuesj-1365	44	6	)	)	PUNCT
cuesj-1365	44	7	∂	∂	NUM
cuesj-1365	44	8	∂	∂	NOUN
cuesj-1365	44	9	+	+	NUM
cuesj-1365	44	10	∇	∇	X
cuesj-1365	44	11	(	(	PUNCT
cuesj-1365	44	12	)	)	PUNCT
cuesj-1365	44	13	=	=	SYM
cuesj-1365	44	14	−∇	−∇	NOUN
cuesj-1365	44	15	−	−	NOUN
cuesj-1365	44	16	∇	∇	X
cuesj-1365	44	17	+	+	NOUN
cuesj-1365	44	18	∇	∇	X
cuesj-1365	44	19	∇	∇	X
cuesj-1365	44	20	(	(	PUNCT
cuesj-1365	44	21	)	)	PUNCT
cuesj-1365	45	1	+	+	CCONJ
cuesj-1365	45	2	∇	∇	X
cuesj-1365	45	3	(	(	PUNCT
cuesj-1365	45	4	)	)	PUNCT
cuesj-1365	45	5	∇	∇	PROPN
cuesj-1365	45	6	+	+	CCONJ
cuesj-1365	45	7	ρυ	ρυ	PROPN
cuesj-1365	45	8	ρ	ρ	PROPN
cuesj-1365	45	9	µ	µ	PROPN
cuesj-1365	45	10	µρ	µρ	ADP
cuesj-1365	45	11	t	t	NOUN
cuesj-1365	45	12	uu	uu	PROPN
cuesj-1365	45	13	p	p	X
cuesj-1365	45	14	g	g	NOUN
cuesj-1365	45	15	x	x	PUNCT
cuesj-1365	45	16	u	u	NOUN
cuesj-1365	45	17	u	u	NOUN
cuesj-1365	45	18	f	f	PROPN
cuesj-1365	45	19	*	*	PUNCT
cuesj-1365	45	20	.	.	PUNCT
cuesj-1365	45	21	.	.	PUNCT
cuesj-1365	45	22	.	.	PUNCT
cuesj-1365	45	23	.	.	PUNCT
cuesj-1365	46	1	(	(	PUNCT
cuesj-1365	46	2	2	2	NUM
cuesj-1365	46	3	)	)	PUNCT
cuesj-1365	46	4	∂	∂	NUM
cuesj-1365	46	5	∂	∂	NUM
cuesj-1365	46	6	+	+	NUM
cuesj-1365	46	7	∂	∂	NUM
cuesj-1365	46	8	∂	∂	NOUN
cuesj-1365	46	9	=	=	SYM
cuesj-1365	46	10	≤	≤	NOUN
cuesj-1365	46	11	≤	≤	NUM
cuesj-1365	46	12	α	α	NUM
cuesj-1365	46	13	α	α	NOUN
cuesj-1365	46	14	αw	αw	ADP
cuesj-1365	46	15	w	w	NOUN
cuesj-1365	46	16	i	i	PROPN
cuesj-1365	46	17	w	w	PROPN
cuesj-1365	46	18	t	t	PROPN
cuesj-1365	46	19	u	u	NOUN
cuesj-1365	46	20	x	x	PROPN
cuesj-1365	46	21	0	0	NUM
cuesj-1365	46	22	0	0	NUM
cuesj-1365	46	23	1	1	NUM
cuesj-1365	46	24	;	;	PUNCT
cuesj-1365	46	25	(	(	PUNCT
cuesj-1365	46	26	3	3	X
cuesj-1365	46	27	)	)	PUNCT
cuesj-1365	46	28	where	where	SCONJ
cuesj-1365	46	29	x	x	X
cuesj-1365	47	1	=	=	PUNCT
cuesj-1365	48	1	[	[	X
cuesj-1365	48	2	x	x	X
cuesj-1365	48	3	,	,	PUNCT
cuesj-1365	48	4	y	y	PROPN
cuesj-1365	48	5	,	,	PUNCT
cuesj-1365	48	6	z	z	X
cuesj-1365	48	7	]	]	X
cuesj-1365	48	8	is	be	AUX
cuesj-1365	48	9	the	the	DET
cuesj-1365	48	10	cartesian	cartesian	ADJ
cuesj-1365	48	11	coordinates	coordinate	NOUN
cuesj-1365	48	12	and	and	CCONJ
cuesj-1365	48	13	u	u	NOUN
cuesj-1365	48	14	is	be	AUX
cuesj-1365	48	15	the	the	DET
cuesj-1365	48	16	reynolds	reynold	NOUN
cuesj-1365	48	17	-	-	PUNCT
cuesj-1365	48	18	averaged	average	VERB
cuesj-1365	48	19	velocity	velocity	NOUN
cuesj-1365	48	20	components	component	NOUN
cuesj-1365	48	21	in	in	ADP
cuesj-1365	48	22	the	the	DET
cuesj-1365	48	23	x	x	NOUN
cuesj-1365	48	24	direction	direction	NOUN
cuesj-1365	48	25	.	.	PUNCT
cuesj-1365	49	1	there	there	PRON
cuesj-1365	49	2	are	be	VERB
cuesj-1365	49	3	three	three	NUM
cuesj-1365	49	4	variables	variable	NOUN
cuesj-1365	49	5	in	in	ADP
cuesj-1365	49	6	this	this	DET
cuesj-1365	49	7	equation	equation	NOUN
cuesj-1365	49	8	:	:	PUNCT
cuesj-1365	49	9	time	time	NOUN
cuesj-1365	49	10	(	(	PUNCT
cuesj-1365	49	11	t	t	NOUN
cuesj-1365	49	12	)	)	PUNCT
cuesj-1365	49	13	,	,	PUNCT
cuesj-1365	49	14	gravity	gravity	NOUN
cuesj-1365	49	15	(	(	PUNCT
cuesj-1365	49	16	g	g	NOUN
cuesj-1365	49	17	)	)	PUNCT
cuesj-1365	49	18	,	,	PUNCT
cuesj-1365	49	19	and	and	CCONJ
cuesj-1365	49	20	velocity	velocity	NOUN
cuesj-1365	49	21	u	u	PROPN
cuesj-1365	49	22	(	(	PUNCT
cuesj-1365	49	23	)	)	PUNCT
cuesj-1365	49	24	.	.	PUNCT
cuesj-1365	50	1	∇	∇	PROPN
cuesj-1365	50	2	∇	∇	X
cuesj-1365	50	3	(	(	PUNCT
cuesj-1365	50	4	)	)	PUNCT
cuesj-1365	51	1	+	+	CCONJ
cuesj-1365	51	2	∇	∇	X
cuesj-1365	51	3	(	(	PUNCT
cuesj-1365	51	4	)	)	PUNCT
cuesj-1365	51	5	∇.	∇.	NUM
cuesj-1365	51	6	.µ	.µ	NOUN
cuesj-1365	51	7	µu	µu	PRON
cuesj-1365	51	8	u	u	NOUN
cuesj-1365	51	9	is	be	AUX
cuesj-1365	51	10	a	a	DET
cuesj-1365	51	11	decomposition	decomposition	NOUN
cuesj-1365	51	12	of	of	ADP
cuesj-1365	51	13	the	the	DET
cuesj-1365	51	14	shear	shear	NOUN
cuesj-1365	51	15	stress	stress	PROPN
cuesj-1365	51	16	tensor	tensor	NOUN
cuesj-1365	51	17	,	,	PUNCT
cuesj-1365	51	18	f	f	PROPN
cuesj-1365	51	19	is	be	AUX
cuesj-1365	51	20	the	the	DET
cuesj-1365	51	21	volumetric	volumetric	ADJ
cuesj-1365	51	22	surface	surface	NOUN
cuesj-1365	51	23	tension	tension	NOUN
cuesj-1365	51	24	force	force	NOUN
cuesj-1365	51	25	,	,	PUNCT
cuesj-1365	51	26	and	and	CCONJ
cuesj-1365	51	27	the	the	DET
cuesj-1365	51	28	modified	modified	ADJ
cuesj-1365	51	29	pressure	pressure	NOUN
cuesj-1365	51	30	(	(	PUNCT
cuesj-1365	51	31	p	p	NOUN
cuesj-1365	51	32	*	*	NOUN
cuesj-1365	51	33	)	)	PUNCT
cuesj-1365	51	34	.	.	PUNCT
cuesj-1365	52	1	it	it	PRON
cuesj-1365	52	2	is	be	AUX
cuesj-1365	52	3	possible	possible	ADJ
cuesj-1365	52	4	to	to	PART
cuesj-1365	52	5	determine	determine	VERB
cuesj-1365	52	6	in	in	ADP
cuesj-1365	52	7	each	each	DET
cuesj-1365	52	8	cell	cell	NOUN
cuesj-1365	52	9	the	the	DET
cuesj-1365	52	10	density	density	NOUN
cuesj-1365	52	11	using	use	VERB
cuesj-1365	52	12	(	(	PUNCT
cuesj-1365	52	13	eq	eq	NOUN
cuesj-1365	52	14	.	.	NOUN
cuesj-1365	52	15	4	4	NUM
cuesj-1365	52	16	)	)	PUNCT
cuesj-1365	52	17	,	,	PUNCT
cuesj-1365	52	18	the	the	DET
cuesj-1365	52	19	dynamic	dynamic	ADJ
cuesj-1365	52	20	viscosity	viscosity	NOUN
cuesj-1365	52	21	using	use	VERB
cuesj-1365	52	22	(	(	PUNCT
cuesj-1365	52	23	eq	eq	NOUN
cuesj-1365	52	24	.	.	PROPN
cuesj-1365	52	25	5	5	NUM
cuesj-1365	52	26	)	)	PUNCT
cuesj-1365	52	27	,	,	PUNCT
cuesj-1365	52	28	and	and	CCONJ
cuesj-1365	52	29	the	the	DET
cuesj-1365	52	30	turbulent	turbulent	ADJ
cuesj-1365	52	31	viscosity	viscosity	NOUN
cuesj-1365	52	32	using	use	VERB
cuesj-1365	52	33	(	(	PUNCT
cuesj-1365	52	34	eq	eq	NOUN
cuesj-1365	52	35	.	.	PROPN
cuesj-1365	52	36	6	6	NUM
cuesj-1365	52	37	)	)	PUNCT
cuesj-1365	52	38	,	,	PUNCT
cuesj-1365	52	39	which	which	PRON
cuesj-1365	52	40	are	be	AUX
cuesj-1365	52	41	all	all	PRON
cuesj-1365	52	42	functions	function	NOUN
cuesj-1365	52	43	of	of	ADP
cuesj-1365	52	44	the	the	DET
cuesj-1365	52	45	water	water	NOUN
cuesj-1365	52	46	volume	volume	NOUN
cuesj-1365	52	47	fraction	fraction	NOUN
cuesj-1365	52	48	αwαw	αwαw	VERB
cuesj-1365	52	49	.	.	PUNCT
cuesj-1365	53	1	ρ	ρ	PROPN
cuesj-1365	53	2	α	α	NOUN
cuesj-1365	53	3	ρ	ρ	NOUN
cuesj-1365	53	4	α	α	NOUN
cuesj-1365	53	5	ρ=	ρ=	NOUN
cuesj-1365	54	1	+	+	CCONJ
cuesj-1365	54	2	−w	−w	ADV
cuesj-1365	54	3	w	w	PROPN
cuesj-1365	54	4	w	w	PROPN
cuesj-1365	54	5	a	a	PROPN
cuesj-1365	54	6	(	(	PUNCT
cuesj-1365	54	7	)	)	SYM
cuesj-1365	54	8	1	1	NUM
cuesj-1365	54	9	(	(	PUNCT
cuesj-1365	54	10	4	4	NUM
cuesj-1365	54	11	)	)	PUNCT
cuesj-1365	54	12	µ	µ	PROPN
cuesj-1365	54	13	α	α	X
cuesj-1365	54	14	µ	µ	VERB
cuesj-1365	54	15	α	α	DET
cuesj-1365	54	16	µ=	µ=	NOUN
cuesj-1365	54	17	+	+	X
cuesj-1365	54	18	−w	−w	ADV
cuesj-1365	54	19	w	w	PROPN
cuesj-1365	54	20	w	w	PROPN
cuesj-1365	54	21	a	a	PROPN
cuesj-1365	54	22	(	(	PUNCT
cuesj-1365	54	23	)	)	SYM
cuesj-1365	54	24	1	1	NUM
cuesj-1365	54	25	(	(	PUNCT
cuesj-1365	54	26	5	5	NUM
cuesj-1365	54	27	)	)	PUNCT
cuesj-1365	54	28	µ	µ	PROPN
cuesj-1365	54	29	ρ	ρ	X
cuesj-1365	54	30	ε	ε	PROPN
cuesj-1365	54	31	ρ	ρ	PROPN
cuesj-1365	54	32	ωµ	ωµ	ADP
cuesj-1365	54	33	µt	µt	PROPN
cuesj-1365	54	34	c	c	PROPN
cuesj-1365	54	35	k	k	PROPN
cuesj-1365	54	36	c	c	PROPN
cuesj-1365	54	37	k	k	PROPN
cuesj-1365	55	1	=	=	PUNCT
cuesj-1365	55	2	=	=	SYM
cuesj-1365	55	3	2	2	NUM
cuesj-1365	55	4	(	(	PUNCT
cuesj-1365	55	5	6	6	NUM
cuesj-1365	55	6	)	)	PUNCT
cuesj-1365	55	7	in	in	ADP
cuesj-1365	55	8	this	this	DET
cuesj-1365	55	9	equation	equation	NOUN
cuesj-1365	55	10	,	,	PUNCT
cuesj-1365	55	11	k	k	PROPN
cuesj-1365	55	12	is	be	AUX
cuesj-1365	55	13	the	the	DET
cuesj-1365	55	14	kinetic	kinetic	ADJ
cuesj-1365	55	15	energy	energy	NOUN
cuesj-1365	55	16	of	of	ADP
cuesj-1365	55	17	turbulence	turbulence	NOUN
cuesj-1365	55	18	,	,	PUNCT
cuesj-1365	55	19	ε	ε	PROPN
cuesj-1365	55	20	is	be	AUX
cuesj-1365	55	21	the	the	DET
cuesj-1365	55	22	energy	energy	NOUN
cuesj-1365	55	23	dissipation	dissipation	NOUN
cuesj-1365	55	24	rate	rate	NOUN
cuesj-1365	55	25	of	of	ADP
cuesj-1365	55	26	turbulence	turbulence	NOUN
cuesj-1365	55	27	,	,	PUNCT
cuesj-1365	55	28	and	and	CCONJ
cuesj-1365	55	29	ω	ω	X
cuesj-1365	55	30	=	=	SYM
cuesj-1365	55	31	ε	ε	PROPN
cuesj-1365	55	32	/	/	SYM
cuesj-1365	55	33	k	k	PROPN
cuesj-1365	55	34	/ω	/ω	PUNCT
cuesj-1365	55	35	ε=	ε=	PROPN
cuesj-1365	55	36	k	k	PROPN
cuesj-1365	55	37	is	be	AUX
cuesj-1365	55	38	the	the	DET
cuesj-1365	55	39	specific	specific	ADJ
cuesj-1365	55	40	energy	energy	NOUN
cuesj-1365	55	41	dissipation	dissipation	NOUN
cuesj-1365	55	42	rate	rate	NOUN
cuesj-1365	55	43	.	.	PUNCT
cuesj-1365	56	1	there	there	PRON
cuesj-1365	56	2	are	be	VERB
cuesj-1365	56	3	specifics	specific	NOUN
cuesj-1365	56	4	to	to	ADP
cuesj-1365	56	5	each	each	PRON
cuesj-1365	56	6	of	of	ADP
cuesj-1365	56	7	the	the	DET
cuesj-1365	56	8	variables	variable	NOUN
cuesj-1365	56	9	’	'	PUNCT
cuesj-1365	56	10	transport	transport	NOUN
cuesj-1365	56	11	equations	equation	NOUN
cuesj-1365	56	12	based	base	VERB
cuesj-1365	56	13	on	on	ADP
cuesj-1365	56	14	the	the	DET
cuesj-1365	56	15	model	model	NOUN
cuesj-1365	56	16	employed	employ	VERB
cuesj-1365	56	17	for	for	ADP
cuesj-1365	56	18	turbulence.[7	turbulence.[7	NOUN
cuesj-1365	56	19	]	]	PUNCT
cuesj-1365	56	20	boundary	boundary	ADJ
cuesj-1365	56	21	conditions	condition	NOUN
cuesj-1365	56	22	,	,	PUNCT
cuesj-1365	56	23	properties	property	NOUN
cuesj-1365	56	24	,	,	PUNCT
cuesj-1365	56	25	and	and	CCONJ
cuesj-1365	56	26	settings	setting	VERB
cuesj-1365	56	27	mechanical	mechanical	ADJ
cuesj-1365	56	28	parameters	parameter	NOUN
cuesj-1365	56	29	of	of	ADP
cuesj-1365	56	30	water	water	NOUN
cuesj-1365	56	31	(	(	PUNCT
cuesj-1365	56	32	pw	pw	PROPN
cuesj-1365	56	33	=	=	SYM
cuesj-1365	56	34	998.78	998.78	NUM
cuesj-1365	56	35	kg	kg	PROPN
cuesj-1365	56	36	/	/	SYM
cuesj-1365	56	37	m3	m3	PROPN
cuesj-1365	56	38	)	)	PUNCT
cuesj-1365	56	39	and	and	CCONJ
cuesj-1365	56	40	air	air	NOUN
cuesj-1365	56	41	(	(	PUNCT
cuesj-1365	56	42	pa	pa	PROPN
cuesj-1365	56	43	=	=	PROPN
cuesj-1365	56	44	1.225	1.225	NUM
cuesj-1365	56	45	kg	kg	NOUN
cuesj-1365	56	46	/	/	SYM
cuesj-1365	56	47	m3	m3	PROPN
cuesj-1365	56	48	)	)	PUNCT
cuesj-1365	56	49	are	be	AUX
cuesj-1365	56	50	considered	consider	VERB
cuesj-1365	56	51	in	in	ADP
cuesj-1365	56	52	this	this	DET
cuesj-1365	56	53	article	article	NOUN
cuesj-1365	56	54	,	,	PUNCT
cuesj-1365	56	55	respectively	respectively	ADV
cuesj-1365	56	56	,	,	PUNCT
cuesj-1365	56	57	as	as	ADP
cuesj-1365	56	58	density	density	NOUN
cuesj-1365	56	59	and	and	CCONJ
cuesj-1365	56	60	kinematic	kinematic	ADJ
cuesj-1365	56	61	viscosity	viscosity	NOUN
cuesj-1365	56	62	,	,	PUNCT
cuesj-1365	56	63	respectively	respectively	ADV
cuesj-1365	56	64	,	,	PUNCT
cuesj-1365	56	65	of	of	ADP
cuesj-1365	56	66	water	water	NOUN
cuesj-1365	56	67	and	and	CCONJ
cuesj-1365	56	68	air	air	NOUN
cuesj-1365	56	69	.	.	PUNCT
cuesj-1365	57	1	a	a	DET
cuesj-1365	57	2	surface	surface	NOUN
cuesj-1365	57	3	tension	tension	NOUN
cuesj-1365	57	4	coefficient	coefficient	NOUN
cuesj-1365	57	5	of	of	ADP
cuesj-1365	57	6	0.072	0.072	NUM
cuesj-1365	57	7	kg	kg	NOUN
cuesj-1365	57	8	/	/	SYM
cuesj-1365	57	9	s²	s²	PROPN
cuesj-1365	57	10	was	be	AUX
cuesj-1365	57	11	applied	apply	VERB
cuesj-1365	57	12	.	.	PUNCT
cuesj-1365	58	1	second	second	ADJ
cuesj-1365	58	2	-	-	PUNCT
cuesj-1365	58	3	order	order	NOUN
cuesj-1365	58	4	discretization	discretization	NOUN
cuesj-1365	58	5	schemes	scheme	NOUN
cuesj-1365	58	6	were	be	AUX
cuesj-1365	58	7	adopted	adopt	VERB
cuesj-1365	58	8	for	for	ADP
cuesj-1365	58	9	momentum	momentum	NOUN
cuesj-1365	58	10	,	,	PUNCT
cuesj-1365	58	11	turbulence	turbulence	NOUN
cuesj-1365	58	12	kinetic	kinetic	ADJ
cuesj-1365	58	13	energy	energy	NOUN
cuesj-1365	58	14	,	,	PUNCT
cuesj-1365	58	15	and	and	CCONJ
cuesj-1365	58	16	dissipation	dissipation	NOUN
cuesj-1365	58	17	rate	rate	NOUN
cuesj-1365	58	18	,	,	PUNCT
cuesj-1365	58	19	as	as	SCONJ
cuesj-1365	58	20	these	these	PRON
cuesj-1365	58	21	are	be	AUX
cuesj-1365	58	22	important	important	ADJ
cuesj-1365	58	23	for	for	ADP
cuesj-1365	58	24	accurately	accurately	ADV
cuesj-1365	58	25	capturing	capture	VERB
cuesj-1365	58	26	swirl	swirl	ADJ
cuesj-1365	58	27	flows	flow	NOUN
cuesj-1365	58	28	.	.	PUNCT
cuesj-1365	59	1	the	the	DET
cuesj-1365	59	2	pressure	pressure	NOUN
cuesj-1365	59	3	velocity	velocity	NOUN
cuesj-1365	59	4	was	be	AUX
cuesj-1365	59	5	then	then	ADV
cuesj-1365	59	6	connected	connect	VERB
cuesj-1365	59	7	using	use	VERB
cuesj-1365	59	8	a	a	DET
cuesj-1365	59	9	simple	simple	ADJ
cuesj-1365	59	10	coupled	couple	VERB
cuesj-1365	59	11	phase	phase	NOUN
cuesj-1365	59	12	technique	technique	NOUN
cuesj-1365	59	13	.	.	PUNCT
cuesj-1365	60	1	next	next	ADV
cuesj-1365	60	2	,	,	PUNCT
cuesj-1365	60	3	we	we	PRON
cuesj-1365	60	4	examined	examine	VERB
cuesj-1365	60	5	hydrostatic	hydrostatic	ADJ
cuesj-1365	60	6	pressure	pressure	NOUN
cuesj-1365	60	7	for	for	ADP
cuesj-1365	60	8	inlet	inlet	NOUN
cuesj-1365	60	9	and	and	CCONJ
cuesj-1365	60	10	outflow	outflow	NOUN
cuesj-1365	60	11	,	,	PUNCT
cuesj-1365	60	12	where	where	SCONJ
cuesj-1365	60	13	input	input	NOUN
cuesj-1365	60	14	water	water	NOUN
cuesj-1365	60	15	velocity	velocity	NOUN
cuesj-1365	60	16	on	on	ADP
cuesj-1365	60	17	the	the	DET
cuesj-1365	60	18	left	left	ADJ
cuesj-1365	60	19	side	side	NOUN
cuesj-1365	60	20	.	.	PUNCT
cuesj-1365	61	1	at	at	ADP
cuesj-1365	61	2	the	the	DET
cuesj-1365	61	3	spillway	spillway	NOUN
cuesj-1365	61	4	,	,	PUNCT
cuesj-1365	61	5	there	there	PRON
cuesj-1365	61	6	was	be	VERB
cuesj-1365	61	7	a	a	DET
cuesj-1365	61	8	no	no	DET
cuesj-1365	61	9	-	-	PUNCT
cuesj-1365	61	10	slip	slip	NOUN
cuesj-1365	61	11	and	and	CCONJ
cuesj-1365	61	12	fixed	fix	VERB
cuesj-1365	61	13	wall	wall	NOUN
cuesj-1365	61	14	,	,	PUNCT
cuesj-1365	61	15	as	as	ADV
cuesj-1365	61	16	well	well	ADV
cuesj-1365	61	17	as	as	ADP
cuesj-1365	61	18	an	an	DET
cuesj-1365	61	19	atmosphere	atmosphere	NOUN
cuesj-1365	61	20	on	on	ADP
cuesj-1365	61	21	the	the	DET
cuesj-1365	61	22	top	top	NOUN
cuesj-1365	61	23	.	.	PUNCT
cuesj-1365	62	1	wall	wall	NOUN
cuesj-1365	62	2	functions	function	NOUN
cuesj-1365	62	3	were	be	AUX
cuesj-1365	62	4	used	use	VERB
cuesj-1365	62	5	to	to	PART
cuesj-1365	62	6	avoid	avoid	VERB
cuesj-1365	62	7	fine	fine	ADJ
cuesj-1365	62	8	meshes	mesh	NOUN
cuesj-1365	62	9	and	and	CCONJ
cuesj-1365	62	10	conserve	conserve	VERB
cuesj-1365	62	11	computing	compute	VERB
cuesj-1365	62	12	resources	resource	NOUN
cuesj-1365	62	13	when	when	SCONJ
cuesj-1365	62	14	modeling	model	VERB
cuesj-1365	62	15	the	the	DET
cuesj-1365	62	16	boundary	boundary	ADJ
cuesj-1365	62	17	layer	layer	NOUN
cuesj-1365	62	18	at	at	ADP
cuesj-1365	62	19	the	the	DET
cuesj-1365	62	20	bottom	bottom	NOUN
cuesj-1365	62	21	of	of	ADP
cuesj-1365	62	22	this	this	DET
cuesj-1365	62	23	study	study	NOUN
cuesj-1365	62	24	.	.	PUNCT
cuesj-1365	63	1	the	the	DET
cuesj-1365	63	2	inflow	inflow	NOUN
cuesj-1365	63	3	water	water	NOUN
cuesj-1365	63	4	has	have	VERB
cuesj-1365	63	5	a	a	DET
cuesj-1365	63	6	depth	depth	NOUN
cuesj-1365	63	7	(	(	PUNCT
cuesj-1365	63	8	h	h	NOUN
cuesj-1365	63	9	)	)	PUNCT
cuesj-1365	63	10	and	and	CCONJ
cuesj-1365	63	11	velocity	velocity	NOUN
cuesj-1365	63	12	(	(	PUNCT
cuesj-1365	63	13	ux	ux	NOUN
cuesj-1365	63	14	)	)	PUNCT
cuesj-1365	63	15	that	that	PRON
cuesj-1365	63	16	are	be	AUX
cuesj-1365	63	17	used	use	VERB
cuesj-1365	63	18	as	as	ADP
cuesj-1365	63	19	beginning	begin	VERB
cuesj-1365	63	20	conditions	condition	NOUN
cuesj-1365	63	21	at	at	ADP
cuesj-1365	63	22	t0	t0	NOUN
cuesj-1365	63	23	our	our	PRON
cuesj-1365	63	24	goal	goal	NOUN
cuesj-1365	63	25	was	be	AUX
cuesj-1365	63	26	to	to	PART
cuesj-1365	63	27	find	find	VERB
cuesj-1365	63	28	a	a	DET
cuesj-1365	63	29	differential	differential	NOUN
cuesj-1365	63	30	in	in	ADP
cuesj-1365	63	31	water	water	NOUN
cuesj-1365	63	32	flow	flow	NOUN
cuesj-1365	63	33	between	between	ADP
cuesj-1365	63	34	the	the	DET
cuesj-1365	63	35	input	input	NOUN
cuesj-1365	63	36	and	and	CCONJ
cuesj-1365	63	37	output	output	NOUN
cuesj-1365	63	38	that	that	PRON
cuesj-1365	63	39	was	be	AUX
cuesj-1365	63	40	<	<	X
cuesj-1365	63	41	1	1	NUM
cuesj-1365	63	42	%	%	NOUN
cuesj-1365	63	43	.	.	PUNCT
cuesj-1365	64	1	the	the	DET
cuesj-1365	64	2	parameters	parameter	NOUN
cuesj-1365	64	3	k	k	PROPN
cuesj-1365	64	4	and	and	CCONJ
cuesj-1365	64	5	ω	ω	NUM
cuesj-1365	64	6	,	,	PUNCT
cuesj-1365	64	7	volume	volume	NOUN
cuesj-1365	64	8	percent	percent	NOUN
cuesj-1365	64	9	,	,	PUNCT
cuesj-1365	64	10	and	and	CCONJ
cuesj-1365	64	11	mass	mass	NOUN
cuesj-1365	64	12	were	be	AUX
cuesj-1365	64	13	also	also	ADV
cuesj-1365	64	14	set	set	VERB
cuesj-1365	64	15	as	as	ADP
cuesj-1365	64	16	criteria	criterion	NOUN
cuesj-1365	64	17	(	(	PUNCT
cuesj-1365	64	18	allowing	allow	VERB
cuesj-1365	64	19	a	a	DET
cuesj-1365	64	20	tolerance	tolerance	NOUN
cuesj-1365	64	21	of	of	ADP
cuesj-1365	64	22	10−3	10−3	NUM
cuesj-1365	64	23	for	for	ADP
cuesj-1365	64	24	the	the	DET
cuesj-1365	64	25	residual	residual	ADJ
cuesj-1365	64	26	)	)	PUNCT
cuesj-1365	64	27	.	.	PUNCT
cuesj-1365	65	1	the	the	DET
cuesj-1365	65	2	compatibility	compatibility	NOUN
cuesj-1365	65	3	with	with	ADP
cuesj-1365	65	4	the	the	DET
cuesj-1365	65	5	courant	courant	ADJ
cuesj-1365	65	6	number	number	NOUN
cuesj-1365	65	7	may	may	AUX
cuesj-1365	65	8	be	be	AUX
cuesj-1365	65	9	determined	determine	VERB
cuesj-1365	65	10	under	under	ADP
cuesj-1365	65	11	these	these	DET
cuesj-1365	65	12	circumstances	circumstance	NOUN
cuesj-1365	65	13	and	and	CCONJ
cuesj-1365	65	14	with	with	ADP
cuesj-1365	65	15	the	the	DET
cuesj-1365	65	16	use	use	NOUN
cuesj-1365	65	17	of	of	ADP
cuesj-1365	65	18	a	a	DET
cuesj-1365	65	19	time	time	NOUN
cuesj-1365	65	20	step	step	NOUN
cuesj-1365	65	21	variable	variable	NOUN
cuesj-1365	65	22	.	.	PUNCT
cuesj-1365	66	1	a	a	DET
cuesj-1365	66	2	typical	typical	ADJ
cuesj-1365	66	3	cross	cross	NOUN
cuesj-1365	66	4	-	-	NOUN
cuesj-1365	66	5	section	section	NOUN
cuesj-1365	66	6	of	of	ADP
cuesj-1365	66	7	the	the	DET
cuesj-1365	66	8	stepped	step	VERB
cuesj-1365	66	9	spillway	spillway	NOUN
cuesj-1365	66	10	used	use	VERB
cuesj-1365	66	11	in	in	ADP
cuesj-1365	66	12	this	this	DET
cuesj-1365	66	13	study	study	NOUN
cuesj-1365	66	14	is	be	AUX
cuesj-1365	66	15	shown	show	VERB
cuesj-1365	66	16	in	in	ADP
cuesj-1365	66	17	figure	figure	NOUN
cuesj-1365	66	18	4	4	NUM
cuesj-1365	66	19	.	.	PUNCT
cuesj-1365	66	20	code	code	NOUN
cuesj-1365	66	21	validation	validation	NOUN
cuesj-1365	66	22	researchers	researcher	NOUN
cuesj-1365	66	23	utilize	utilize	VERB
cuesj-1365	66	24	numerical	numerical	ADJ
cuesj-1365	66	25	data	datum	NOUN
cuesj-1365	66	26	from	from	ADP
cuesj-1365	66	27	their	their	PRON
cuesj-1365	66	28	experiments	experiment	NOUN
cuesj-1365	66	29	to	to	PART
cuesj-1365	66	30	verify	verify	VERB
cuesj-1365	66	31	their	their	PRON
cuesj-1365	66	32	results	result	NOUN
cuesj-1365	66	33	and	and	CCONJ
cuesj-1365	66	34	to	to	PART
cuesj-1365	66	35	develop	develop	VERB
cuesj-1365	66	36	confidence	confidence	NOUN
cuesj-1365	66	37	in	in	ADP
cuesj-1365	66	38	the	the	DET
cuesj-1365	66	39	correctness	correctness	NOUN
cuesj-1365	66	40	of	of	ADP
cuesj-1365	66	41	their	their	PRON
cuesj-1365	66	42	forecasts	forecast	NOUN
cuesj-1365	66	43	.	.	PUNCT
cuesj-1365	67	1	this	this	DET
cuesj-1365	67	2	program	program	NOUN
cuesj-1365	67	3	requires	require	VERB
cuesj-1365	67	4	the	the	DET
cuesj-1365	67	5	geometry	geometry	NOUN
cuesj-1365	67	6	,	,	PUNCT
cuesj-1365	67	7	mesh	mesh	NOUN
cuesj-1365	67	8	,	,	PUNCT
cuesj-1365	67	9	and	and	CCONJ
cuesj-1365	67	10	processing	processing	NOUN
cuesj-1365	67	11	steps	step	NOUN
cuesj-1365	67	12	be	be	AUX
cuesj-1365	67	13	pre	pre	VERB
cuesj-1365	67	14	-	-	VERB
cuesj-1365	67	15	defined	define	VERB
cuesj-1365	67	16	before	before	SCONJ
cuesj-1365	67	17	it	it	PRON
cuesj-1365	67	18	can	can	AUX
cuesj-1365	67	19	be	be	AUX
cuesj-1365	67	20	used	use	VERB
cuesj-1365	67	21	.	.	PUNCT
cuesj-1365	68	1	we	we	PRON
cuesj-1365	68	2	attempt	attempt	VERB
cuesj-1365	68	3	to	to	PART
cuesj-1365	68	4	verify	verify	VERB
cuesj-1365	68	5	one	one	NUM
cuesj-1365	68	6	model	model	NOUN
cuesj-1365	68	7	numerically	numerically	ADV
cuesj-1365	68	8	against	against	ADP
cuesj-1365	68	9	the	the	DET
cuesj-1365	68	10	quantity	quantity	NOUN
cuesj-1365	68	11	of	of	ADP
cuesj-1365	68	12	energy	energy	NOUN
cuesj-1365	68	13	dissipation	dissipation	NOUN
cuesj-1365	68	14	found	find	VERB
cuesj-1365	68	15	experimentally	experimentally	ADV
cuesj-1365	68	16	by	by	ADP
cuesj-1365	68	17	zhang	zhang	PROPN
cuesj-1365	68	18	and	and	CCONJ
cuesj-1365	68	19	liu[8	liu[8	PROPN
cuesj-1365	68	20	]	]	PUNCT
cuesj-1365	68	21	to	to	PART
cuesj-1365	68	22	find	find	VERB
cuesj-1365	68	23	the	the	DET
cuesj-1365	68	24	most	most	ADV
cuesj-1365	68	25	efficient	efficient	ADJ
cuesj-1365	68	26	way	way	NOUN
cuesj-1365	68	27	to	to	PART
cuesj-1365	68	28	dissipate	dissipate	VERB
cuesj-1365	68	29	energy	energy	NOUN
cuesj-1365	68	30	at	at	ADP
cuesj-1365	68	31	high	high	ADJ
cuesj-1365	68	32	discharges	discharge	NOUN
cuesj-1365	68	33	,	,	PUNCT
cuesj-1365	68	34	built	build	VERB
cuesj-1365	68	35	and	and	CCONJ
cuesj-1365	68	36	tested	test	VERB
cuesj-1365	68	37	twelve	twelve	NUM
cuesj-1365	68	38	spillways	spillway	NOUN
cuesj-1365	68	39	made	make	VERB
cuesj-1365	68	40	of	of	ADP
cuesj-1365	68	41	plywood	plywood	NOUN
cuesj-1365	68	42	.	.	PUNCT
cuesj-1365	69	1	then	then	ADV
cuesj-1365	69	2	,	,	PUNCT
cuesj-1365	69	3	to	to	PART
cuesj-1365	69	4	improve	improve	VERB
cuesj-1365	69	5	energy	energy	NOUN
cuesj-1365	69	6	dissipation	dissipation	NOUN
cuesj-1365	69	7	,	,	PUNCT
cuesj-1365	69	8	it	it	PRON
cuesj-1365	69	9	was	be	AUX
cuesj-1365	69	10	modified	modify	VERB
cuesj-1365	69	11	using	use	VERB
cuesj-1365	69	12	two	two	NUM
cuesj-1365	69	13	block	block	NOUN
cuesj-1365	69	14	configurations	configuration	NOUN
cuesj-1365	69	15	and	and	CCONJ
cuesj-1365	69	16	one	one	NUM
cuesj-1365	69	17	cascade	cascade	NOUN
cuesj-1365	69	18	configuration	configuration	NOUN
cuesj-1365	69	19	,	,	PUNCT
cuesj-1365	69	20	resulting	result	VERB
cuesj-1365	69	21	in	in	ADP
cuesj-1365	69	22	three	three	NUM
cuesj-1365	69	23	downstream	downstream	ADJ
cuesj-1365	69	24	slopes	slope	NOUN
cuesj-1365	69	25	with	with	ADP
cuesj-1365	69	26	stepped	step	VERB
cuesj-1365	69	27	faces	face	NOUN
cuesj-1365	69	28	(	(	PUNCT
cuesj-1365	69	29	27	27	NUM
cuesj-1365	69	30	°	°	NOUN
cuesj-1365	69	31	,	,	PUNCT
cuesj-1365	69	32	32	32	NUM
cuesj-1365	69	33	°	°	NOUN
cuesj-1365	69	34	,	,	PUNCT
cuesj-1365	69	35	and	and	CCONJ
cuesj-1365	69	36	40	40	NUM
cuesj-1365	69	37	°	°	NUM
cuesj-1365	69	38	)	)	PUNCT
cuesj-1365	69	39	.	.	PUNCT
cuesj-1365	70	1	our	our	PRON
cuesj-1365	70	2	validation	validation	NOUN
cuesj-1365	70	3	use	use	VERB
cuesj-1365	70	4	one	one	NUM
cuesj-1365	70	5	of	of	ADP
cuesj-1365	70	6	these	these	DET
cuesj-1365	70	7	cases	case	NOUN
cuesj-1365	70	8	to	to	PART
cuesj-1365	70	9	see	see	VERB
cuesj-1365	70	10	the	the	DET
cuesj-1365	70	11	accuracy	accuracy	NOUN
cuesj-1365	70	12	of	of	ADP
cuesj-1365	70	13	the	the	DET
cuesj-1365	70	14	numerical	numerical	PROPN
cuesj-1365	70	15	model	model	PROPN
cuesj-1365	70	16	,	,	PUNCT
cuesj-1365	70	17	a	a	DET
cuesj-1365	70	18	model	model	NOUN
cuesj-1365	70	19	with	with	ADP
cuesj-1365	70	20	chute	chute	NOUN
cuesj-1365	70	21	slope	slope	NOUN
cuesj-1365	70	22	27	27	NUM
cuesj-1365	70	23	°	°	NOUN
cuesj-1365	70	24	,	,	PUNCT
cuesj-1365	70	25	4	4	NUM
cuesj-1365	70	26	steps	step	NOUN
cuesj-1365	70	27	,	,	PUNCT
cuesj-1365	70	28	step	step	NOUN
cuesj-1365	70	29	height	height	NOUN
cuesj-1365	70	30	3	3	NUM
cuesj-1365	70	31	cm	cm	NOUN
cuesj-1365	70	32	,	,	PUNCT
cuesj-1365	70	33	step	step	NOUN
cuesj-1365	70	34	length	length	NOUN
cuesj-1365	70	35	5.9	5.9	NUM
cuesj-1365	70	36	cm	cm	NOUN
cuesj-1365	70	37	,	,	PUNCT
cuesj-1365	70	38	and	and	CCONJ
cuesj-1365	70	39	q	q	X
cuesj-1365	70	40	=	=	SYM
cuesj-1365	70	41	2.25l	2.25l	NUM
cuesj-1365	70	42	/	/	SYM
cuesj-1365	70	43	s	s	NOUN
cuesj-1365	70	44	as	as	SCONJ
cuesj-1365	70	45	shown	show	VERB
cuesj-1365	70	46	in	in	ADP
cuesj-1365	70	47	figure	figure	NOUN
cuesj-1365	70	48	1	1	NUM
cuesj-1365	70	49	.	.	PUNCT
cuesj-1365	71	1	the	the	DET
cuesj-1365	71	2	experimental	experimental	ADJ
cuesj-1365	71	3	results	result	NOUN
cuesj-1365	71	4	show	show	VERB
cuesj-1365	71	5	that	that	SCONJ
cuesj-1365	71	6	the	the	DET
cuesj-1365	71	7	energy	energy	NOUN
cuesj-1365	71	8	dissipation	dissipation	NOUN
cuesj-1365	71	9	is	be	AUX
cuesj-1365	71	10	about	about	ADV
cuesj-1365	71	11	43	43	NUM
cuesj-1365	71	12	%	%	NOUN
cuesj-1365	71	13	.	.	PUNCT
cuesj-1365	72	1	applying	apply	VERB
cuesj-1365	72	2	energy	energy	NOUN
cuesj-1365	72	3	equations	equation	NOUN
cuesj-1365	72	4	between	between	ADP
cuesj-1365	72	5	u	u	PROPN
cuesj-1365	72	6	/	/	SYM
cuesj-1365	72	7	s	s	X
cuesj-1365	72	8	and	and	CCONJ
cuesj-1365	72	9	d	d	X
cuesj-1365	72	10	/	/	SYM
cuesj-1365	72	11	s	s	X
cuesj-1365	72	12	of	of	ADP
cuesj-1365	72	13	the	the	DET
cuesj-1365	72	14	stepped	step	VERB
cuesj-1365	72	15	spillway	spillway	NOUN
cuesj-1365	72	16	.	.	PUNCT
cuesj-1365	73	1	e	e	X
cuesj-1365	73	2	y	y	PROPN
cuesj-1365	73	3	v	v	AUX
cuesj-1365	73	4	go	go	VERB
cuesj-1365	73	5	o	o	NOUN
cuesj-1365	73	6	o=	o=	X
cuesj-1365	74	1	+	+	CCONJ
cuesj-1365	74	2	α	α	PROPN
cuesj-1365	74	3	2	2	NUM
cuesj-1365	74	4	2	2	NUM
cuesj-1365	74	5	(	(	PUNCT
cuesj-1365	74	6	7	7	NUM
cuesj-1365	74	7	)	)	PUNCT
cuesj-1365	74	8	figure	figure	NOUN
cuesj-1365	74	9	1	1	NUM
cuesj-1365	74	10	:	:	PUNCT
cuesj-1365	74	11	stepped	step	VERB
cuesj-1365	74	12	spillway	spillway	NOUN
cuesj-1365	74	13	cross	cross	NOUN
cuesj-1365	74	14	-	-	NOUN
cuesj-1365	74	15	section	section	NOUN
cuesj-1365	74	16	zaid	zaid	PROPN
cuesj-1365	74	17	and	and	CCONJ
cuesj-1365	74	18	abo	abo	NOUN
cuesj-1365	74	19	:	:	PUNCT
cuesj-1365	74	20	cfd	cfd	NOUN
cuesj-1365	74	21	analysis	analysis	NOUN
cuesj-1365	74	22	of	of	ADP
cuesj-1365	74	23	stepped	step	VERB
cuesj-1365	74	24	spillway	spillway	NOUN
cuesj-1365	74	25	effects	effect	NOUN
cuesj-1365	74	26	on	on	ADP
cuesj-1365	74	27	stilling	still	VERB
cuesj-1365	74	28	basin	basin	NOUN
cuesj-1365	74	29	size	size	NOUN
cuesj-1365	74	30	58	58	NUM
cuesj-1365	74	31	http://journals.cihanuniversity.edu.iq/index.php/cuesj	http://journals.cihanuniversity.edu.iq/index.php/cuesj	ADJ
cuesj-1365	74	32	cuesj	cuesj	NOUN
cuesj-1365	74	33	2025	2025	NUM
cuesj-1365	74	34	,	,	PUNCT
cuesj-1365	74	35	9	9	NUM
cuesj-1365	74	36	(	(	PUNCT
cuesj-1365	74	37	2	2	NUM
cuesj-1365	74	38	):	):	PUNCT
cuesj-1365	74	39	56	56	NUM
cuesj-1365	74	40	-	-	SYM
cuesj-1365	74	41	60	60	NUM
cuesj-1365	74	42	e	e	NOUN
cuesj-1365	74	43	y	y	PROPN
cuesj-1365	74	44	v	v	PROPN
cuesj-1365	74	45	g1	g1	PROPN
cuesj-1365	74	46	1	1	NUM
cuesj-1365	74	47	1	1	NUM
cuesj-1365	74	48	2	2	NUM
cuesj-1365	74	49	2	2	NUM
cuesj-1365	74	50	=	=	SYM
cuesj-1365	75	1	+	+	NUM
cuesj-1365	75	2	α	α	PROPN
cuesj-1365	75	3	(	(	PUNCT
cuesj-1365	75	4	8)	8)	NUM
cuesj-1365	75	5	∆	∆	X
cuesj-1365	75	6	=	=	PUNCT
cuesj-1365	75	7	−e	−e	NOUN
cuesj-1365	75	8	e	e	X
cuesj-1365	75	9	e	e	X
cuesj-1365	75	10	e	e	X
cuesj-1365	76	1	eo	eo	NOUN
cuesj-1365	76	2	o	o	X
cuesj-1365	76	3	o	o	X
cuesj-1365	76	4	%	%	NOUN
cuesj-1365	76	5	(	(	PUNCT
cuesj-1365	76	6	)	)	PUNCT
cuesj-1365	76	7	%	%	NOUN
cuesj-1365	76	8	1	1	NUM
cuesj-1365	76	9	(	(	PUNCT
cuesj-1365	76	10	9	9	NUM
cuesj-1365	76	11	)	)	PUNCT
cuesj-1365	77	1	where	where	SCONJ
cuesj-1365	77	2	:	:	PUNCT
cuesj-1365	77	3	eo	eo	PROPN
cuesj-1365	77	4	=	=	PUNCT
cuesj-1365	77	5	u	u	PROPN
cuesj-1365	77	6	/	/	SYM
cuesj-1365	77	7	s	s	PART
cuesj-1365	77	8	energy	energy	NOUN
cuesj-1365	77	9	(	(	PUNCT
cuesj-1365	77	10	m	m	NOUN
cuesj-1365	77	11	)	)	PUNCT
cuesj-1365	77	12	e1	e1	NOUN
cuesj-1365	77	13	=	=	PUNCT
cuesj-1365	77	14	d	d	PROPN
cuesj-1365	77	15	/	/	SYM
cuesj-1365	77	16	s	s	NOUN
cuesj-1365	77	17	energy	energy	NOUN
cuesj-1365	77	18	(	(	PUNCT
cuesj-1365	77	19	m	m	NOUN
cuesj-1365	77	20	)	)	PUNCT
cuesj-1365	77	21	vo	vo	NOUN
cuesj-1365	78	1	=	=	NOUN
cuesj-1365	78	2	velocity	velocity	NOUN
cuesj-1365	78	3	at	at	ADP
cuesj-1365	78	4	downstream	downstream	ADJ
cuesj-1365	78	5	(	(	PUNCT
cuesj-1365	78	6	m	m	NOUN
cuesj-1365	78	7	/	/	SYM
cuesj-1365	78	8	sec	sec	PROPN
cuesj-1365	78	9	)	)	PUNCT
cuesj-1365	78	10	v1	v1	NOUN
cuesj-1365	78	11	=	=	NOUN
cuesj-1365	78	12	velocity	velocity	NOUN
cuesj-1365	78	13	at	at	ADP
cuesj-1365	78	14	upstream	upstream	NOUN
cuesj-1365	78	15	of	of	ADP
cuesj-1365	78	16	spillway	spillway	NOUN
cuesj-1365	78	17	(	(	PUNCT
cuesj-1365	78	18	m	m	NOUN
cuesj-1365	78	19	/	/	SYM
cuesj-1365	78	20	sec	sec	PROPN
cuesj-1365	78	21	)	)	PUNCT
cuesj-1365	78	22	α	α	NOUN
cuesj-1365	78	23	=	=	SYM
cuesj-1365	78	24	kinetic	kinetic	ADJ
cuesj-1365	78	25	correction	correction	NOUN
cuesj-1365	78	26	coefficient	coefficient	NOUN
cuesj-1365	78	27	,	,	PUNCT
cuesj-1365	78	28	for	for	ADP
cuesj-1365	78	29	turbulent	turbulent	ADJ
cuesj-1365	78	30	flow	flow	NOUN
cuesj-1365	78	31	,	,	PUNCT
cuesj-1365	78	32	generally	generally	ADV
cuesj-1365	78	33	equal	equal	ADJ
cuesj-1365	78	34	to	to	ADP
cuesj-1365	78	35	1.1.[9	1.1.[9	NUM
cuesj-1365	78	36	]	]	X
cuesj-1365	78	37	g	g	PROPN
cuesj-1365	78	38	=	=	NOUN
cuesj-1365	78	39	gravity	gravity	NOUN
cuesj-1365	78	40	acceleration	acceleration	NOUN
cuesj-1365	78	41	(	(	PUNCT
cuesj-1365	78	42	m	m	NOUN
cuesj-1365	78	43	/	/	SYM
cuesj-1365	78	44	s2	s2	PROPN
cuesj-1365	78	45	)	)	PUNCT
cuesj-1365	78	46	∅e	∅e	PUNCT
cuesj-1365	78	47	e0	e0	PROPN
cuesj-1365	78	48	%	%	NOUN
cuesj-1365	79	1	=	=	PUNCT
cuesj-1365	79	2	relative	relative	ADJ
cuesj-1365	79	3	energy	energy	NOUN
cuesj-1365	79	4	dissipation	dissipation	NOUN
cuesj-1365	79	5	between	between	ADP
cuesj-1365	79	6	u	u	PROPN
cuesj-1365	79	7	/	/	SYM
cuesj-1365	79	8	s	s	X
cuesj-1365	79	9	and	and	CCONJ
cuesj-1365	79	10	d	d	PROPN
cuesj-1365	79	11	/	/	SYM
cuesj-1365	79	12	s.	s.	PROPN
cuesj-1365	79	13	numeric	numeric	ADJ
cuesj-1365	79	14	results	result	NOUN
cuesj-1365	79	15	are	be	AUX
cuesj-1365	79	16	as	as	SCONJ
cuesj-1365	79	17	follows	follow	VERB
cuesj-1365	79	18	:	:	PUNCT
cuesj-1365	79	19	yo	yo	NOUN
cuesj-1365	79	20	=	=	PUNCT
cuesj-1365	79	21	0.225	0.225	NUM
cuesj-1365	79	22	m	m	NOUN
cuesj-1365	79	23	vo	vo	X
cuesj-1365	80	1	=	=	PROPN
cuesj-1365	80	2	0.18	0.18	NUM
cuesj-1365	80	3	m2	m2	PROPN
cuesj-1365	80	4	/	/	SYM
cuesj-1365	80	5	s	s	PART
cuesj-1365	80	6	y1	y1	NOUN
cuesj-1365	80	7	=	=	SYM
cuesj-1365	80	8	0.024	0.024	NUM
cuesj-1365	80	9	m	m	NOUN
cuesj-1365	80	10	v1	v1	NOUN
cuesj-1365	80	11	=	=	SYM
cuesj-1365	80	12	1.4	1.4	NUM
cuesj-1365	80	13	m2	m2	PROPN
cuesj-1365	80	14	/	/	SYM
cuesj-1365	80	15	s	s	PART
cuesj-1365	80	16	eo	eo	NOUN
cuesj-1365	80	17	=	=	VERB
cuesj-1365	80	18	0.2268	0.2268	NUM
cuesj-1365	80	19	m	m	NOUN
cuesj-1365	80	20	e1	e1	NOUN
cuesj-1365	80	21	=	=	PUNCT
cuesj-1365	80	22	0.133	0.133	NUM
cuesj-1365	80	23	m	m	NOUN
cuesj-1365	80	24	∆	∆	NOUN
cuesj-1365	80	25	=	=	PUNCT
cuesj-1365	80	26	e	e	X
cuesj-1365	80	27	e0	e0	NOUN
cuesj-1365	80	28	%	%	NOUN
cuesj-1365	80	29	.	.	PUNCT
cuesj-1365	81	1	%	%	INTJ
cuesj-1365	82	1	41	41	NUM
cuesj-1365	82	2	3	3	NUM
cuesj-1365	82	3	−	−	NOUN
cuesj-1365	82	4	−	−	NOUN
cuesj-1365	82	5	=	=	SYM
cuesj-1365	83	1	=	=	SYM
cuesj-1365	83	2	=	=	SYM
cuesj-1365	83	3	43	43	NUM
cuesj-1365	83	4	41.3	41.3	NUM
cuesj-1365	83	5	%	%	NOUN
cuesj-1365	83	6	  	  	SPACE
cuesj-1365	83	7	3.9	3.9	NUM
cuesj-1365	83	8	%	%	NOUN
cuesj-1365	83	9	43	43	NUM
cuesj-1365	83	10	experiment	experiment	NOUN
cuesj-1365	83	11	numeric	numeric	ADJ
cuesj-1365	83	12	difference	difference	NOUN
cuesj-1365	83	13	experiment	experiment	NOUN
cuesj-1365	83	14	the	the	DET
cuesj-1365	83	15	results	result	NOUN
cuesj-1365	83	16	show	show	VERB
cuesj-1365	83	17	a	a	DET
cuesj-1365	83	18	good	good	ADJ
cuesj-1365	83	19	agreement	agreement	NOUN
cuesj-1365	83	20	between	between	ADP
cuesj-1365	83	21	the	the	DET
cuesj-1365	83	22	experiment	experiment	NOUN
cuesj-1365	83	23	and	and	CCONJ
cuesj-1365	83	24	numeric	numeric	ADJ
cuesj-1365	83	25	results	result	NOUN
cuesj-1365	83	26	.	.	PUNCT
cuesj-1365	84	1	the	the	DET
cuesj-1365	84	2	code	code	NOUN
cuesj-1365	84	3	can	can	AUX
cuesj-1365	84	4	be	be	AUX
cuesj-1365	84	5	used	use	VERB
cuesj-1365	84	6	for	for	ADP
cuesj-1365	84	7	our	our	PRON
cuesj-1365	84	8	cases	case	NOUN
cuesj-1365	84	9	in	in	ADP
cuesj-1365	84	10	this	this	DET
cuesj-1365	84	11	study	study	NOUN
cuesj-1365	84	12	.	.	PUNCT
cuesj-1365	85	1	results	result	NOUN
cuesj-1365	85	2	and	and	CCONJ
cuesj-1365	85	3	discussion	discussion	NOUN
cuesj-1365	85	4	the	the	DET
cuesj-1365	85	5	present	present	ADJ
cuesj-1365	85	6	study	study	NOUN
cuesj-1365	85	7	quantitatively	quantitatively	ADV
cuesj-1365	85	8	examines	examine	VERB
cuesj-1365	85	9	the	the	DET
cuesj-1365	85	10	impact	impact	NOUN
cuesj-1365	85	11	of	of	ADP
cuesj-1365	85	12	step	step	NOUN
cuesj-1365	85	13	height	height	NOUN
cuesj-1365	85	14	and	and	CCONJ
cuesj-1365	85	15	step	step	NOUN
cuesj-1365	85	16	slope	slope	NOUN
cuesj-1365	85	17	on	on	ADP
cuesj-1365	85	18	skimming	skim	VERB
cuesj-1365	85	19	flow	flow	NOUN
cuesj-1365	85	20	characteristics	characteristic	NOUN
cuesj-1365	85	21	,	,	PUNCT
cuesj-1365	85	22	with	with	ADP
cuesj-1365	85	23	a	a	DET
cuesj-1365	85	24	particular	particular	ADJ
cuesj-1365	85	25	emphasis	emphasis	NOUN
cuesj-1365	85	26	on	on	ADP
cuesj-1365	85	27	energy	energy	NOUN
cuesj-1365	85	28	dissipation	dissipation	NOUN
cuesj-1365	85	29	across	across	ADP
cuesj-1365	85	30	forty	forty	NUM
cuesj-1365	85	31	-	-	PUNCT
cuesj-1365	85	32	five	five	NUM
cuesj-1365	85	33	distinct	distinct	ADJ
cuesj-1365	85	34	configurations	configuration	NOUN
cuesj-1365	85	35	.	.	PUNCT
cuesj-1365	86	1	the	the	DET
cuesj-1365	86	2	setups	setup	NOUN
cuesj-1365	86	3	have	have	VERB
cuesj-1365	86	4	three	three	NUM
cuesj-1365	86	5	different	different	ADJ
cuesj-1365	86	6	step	step	NOUN
cuesj-1365	86	7	heights	height	NOUN
cuesj-1365	86	8	(	(	PUNCT
cuesj-1365	86	9	11.9	11.9	NUM
cuesj-1365	86	10	cm	cm	NOUN
cuesj-1365	86	11	,	,	PUNCT
cuesj-1365	86	12	8.1	8.1	NUM
cuesj-1365	86	13	cm	cm	NOUN
cuesj-1365	86	14	,	,	PUNCT
cuesj-1365	86	15	and	and	CCONJ
cuesj-1365	86	16	6.1	6.1	NUM
cuesj-1365	86	17	cm	cm	NOUN
cuesj-1365	86	18	)	)	PUNCT
cuesj-1365	86	19	and	and	CCONJ
cuesj-1365	86	20	three	three	NUM
cuesj-1365	86	21	different	different	ADJ
cuesj-1365	86	22	step	step	NOUN
cuesj-1365	86	23	angles	angle	NOUN
cuesj-1365	86	24	(	(	PUNCT
cuesj-1365	86	25	0	0	NUM
cuesj-1365	86	26	°	°	NUM
cuesj-1365	86	27	,	,	PUNCT
cuesj-1365	86	28	6	6	NUM
cuesj-1365	86	29	°	°	NOUN
cuesj-1365	86	30	,	,	PUNCT
cuesj-1365	86	31	and	and	CCONJ
cuesj-1365	86	32	12	12	NUM
cuesj-1365	86	33	°	°	NUM
cuesj-1365	86	34	)	)	PUNCT
cuesj-1365	86	35	.	.	PUNCT
cuesj-1365	87	1	they	they	PRON
cuesj-1365	87	2	were	be	AUX
cuesj-1365	87	3	all	all	PRON
cuesj-1365	87	4	tested	test	VERB
cuesj-1365	87	5	with	with	ADP
cuesj-1365	87	6	a	a	DET
cuesj-1365	87	7	constant	constant	ADJ
cuesj-1365	87	8	chute	chute	NOUN
cuesj-1365	87	9	slope	slope	NOUN
cuesj-1365	87	10	of	of	ADP
cuesj-1365	87	11	26	26	NUM
cuesj-1365	87	12	°	°	NUM
cuesj-1365	87	13	and	and	CCONJ
cuesj-1365	87	14	five	five	NUM
cuesj-1365	87	15	different	different	ADJ
cuesj-1365	87	16	discharge	discharge	NOUN
cuesj-1365	87	17	rates	rate	NOUN
cuesj-1365	87	18	(	(	PUNCT
cuesj-1365	87	19	0.16–0.8	0.16–0.8	NUM
cuesj-1365	87	20	m²/s	m²/s	NOUN
cuesj-1365	87	21	)	)	PUNCT
cuesj-1365	87	22	.	.	PUNCT
cuesj-1365	88	1	the	the	DET
cuesj-1365	88	2	results	result	NOUN
cuesj-1365	88	3	,	,	PUNCT
cuesj-1365	88	4	which	which	PRON
cuesj-1365	88	5	are	be	AUX
cuesj-1365	88	6	shown	show	VERB
cuesj-1365	88	7	in	in	ADP
cuesj-1365	88	8	table	table	NOUN
cuesj-1365	88	9	1	1	NUM
cuesj-1365	88	10	,	,	PUNCT
cuesj-1365	88	11	show	show	VERB
cuesj-1365	88	12	clear	clear	ADJ
cuesj-1365	88	13	patterns	pattern	NOUN
cuesj-1365	88	14	in	in	ADP
cuesj-1365	88	15	the	the	DET
cuesj-1365	88	16	relative	relative	ADJ
cuesj-1365	88	17	energy	energy	NOUN
cuesj-1365	88	18	dissipation	dissipation	NOUN
cuesj-1365	88	19	rate	rate	NOUN
cuesj-1365	88	20	(	(	PUNCT
cuesj-1365	88	21	δe	δe	NOUN
cuesj-1365	88	22	/	/	SYM
cuesj-1365	88	23	eo%	eo%	NOUN
cuesj-1365	88	24	)	)	PUNCT
cuesj-1365	88	25	,	,	PUNCT
cuesj-1365	88	26	which	which	PRON
cuesj-1365	88	27	are	be	AUX
cuesj-1365	88	28	very	very	ADV
cuesj-1365	88	29	important	important	ADJ
cuesj-1365	88	30	for	for	ADP
cuesj-1365	88	31	figuring	figure	VERB
cuesj-1365	88	32	out	out	ADP
cuesj-1365	88	33	how	how	SCONJ
cuesj-1365	88	34	stepped	step	VERB
cuesj-1365	88	35	spillways	spillway	NOUN
cuesj-1365	88	36	work	work	VERB
cuesj-1365	88	37	with	with	ADP
cuesj-1365	88	38	water	water	NOUN
cuesj-1365	88	39	.	.	PUNCT
cuesj-1365	89	1	physical	physical	ADJ
cuesj-1365	89	2	interpretation	interpretation	NOUN
cuesj-1365	89	3	of	of	ADP
cuesj-1365	89	4	flow	flow	NOUN
cuesj-1365	89	5	behavior	behavior	NOUN
cuesj-1365	89	6	:	:	PUNCT
cuesj-1365	89	7	the	the	DET
cuesj-1365	89	8	data	datum	NOUN
cuesj-1365	89	9	show	show	VERB
cuesj-1365	89	10	that	that	SCONJ
cuesj-1365	89	11	energy	energy	NOUN
cuesj-1365	89	12	loss	loss	NOUN
cuesj-1365	89	13	is	be	AUX
cuesj-1365	89	14	very	very	ADV
cuesj-1365	89	15	sensitive	sensitive	ADJ
cuesj-1365	89	16	to	to	ADP
cuesj-1365	89	17	the	the	DET
cuesj-1365	89	18	shape	shape	NOUN
cuesj-1365	89	19	of	of	ADP
cuesj-1365	89	20	the	the	DET
cuesj-1365	89	21	steps	step	NOUN
cuesj-1365	89	22	and	and	CCONJ
cuesj-1365	89	23	the	the	DET
cuesj-1365	89	24	rate	rate	NOUN
cuesj-1365	89	25	of	of	ADP
cuesj-1365	89	26	discharge	discharge	NOUN
cuesj-1365	89	27	.	.	PUNCT
cuesj-1365	90	1	for	for	ADP
cuesj-1365	90	2	example	example	NOUN
cuesj-1365	90	3	,	,	PUNCT
cuesj-1365	90	4	when	when	SCONJ
cuesj-1365	90	5	the	the	DET
cuesj-1365	90	6	step	step	NOUN
cuesj-1365	90	7	angle	angle	NOUN
cuesj-1365	90	8	is	be	AUX
cuesj-1365	90	9	0	0	NUM
cuesj-1365	90	10	°	°	NUM
cuesj-1365	90	11	,	,	PUNCT
cuesj-1365	90	12	raising	raise	VERB
cuesj-1365	90	13	the	the	DET
cuesj-1365	90	14	discharge	discharge	NOUN
cuesj-1365	90	15	from	from	ADP
cuesj-1365	90	16	0.16	0.16	NUM
cuesj-1365	90	17	to	to	ADP
cuesj-1365	90	18	0.8	0.8	NUM
cuesj-1365	90	19	m²/s	m²/s	NOUN
cuesj-1365	90	20	lowers	lower	VERB
cuesj-1365	90	21	energy	energy	NOUN
cuesj-1365	90	22	dissipation	dissipation	NOUN
cuesj-1365	90	23	by	by	ADP
cuesj-1365	90	24	about	about	ADV
cuesj-1365	90	25	23.5	23.5	NUM
cuesj-1365	90	26	%	%	NOUN
cuesj-1365	90	27	(	(	PUNCT
cuesj-1365	90	28	from	from	ADP
cuesj-1365	90	29	61.5	61.5	NUM
cuesj-1365	90	30	%	%	NOUN
cuesj-1365	90	31	to	to	ADP
cuesj-1365	90	32	38	38	NUM
cuesj-1365	90	33	%	%	NOUN
cuesj-1365	90	34	)	)	PUNCT
cuesj-1365	90	35	for	for	ADP
cuesj-1365	90	36	the	the	DET
cuesj-1365	90	37	20	20	NUM
cuesj-1365	90	38	-	-	PUNCT
cuesj-1365	90	39	step	step	NOUN
cuesj-1365	90	40	setup	setup	NOUN
cuesj-1365	90	41	.	.	PUNCT
cuesj-1365	91	1	this	this	DET
cuesj-1365	91	2	trend	trend	NOUN
cuesj-1365	91	3	indicates	indicate	VERB
cuesj-1365	91	4	that	that	SCONJ
cuesj-1365	91	5	increased	increase	VERB
cuesj-1365	91	6	discharges	discharge	NOUN
cuesj-1365	91	7	result	result	VERB
cuesj-1365	91	8	in	in	ADP
cuesj-1365	91	9	diminished	diminished	ADJ
cuesj-1365	91	10	relative	relative	ADJ
cuesj-1365	91	11	energy	energy	NOUN
cuesj-1365	91	12	dissipation	dissipation	NOUN
cuesj-1365	91	13	,	,	PUNCT
cuesj-1365	91	14	presumably	presumably	ADV
cuesj-1365	91	15	attributable	attributable	ADJ
cuesj-1365	91	16	to	to	ADP
cuesj-1365	91	17	the	the	DET
cuesj-1365	91	18	development	development	NOUN
cuesj-1365	91	19	of	of	ADP
cuesj-1365	91	20	larger	large	ADJ
cuesj-1365	91	21	air	air	NOUN
cuesj-1365	91	22	-	-	PUNCT
cuesj-1365	91	23	water	water	NOUN
cuesj-1365	91	24	interfaces	interface	NOUN
cuesj-1365	91	25	and	and	CCONJ
cuesj-1365	91	26	the	the	DET
cuesj-1365	91	27	redistribution	redistribution	NOUN
cuesj-1365	91	28	of	of	ADP
cuesj-1365	91	29	turbulent	turbulent	ADJ
cuesj-1365	91	30	kinetic	kinetic	ADJ
cuesj-1365	91	31	energy	energy	NOUN
cuesj-1365	91	32	.	.	PUNCT
cuesj-1365	92	1	conversely	conversely	ADV
cuesj-1365	92	2	,	,	PUNCT
cuesj-1365	92	3	introducing	introduce	VERB
cuesj-1365	92	4	a	a	DET
cuesj-1365	92	5	step	step	NOUN
cuesj-1365	92	6	angle	angle	NOUN
cuesj-1365	92	7	(	(	PUNCT
cuesj-1365	92	8	6	6	NUM
cuesj-1365	92	9	°	°	NUM
cuesj-1365	92	10	or	or	CCONJ
cuesj-1365	92	11	12	12	NUM
cuesj-1365	92	12	°	°	NUM
cuesj-1365	92	13	)	)	PUNCT
cuesj-1365	92	14	consistently	consistently	ADV
cuesj-1365	92	15	enhances	enhance	VERB
cuesj-1365	92	16	energy	energy	NOUN
cuesj-1365	92	17	dissipation	dissipation	NOUN
cuesj-1365	92	18	,	,	PUNCT
cuesj-1365	92	19	with	with	ADP
cuesj-1365	92	20	the	the	DET
cuesj-1365	92	21	12	12	NUM
cuesj-1365	92	22	°	°	PROPN
cuesj-1365	92	23	angle	angle	NOUN
cuesj-1365	92	24	showing	show	VERB
cuesj-1365	92	25	the	the	DET
cuesj-1365	92	26	most	most	ADV
cuesj-1365	92	27	pronounced	pronounced	ADJ
cuesj-1365	92	28	effect	effect	NOUN
cuesj-1365	92	29	.	.	PUNCT
cuesj-1365	93	1	for	for	ADP
cuesj-1365	93	2	instance	instance	NOUN
cuesj-1365	93	3	,	,	PUNCT
cuesj-1365	93	4	when	when	SCONJ
cuesj-1365	93	5	q	q	NOUN
cuesj-1365	93	6	=	=	NOUN
cuesj-1365	93	7	0.32	0.32	NUM
cuesj-1365	93	8	m2	m2	PROPN
cuesj-1365	93	9	/	/	SYM
cuesj-1365	93	10	s	s	PROPN
cuesj-1365	93	11	,	,	PUNCT
cuesj-1365	93	12	the	the	DET
cuesj-1365	93	13	dissipation	dissipation	NOUN
cuesj-1365	93	14	rate	rate	NOUN
cuesj-1365	93	15	goes	go	VERB
cuesj-1365	93	16	up	up	ADV
cuesj-1365	93	17	from	from	ADP
cuesj-1365	93	18	51.2	51.2	NUM
cuesj-1365	93	19	%	%	NOUN
cuesj-1365	93	20	(	(	PUNCT
cuesj-1365	93	21	0	0	NUM
cuesj-1365	93	22	°	°	NUM
cuesj-1365	93	23	)	)	PUNCT
cuesj-1365	93	24	to	to	ADP
cuesj-1365	93	25	60	60	NUM
cuesj-1365	93	26	%	%	NOUN
cuesj-1365	93	27	(	(	PUNCT
cuesj-1365	93	28	12	12	NUM
cuesj-1365	93	29	°	°	NUM
cuesj-1365	93	30	)	)	PUNCT
cuesj-1365	93	31	for	for	ADP
cuesj-1365	93	32	the	the	DET
cuesj-1365	93	33	20	20	NUM
cuesj-1365	93	34	-	-	PUNCT
cuesj-1365	93	35	step	step	NOUN
cuesj-1365	93	36	setup	setup	NOUN
cuesj-1365	93	37	.	.	PUNCT
cuesj-1365	94	1	this	this	DET
cuesj-1365	94	2	behavior	behavior	NOUN
cuesj-1365	94	3	can	can	AUX
cuesj-1365	94	4	be	be	AUX
cuesj-1365	94	5	explained	explain	VERB
cuesj-1365	94	6	by	by	ADP
cuesj-1365	94	7	the	the	DET
cuesj-1365	94	8	fact	fact	NOUN
cuesj-1365	94	9	that	that	SCONJ
cuesj-1365	94	10	inclined	inclined	ADJ
cuesj-1365	94	11	steps	step	NOUN
cuesj-1365	94	12	cause	cause	VERB
cuesj-1365	94	13	more	more	ADJ
cuesj-1365	94	14	flow	flow	NOUN
cuesj-1365	94	15	disruption	disruption	NOUN
cuesj-1365	94	16	and	and	CCONJ
cuesj-1365	94	17	vortex	vortex	NOUN
cuesj-1365	94	18	generation	generation	NOUN
cuesj-1365	94	19	,	,	PUNCT
cuesj-1365	94	20	which	which	PRON
cuesj-1365	94	21	leads	lead	VERB
cuesj-1365	94	22	to	to	ADP
cuesj-1365	94	23	more	more	ADJ
cuesj-1365	94	24	energy	energy	NOUN
cuesj-1365	94	25	loss	loss	NOUN
cuesj-1365	94	26	.	.	PUNCT
cuesj-1365	95	1	depending	depend	VERB
cuesj-1365	95	2	on	on	ADP
cuesj-1365	95	3	equation	equation	NOUN
cuesj-1365	95	4	-7	-7	VERB
cuesj-1365	95	5	-	-	PUNCT
cuesj-1365	95	6	9	9	NUM
cuesj-1365	95	7	,	,	PUNCT
cuesj-1365	95	8	the	the	DET
cuesj-1365	95	9	numerical	numerical	ADJ
cuesj-1365	95	10	results	result	NOUN
cuesj-1365	95	11	are	be	AUX
cuesj-1365	95	12	listed	list	VERB
cuesj-1365	95	13	below	below	ADP
cuesj-1365	95	14	:	:	PUNCT
cuesj-1365	95	15	the	the	DET
cuesj-1365	95	16	results	result	NOUN
cuesj-1365	95	17	and	and	CCONJ
cuesj-1365	95	18	the	the	DET
cuesj-1365	95	19	visual	visual	ADJ
cuesj-1365	95	20	data	datum	NOUN
cuesj-1365	95	21	in	in	ADP
cuesj-1365	95	22	figures	figure	NOUN
cuesj-1365	95	23	5	5	NUM
cuesj-1365	95	24	-	-	SYM
cuesj-1365	95	25	7	7	NUM
cuesj-1365	95	26	show	show	NOUN
cuesj-1365	95	27	that	that	PRON
cuesj-1365	95	28	sloped	slope	VERB
cuesj-1365	95	29	stepped	step	VERB
cuesj-1365	95	30	spillways	spillway	NOUN
cuesj-1365	95	31	lose	lose	VERB
cuesj-1365	95	32	energy	energy	NOUN
cuesj-1365	95	33	at	at	ADP
cuesj-1365	95	34	a	a	DET
cuesj-1365	95	35	faster	fast	ADJ
cuesj-1365	95	36	rate	rate	NOUN
cuesj-1365	95	37	than	than	ADP
cuesj-1365	95	38	flat	flat	ADJ
cuesj-1365	95	39	figure	figure	NOUN
cuesj-1365	95	40	2	2	NUM
cuesj-1365	95	41	:	:	PUNCT
cuesj-1365	95	42	spillway	spillway	NOUN
cuesj-1365	95	43	mesh	mesh	NOUN
cuesj-1365	95	44	with	with	ADP
cuesj-1365	95	45	inflation	inflation	NOUN
cuesj-1365	95	46	technique	technique	NOUN
cuesj-1365	95	47	figure	figure	NOUN
cuesj-1365	95	48	4	4	NUM
cuesj-1365	95	49	:	:	PUNCT
cuesj-1365	95	50	typical	typical	ADJ
cuesj-1365	95	51	cross	cross	NOUN
cuesj-1365	95	52	-	-	NOUN
cuesj-1365	95	53	section	section	NOUN
cuesj-1365	95	54	of	of	ADP
cuesj-1365	95	55	stepped	step	VERB
cuesj-1365	95	56	spillway	spillway	NOUN
cuesj-1365	95	57	figure	figure	NOUN
cuesj-1365	95	58	3	3	NUM
cuesj-1365	95	59	:	:	PUNCT
cuesj-1365	95	60	water	water	NOUN
cuesj-1365	95	61	volume	volume	NOUN
cuesj-1365	95	62	fraction	fraction	NOUN
cuesj-1365	95	63	figure	figure	NOUN
cuesj-1365	95	64	6	6	NUM
cuesj-1365	95	65	:	:	PUNCT
cuesj-1365	95	66	discharge	discharge	VERB
cuesj-1365	95	67	and	and	CCONJ
cuesj-1365	95	68	relative	relative	ADJ
cuesj-1365	95	69	energy	energy	NOUN
cuesj-1365	95	70	dissipation	dissipation	NOUN
cuesj-1365	95	71	relations	relation	NOUN
cuesj-1365	95	72	for	for	ADP
cuesj-1365	95	73	30	30	NUM
cuesj-1365	95	74	steps	step	NOUN
cuesj-1365	95	75	figure	figure	NOUN
cuesj-1365	95	76	5	5	NUM
cuesj-1365	95	77	:	:	PUNCT
cuesj-1365	95	78	discharge	discharge	VERB
cuesj-1365	95	79	and	and	CCONJ
cuesj-1365	95	80	relative	relative	ADJ
cuesj-1365	95	81	energy	energy	NOUN
cuesj-1365	95	82	dissipation	dissipation	NOUN
cuesj-1365	95	83	relations	relation	NOUN
cuesj-1365	95	84	for	for	ADP
cuesj-1365	95	85	20	20	NUM
cuesj-1365	95	86	steps	step	NOUN
cuesj-1365	95	87	zaid	zaid	ADJ
cuesj-1365	95	88	and	and	CCONJ
cuesj-1365	95	89	abo	abo	NOUN
cuesj-1365	95	90	:	:	PUNCT
cuesj-1365	95	91	cfd	cfd	NOUN
cuesj-1365	95	92	analysis	analysis	NOUN
cuesj-1365	95	93	of	of	ADP
cuesj-1365	95	94	stepped	step	VERB
cuesj-1365	95	95	spillway	spillway	NOUN
cuesj-1365	95	96	effects	effect	NOUN
cuesj-1365	95	97	on	on	ADP
cuesj-1365	95	98	stilling	still	VERB
cuesj-1365	95	99	basin	basin	NOUN
cuesj-1365	95	100	size	size	NOUN
cuesj-1365	95	101	59	59	NUM
cuesj-1365	95	102	http://journals.cihanuniversity.edu.iq/index.php/cuesj	http://journals.cihanuniversity.edu.iq/index.php/cuesj	ADJ
cuesj-1365	95	103	cuesj	cuesj	NOUN
cuesj-1365	95	104	2025	2025	NUM
cuesj-1365	95	105	,	,	PUNCT
cuesj-1365	95	106	9	9	NUM
cuesj-1365	95	107	(	(	PUNCT
cuesj-1365	95	108	2	2	NUM
cuesj-1365	95	109	):	):	PUNCT
cuesj-1365	95	110	56	56	NUM
cuesj-1365	95	111	-	-	SYM
cuesj-1365	95	112	60	60	NUM
cuesj-1365	95	113	table	table	NOUN
cuesj-1365	95	114	1	1	NUM
cuesj-1365	95	115	:	:	PUNCT
cuesj-1365	95	116	relative	relative	ADJ
cuesj-1365	95	117	energy	energy	NOUN
cuesj-1365	95	118	dissipation	dissipation	NOUN
cuesj-1365	95	119	rate	rate	NOUN
cuesj-1365	95	120	for	for	ADP
cuesj-1365	95	121	all	all	DET
cuesj-1365	95	122	configurations	configuration	NOUN
cuesj-1365	95	123	steps	step	NOUN
cuesj-1365	95	124	step	step	NOUN
cuesj-1365	95	125	angle(α	angle(α	PROPN
cuesj-1365	95	126	)	)	PUNCT
cuesj-1365	95	127	step	step	NOUN
cuesj-1365	95	128	height	height	NOUN
cuesj-1365	95	129	(	(	PUNCT
cuesj-1365	95	130	m	m	NOUN
cuesj-1365	95	131	)	)	PUNCT
cuesj-1365	95	132	step	step	NOUN
cuesj-1365	95	133	length	length	NOUN
cuesj-1365	95	134	(	(	PUNCT
cuesj-1365	95	135	m	m	NOUN
cuesj-1365	95	136	)	)	PUNCT
cuesj-1365	95	137	chute	chute	NOUN
cuesj-1365	95	138	angle	angle	NOUN
cuesj-1365	95	139	(	(	PUNCT
cuesj-1365	95	140	ɵ	ɵ	NOUN
cuesj-1365	95	141	)	)	PUNCT
cuesj-1365	95	142	q	q	NOUN
cuesj-1365	95	143	(	(	PUNCT
cuesj-1365	95	144	m2	m2	PROPN
cuesj-1365	95	145	/	/	SYM
cuesj-1365	95	146	s	s	PROPN
cuesj-1365	95	147	)	)	PUNCT
cuesj-1365	95	148	∆e	∆e	PROPN
cuesj-1365	95	149	/	/	SYM
cuesj-1365	95	150	e0	e0	PROPN
cuesj-1365	95	151	%	%	NOUN
cuesj-1365	96	1	20	20	NUM
cuesj-1365	96	2	0	0	NUM
cuesj-1365	96	3	0.119	0.119	NUM
cuesj-1365	96	4	0.25	0.25	NUM
cuesj-1365	96	5	26	26	NUM
cuesj-1365	96	6	0.16	0.16	NUM
cuesj-1365	96	7	61.5	61.5	NUM
cuesj-1365	96	8	20	20	NUM
cuesj-1365	96	9	0	0	NUM
cuesj-1365	96	10	0.119	0.119	NUM
cuesj-1365	96	11	0.25	0.25	NUM
cuesj-1365	96	12	26	26	NUM
cuesj-1365	96	13	0.32	0.32	NUM
cuesj-1365	96	14	51.2	51.2	NUM
cuesj-1365	96	15	20	20	NUM
cuesj-1365	96	16	0	0	NUM
cuesj-1365	96	17	0.119	0.119	NUM
cuesj-1365	96	18	0.25	0.25	NUM
cuesj-1365	96	19	26	26	NUM
cuesj-1365	96	20	0.48	0.48	NUM
cuesj-1365	96	21	43.9	43.9	NUM
cuesj-1365	96	22	20	20	NUM
cuesj-1365	96	23	0	0	NUM
cuesj-1365	96	24	0.119	0.119	NUM
cuesj-1365	96	25	0.25	0.25	NUM
cuesj-1365	96	26	26	26	NUM
cuesj-1365	96	27	0.64	0.64	NUM
cuesj-1365	96	28	41	41	NUM
cuesj-1365	96	29	20	20	NUM
cuesj-1365	96	30	0	0	NUM
cuesj-1365	96	31	0.119	0.119	NUM
cuesj-1365	96	32	0.25	0.25	NUM
cuesj-1365	96	33	26	26	NUM
cuesj-1365	96	34	0.8	0.8	NUM
cuesj-1365	96	35	38	38	NUM
cuesj-1365	96	36	20	20	NUM
cuesj-1365	96	37	6	6	NUM
cuesj-1365	96	38	0.119	0.119	NUM
cuesj-1365	96	39	0.25	0.25	NUM
cuesj-1365	96	40	26	26	NUM
cuesj-1365	96	41	0.16	0.16	NUM
cuesj-1365	96	42	64.5	64.5	NUM
cuesj-1365	96	43	20	20	NUM
cuesj-1365	96	44	6	6	NUM
cuesj-1365	96	45	0.119	0.119	NUM
cuesj-1365	96	46	0.25	0.25	NUM
cuesj-1365	96	47	26	26	NUM
cuesj-1365	96	48	0.32	0.32	NUM
cuesj-1365	96	49	53.7	53.7	NUM
cuesj-1365	96	50	20	20	NUM
cuesj-1365	96	51	6	6	NUM
cuesj-1365	96	52	0.119	0.119	NUM
cuesj-1365	96	53	0.25	0.25	NUM
cuesj-1365	96	54	26	26	NUM
cuesj-1365	96	55	0.48	0.48	NUM
cuesj-1365	96	56	47	47	NUM
cuesj-1365	96	57	20	20	NUM
cuesj-1365	96	58	6	6	NUM
cuesj-1365	96	59	0.119	0.119	NUM
cuesj-1365	96	60	0.25	0.25	NUM
cuesj-1365	96	61	26	26	NUM
cuesj-1365	96	62	0.64	0.64	NUM
cuesj-1365	96	63	42	42	NUM
cuesj-1365	96	64	20	20	NUM
cuesj-1365	96	65	6	6	NUM
cuesj-1365	96	66	0.119	0.119	NUM
cuesj-1365	96	67	0.25	0.25	NUM
cuesj-1365	96	68	26	26	NUM
cuesj-1365	96	69	0.8	0.8	NUM
cuesj-1365	96	70	40.6	40.6	NUM
cuesj-1365	96	71	20	20	NUM
cuesj-1365	96	72	12	12	NUM
cuesj-1365	96	73	0.119	0.119	NUM
cuesj-1365	96	74	0.25	0.25	NUM
cuesj-1365	96	75	26	26	NUM
cuesj-1365	96	76	0.16	0.16	NUM
cuesj-1365	96	77	66	66	NUM
cuesj-1365	96	78	20	20	NUM
cuesj-1365	96	79	12	12	NUM
cuesj-1365	96	80	0.119	0.119	NUM
cuesj-1365	96	81	0.25	0.25	NUM
cuesj-1365	96	82	26	26	NUM
cuesj-1365	96	83	0.32	0.32	NUM
cuesj-1365	96	84	60	60	NUM
cuesj-1365	96	85	20	20	NUM
cuesj-1365	96	86	12	12	NUM
cuesj-1365	96	87	0.119	0.119	NUM
cuesj-1365	96	88	0.25	0.25	NUM
cuesj-1365	96	89	26	26	NUM
cuesj-1365	96	90	0.48	0.48	NUM
cuesj-1365	96	91	56.4	56.4	NUM
cuesj-1365	96	92	20	20	NUM
cuesj-1365	96	93	12	12	NUM
cuesj-1365	96	94	0.119	0.119	NUM
cuesj-1365	96	95	0.25	0.25	NUM
cuesj-1365	96	96	26	26	NUM
cuesj-1365	96	97	0.64	0.64	NUM
cuesj-1365	96	98	51.5	51.5	NUM
cuesj-1365	96	99	20	20	NUM
cuesj-1365	96	100	12	12	NUM
cuesj-1365	96	101	0.119	0.119	NUM
cuesj-1365	96	102	0.25	0.25	NUM
cuesj-1365	96	103	26	26	NUM
cuesj-1365	96	104	0.8	0.8	NUM
cuesj-1365	96	105	46.6	46.6	NUM
cuesj-1365	96	106	30	30	NUM
cuesj-1365	96	107	0	0	NUM
cuesj-1365	96	108	0.081	0.081	NUM
cuesj-1365	96	109	0.167	0.167	NUM
cuesj-1365	96	110	26	26	NUM
cuesj-1365	96	111	0.16	0.16	NUM
cuesj-1365	96	112	58.7	58.7	NUM
cuesj-1365	96	113	30	30	NUM
cuesj-1365	96	114	0	0	NUM
cuesj-1365	96	115	0.081	0.081	NUM
cuesj-1365	96	116	0.167	0.167	NUM
cuesj-1365	96	117	26	26	NUM
cuesj-1365	96	118	0.32	0.32	NUM
cuesj-1365	96	119	50.8	50.8	NUM
cuesj-1365	96	120	30	30	NUM
cuesj-1365	96	121	0	0	NUM
cuesj-1365	96	122	0.081	0.081	NUM
cuesj-1365	96	123	0.167	0.167	NUM
cuesj-1365	96	124	26	26	NUM
cuesj-1365	96	125	0.48	0.48	NUM
cuesj-1365	96	126	42.8	42.8	NUM
cuesj-1365	96	127	30	30	NUM
cuesj-1365	96	128	0	0	NUM
cuesj-1365	97	1	0.081	0.081	NUM
cuesj-1365	97	2	0.167	0.167	NUM
cuesj-1365	97	3	26	26	NUM
cuesj-1365	97	4	0.64	0.64	NUM
cuesj-1365	97	5	39.9	39.9	NUM
cuesj-1365	97	6	30	30	NUM
cuesj-1365	97	7	0	0	NUM
cuesj-1365	97	8	0.081	0.081	NUM
cuesj-1365	97	9	0.167	0.167	NUM
cuesj-1365	97	10	26	26	NUM
cuesj-1365	97	11	0.8	0.8	NUM
cuesj-1365	97	12	36.35	36.35	NUM
cuesj-1365	97	13	30	30	NUM
cuesj-1365	97	14	6	6	NUM
cuesj-1365	97	15	0.081	0.081	NUM
cuesj-1365	97	16	0.167	0.167	NUM
cuesj-1365	97	17	26	26	NUM
cuesj-1365	97	18	0.16	0.16	NUM
cuesj-1365	97	19	63.9	63.9	NUM
cuesj-1365	97	20	30	30	NUM
cuesj-1365	97	21	6	6	NUM
cuesj-1365	97	22	0.081	0.081	NUM
cuesj-1365	97	23	0.167	0.167	NUM
cuesj-1365	97	24	26	26	NUM
cuesj-1365	97	25	0.32	0.32	NUM
cuesj-1365	97	26	58	58	NUM
cuesj-1365	97	27	30	30	NUM
cuesj-1365	97	28	6	6	NUM
cuesj-1365	97	29	0.081	0.081	NUM
cuesj-1365	97	30	0.167	0.167	NUM
cuesj-1365	97	31	26	26	NUM
cuesj-1365	97	32	0.48	0.48	NUM
cuesj-1365	97	33	54.1	54.1	NUM
cuesj-1365	97	34	30	30	NUM
cuesj-1365	97	35	6	6	NUM
cuesj-1365	97	36	0.081	0.081	NUM
cuesj-1365	97	37	0.167	0.167	NUM
cuesj-1365	97	38	26	26	NUM
cuesj-1365	97	39	0.64	0.64	NUM
cuesj-1365	97	40	48.6	48.6	NUM
cuesj-1365	97	41	30	30	NUM
cuesj-1365	97	42	6	6	NUM
cuesj-1365	97	43	0.081	0.081	NUM
cuesj-1365	97	44	0.167	0.167	NUM
cuesj-1365	97	45	26	26	NUM
cuesj-1365	97	46	0.8	0.8	NUM
cuesj-1365	97	47	45.4	45.4	NUM
cuesj-1365	97	48	30	30	NUM
cuesj-1365	97	49	12	12	NUM
cuesj-1365	97	50	0.081	0.081	NUM
cuesj-1365	97	51	0.167	0.167	NUM
cuesj-1365	97	52	26	26	NUM
cuesj-1365	97	53	0.16	0.16	NUM
cuesj-1365	97	54	64.3	64.3	NUM
cuesj-1365	97	55	30	30	NUM
cuesj-1365	97	56	12	12	NUM
cuesj-1365	97	57	0.081	0.081	NUM
cuesj-1365	97	58	0.167	0.167	NUM
cuesj-1365	97	59	26	26	NUM
cuesj-1365	97	60	0.32	0.32	NUM
cuesj-1365	97	61	59.1	59.1	NUM
cuesj-1365	97	62	30	30	NUM
cuesj-1365	97	63	12	12	NUM
cuesj-1365	97	64	0.081	0.081	NUM
cuesj-1365	97	65	0.167	0.167	NUM
cuesj-1365	97	66	26	26	NUM
cuesj-1365	97	67	0.48	0.48	NUM
cuesj-1365	97	68	55.5	55.5	NUM
cuesj-1365	97	69	30	30	NUM
cuesj-1365	97	70	12	12	NUM
cuesj-1365	97	71	0.081	0.081	NUM
cuesj-1365	97	72	0.167	0.167	NUM
cuesj-1365	97	73	26	26	NUM
cuesj-1365	97	74	0.64	0.64	NUM
cuesj-1365	97	75	50.1	50.1	NUM
cuesj-1365	97	76	30	30	NUM
cuesj-1365	97	77	12	12	NUM
cuesj-1365	97	78	0.081	0.081	NUM
cuesj-1365	97	79	0.167	0.167	NUM
cuesj-1365	97	80	26	26	NUM
cuesj-1365	97	81	0.8	0.8	NUM
cuesj-1365	97	82	46	46	NUM
cuesj-1365	97	83	40	40	NUM
cuesj-1365	97	84	0	0	NUM
cuesj-1365	97	85	0.061	0.061	NUM
cuesj-1365	97	86	0.125	0.125	NUM
cuesj-1365	97	87	26	26	NUM
cuesj-1365	97	88	0.16	0.16	NUM
cuesj-1365	97	89	60	60	NUM
cuesj-1365	97	90	40	40	NUM
cuesj-1365	97	91	0	0	NUM
cuesj-1365	97	92	0.061	0.061	NUM
cuesj-1365	97	93	0.125	0.125	NUM
cuesj-1365	97	94	26	26	NUM
cuesj-1365	97	95	0.32	0.32	NUM
cuesj-1365	97	96	54.4	54.4	NUM
cuesj-1365	97	97	40	40	NUM
cuesj-1365	97	98	0	0	NUM
cuesj-1365	97	99	0.061	0.061	NUM
cuesj-1365	97	100	0.125	0.125	NUM
cuesj-1365	97	101	26	26	NUM
cuesj-1365	97	102	0.48	0.48	NUM
cuesj-1365	97	103	49	49	NUM
cuesj-1365	97	104	40	40	NUM
cuesj-1365	97	105	0	0	NUM
cuesj-1365	97	106	0.061	0.061	NUM
cuesj-1365	97	107	0.125	0.125	NUM
cuesj-1365	97	108	26	26	NUM
cuesj-1365	97	109	0.64	0.64	NUM
cuesj-1365	97	110	44.7	44.7	NUM
cuesj-1365	97	111	40	40	NUM
cuesj-1365	97	112	0	0	NUM
cuesj-1365	97	113	0.061	0.061	NUM
cuesj-1365	97	114	0.125	0.125	NUM
cuesj-1365	97	115	26	26	NUM
cuesj-1365	97	116	0.8	0.8	NUM
cuesj-1365	97	117	40.7	40.7	NUM
cuesj-1365	97	118	40	40	NUM
cuesj-1365	97	119	6	6	NUM
cuesj-1365	97	120	0.061	0.061	NUM
cuesj-1365	97	121	0.125	0.125	NUM
cuesj-1365	97	122	26	26	NUM
cuesj-1365	97	123	0.16	0.16	NUM
cuesj-1365	97	124	60.5	60.5	NUM
cuesj-1365	97	125	40	40	NUM
cuesj-1365	97	126	6	6	NUM
cuesj-1365	97	127	0.061	0.061	NUM
cuesj-1365	97	128	0.125	0.125	NUM
cuesj-1365	97	129	26	26	NUM
cuesj-1365	97	130	0.32	0.32	NUM
cuesj-1365	97	131	55.3	55.3	NUM
cuesj-1365	97	132	40	40	NUM
cuesj-1365	97	133	6	6	NUM
cuesj-1365	97	134	0.061	0.061	NUM
cuesj-1365	97	135	0.125	0.125	NUM
cuesj-1365	97	136	26	26	NUM
cuesj-1365	97	137	0.48	0.48	NUM
cuesj-1365	97	138	49.9	49.9	NUM
cuesj-1365	97	139	40	40	NUM
cuesj-1365	97	140	6	6	NUM
cuesj-1365	97	141	0.061	0.061	NUM
cuesj-1365	97	142	0.125	0.125	NUM
cuesj-1365	97	143	26	26	NUM
cuesj-1365	97	144	0.64	0.64	NUM
cuesj-1365	97	145	47	47	NUM
cuesj-1365	97	146	40	40	NUM
cuesj-1365	97	147	6	6	NUM
cuesj-1365	97	148	0.061	0.061	NUM
cuesj-1365	97	149	0.125	0.125	NUM
cuesj-1365	97	150	26	26	NUM
cuesj-1365	97	151	0.8	0.8	NUM
cuesj-1365	97	152	43.5	43.5	NUM
cuesj-1365	97	153	40	40	NUM
cuesj-1365	97	154	12	12	NUM
cuesj-1365	97	155	0.061	0.061	NUM
cuesj-1365	97	156	0.125	0.125	NUM
cuesj-1365	97	157	26	26	NUM
cuesj-1365	97	158	0.16	0.16	NUM
cuesj-1365	97	159	63.4	63.4	NUM
cuesj-1365	97	160	40	40	NUM
cuesj-1365	97	161	12	12	NUM
cuesj-1365	97	162	0.061	0.061	NUM
cuesj-1365	97	163	0.125	0.125	NUM
cuesj-1365	97	164	26	26	NUM
cuesj-1365	97	165	0.32	0.32	NUM
cuesj-1365	97	166	55.9	55.9	NUM
cuesj-1365	97	167	40	40	NUM
cuesj-1365	97	168	12	12	NUM
cuesj-1365	97	169	0.061	0.061	NUM
cuesj-1365	97	170	0.125	0.125	NUM
cuesj-1365	97	171	26	26	NUM
cuesj-1365	97	172	0.48	0.48	NUM
cuesj-1365	97	173	50.9	50.9	NUM
cuesj-1365	97	174	40	40	NUM
cuesj-1365	97	175	12	12	NUM
cuesj-1365	97	176	0.061	0.061	NUM
cuesj-1365	97	177	0.125	0.125	NUM
cuesj-1365	97	178	26	26	NUM
cuesj-1365	97	179	0.64	0.64	NUM
cuesj-1365	97	180	49	49	NUM
cuesj-1365	97	181	40	40	NUM
cuesj-1365	97	182	12	12	NUM
cuesj-1365	97	183	0.061	0.061	NUM
cuesj-1365	97	184	0.125	0.125	NUM
cuesj-1365	97	185	26	26	NUM
cuesj-1365	97	186	0.8	0.8	NUM
cuesj-1365	97	187	45	45	NUM
cuesj-1365	97	188	zaid	zaid	ADJ
cuesj-1365	97	189	and	and	CCONJ
cuesj-1365	97	190	abo	abo	NOUN
cuesj-1365	97	191	:	:	PUNCT
cuesj-1365	97	192	cfd	cfd	NOUN
cuesj-1365	97	193	analysis	analysis	NOUN
cuesj-1365	97	194	of	of	ADP
cuesj-1365	97	195	stepped	step	VERB
cuesj-1365	97	196	spillway	spillway	NOUN
cuesj-1365	97	197	effects	effect	NOUN
cuesj-1365	97	198	on	on	ADP
cuesj-1365	97	199	stilling	still	VERB
cuesj-1365	97	200	basin	basin	NOUN
cuesj-1365	97	201	size	size	NOUN
cuesj-1365	97	202	60	60	NUM
cuesj-1365	97	203	http://journals.cihanuniversity.edu.iq/index.php/cuesj	http://journals.cihanuniversity.edu.iq/index.php/cuesj	ADJ
cuesj-1365	97	204	cuesj	cuesj	NOUN
cuesj-1365	97	205	2025	2025	NUM
cuesj-1365	97	206	,	,	PUNCT
cuesj-1365	97	207	9	9	NUM
cuesj-1365	97	208	(	(	PUNCT
cuesj-1365	97	209	2	2	NUM
cuesj-1365	97	210	):	):	PUNCT
cuesj-1365	97	211	56	56	NUM
cuesj-1365	97	212	-	-	SYM
cuesj-1365	97	213	60	60	NUM
cuesj-1365	97	214	stepped	step	VERB
cuesj-1365	97	215	spillways	spillway	NOUN
cuesj-1365	97	216	.	.	PUNCT
cuesj-1365	98	1	the	the	DET
cuesj-1365	98	2	better	well	ADJ
cuesj-1365	98	3	performance	performance	NOUN
cuesj-1365	98	4	is	be	AUX
cuesj-1365	98	5	due	due	ADJ
cuesj-1365	98	6	to	to	ADP
cuesj-1365	98	7	the	the	DET
cuesj-1365	98	8	inclined	inclined	ADJ
cuesj-1365	98	9	geometry	geometry	NOUN
cuesj-1365	98	10	,	,	PUNCT
cuesj-1365	98	11	which	which	PRON
cuesj-1365	98	12	causes	cause	VERB
cuesj-1365	98	13	more	more	ADV
cuesj-1365	98	14	turbulent	turbulent	ADJ
cuesj-1365	98	15	flow	flow	NOUN
cuesj-1365	98	16	and	and	CCONJ
cuesj-1365	98	17	more	more	ADJ
cuesj-1365	98	18	air	air	NOUN
cuesj-1365	98	19	to	to	PART
cuesj-1365	98	20	be	be	AUX
cuesj-1365	98	21	entrained	entrain	VERB
cuesj-1365	98	22	,	,	PUNCT
cuesj-1365	98	23	which	which	PRON
cuesj-1365	98	24	makes	make	VERB
cuesj-1365	98	25	the	the	DET
cuesj-1365	98	26	overall	overall	ADJ
cuesj-1365	98	27	energy	energy	NOUN
cuesj-1365	98	28	dissipation	dissipation	NOUN
cuesj-1365	98	29	more	more	ADV
cuesj-1365	98	30	efficient	efficient	ADJ
cuesj-1365	98	31	.	.	PUNCT
cuesj-1365	99	1	furthermore	furthermore	ADV
cuesj-1365	99	2	,	,	PUNCT
cuesj-1365	99	3	when	when	SCONJ
cuesj-1365	99	4	the	the	DET
cuesj-1365	99	5	hydraulic	hydraulic	ADJ
cuesj-1365	99	6	flow	flow	NOUN
cuesj-1365	99	7	conditions	condition	NOUN
cuesj-1365	99	8	are	be	AUX
cuesj-1365	99	9	the	the	DET
cuesj-1365	99	10	same	same	ADJ
cuesj-1365	99	11	,	,	PUNCT
cuesj-1365	99	12	raising	raise	VERB
cuesj-1365	99	13	the	the	DET
cuesj-1365	99	14	step	step	NOUN
cuesj-1365	99	15	height	height	NOUN
cuesj-1365	99	16	makes	make	VERB
cuesj-1365	99	17	the	the	DET
cuesj-1365	99	18	energy	energy	NOUN
cuesj-1365	99	19	dissipation	dissipation	NOUN
cuesj-1365	99	20	rate	rate	NOUN
cuesj-1365	99	21	go	go	VERB
cuesj-1365	99	22	up	up	ADV
cuesj-1365	99	23	even	even	ADV
cuesj-1365	99	24	more	more	ADV
cuesj-1365	99	25	.	.	PUNCT
cuesj-1365	100	1	this	this	PRON
cuesj-1365	100	2	implies	imply	VERB
cuesj-1365	100	3	that	that	SCONJ
cuesj-1365	100	4	,	,	PUNCT
cuesj-1365	100	5	besides	besides	SCONJ
cuesj-1365	100	6	the	the	DET
cuesj-1365	100	7	slope	slope	NOUN
cuesj-1365	100	8	,	,	PUNCT
cuesj-1365	100	9	the	the	DET
cuesj-1365	100	10	geometric	geometric	ADJ
cuesj-1365	100	11	arrangement	arrangement	NOUN
cuesj-1365	100	12	of	of	ADP
cuesj-1365	100	13	the	the	DET
cuesj-1365	100	14	steps	step	NOUN
cuesj-1365	100	15	-	-	PUNCT
cuesj-1365	100	16	particularly	particularly	ADV
cuesj-1365	100	17	their	their	PRON
cuesj-1365	100	18	heightsubstantially	heightsubstantially	ADV
cuesj-1365	100	19	contributes	contribute	VERB
cuesj-1365	100	20	to	to	ADP
cuesj-1365	100	21	the	the	DET
cuesj-1365	100	22	improved	improved	ADJ
cuesj-1365	100	23	hydraulic	hydraulic	ADJ
cuesj-1365	100	24	efficiency	efficiency	NOUN
cuesj-1365	100	25	of	of	ADP
cuesj-1365	100	26	stepped	step	VERB
cuesj-1365	100	27	spillways	spillway	NOUN
cuesj-1365	100	28	.	.	PUNCT
cuesj-1365	101	1	the	the	DET
cuesj-1365	101	2	study	study	NOUN
cuesj-1365	101	3	showed	show	VERB
cuesj-1365	101	4	that	that	SCONJ
cuesj-1365	101	5	making	make	VERB
cuesj-1365	101	6	the	the	DET
cuesj-1365	101	7	steps	step	NOUN
cuesj-1365	101	8	steeper	steep	ADJ
cuesj-1365	101	9	greatly	greatly	ADV
cuesj-1365	101	10	speeds	speed	VERB
cuesj-1365	101	11	up	up	ADP
cuesj-1365	101	12	the	the	DET
cuesj-1365	101	13	rate	rate	NOUN
cuesj-1365	101	14	at	at	ADP
cuesj-1365	101	15	which	which	PRON
cuesj-1365	101	16	energy	energy	NOUN
cuesj-1365	101	17	is	be	AUX
cuesj-1365	101	18	lost	lose	VERB
cuesj-1365	101	19	along	along	ADP
cuesj-1365	101	20	the	the	DET
cuesj-1365	101	21	stepped	step	VERB
cuesj-1365	101	22	spillway	spillway	NOUN
cuesj-1365	101	23	.	.	PUNCT
cuesj-1365	102	1	the	the	DET
cuesj-1365	102	2	main	main	ADJ
cuesj-1365	102	3	reason	reason	NOUN
cuesj-1365	102	4	for	for	ADP
cuesj-1365	102	5	this	this	DET
cuesj-1365	102	6	improvement	improvement	NOUN
cuesj-1365	102	7	is	be	AUX
cuesj-1365	102	8	that	that	SCONJ
cuesj-1365	102	9	the	the	DET
cuesj-1365	102	10	flow	flow	NOUN
cuesj-1365	102	11	has	have	VERB
cuesj-1365	102	12	more	more	ADJ
cuesj-1365	102	13	gravitational	gravitational	ADJ
cuesj-1365	102	14	force	force	NOUN
cuesj-1365	102	15	and	and	CCONJ
cuesj-1365	102	16	the	the	DET
cuesj-1365	102	17	turbulence	turbulence	NOUN
cuesj-1365	102	18	is	be	AUX
cuesj-1365	102	19	stronger	strong	ADJ
cuesj-1365	102	20	because	because	SCONJ
cuesj-1365	102	21	of	of	ADP
cuesj-1365	102	22	the	the	DET
cuesj-1365	102	23	steeper	steep	ADJ
cuesj-1365	102	24	gradient	gradient	NOUN
cuesj-1365	102	25	.	.	PUNCT
cuesj-1365	103	1	together	together	ADV
cuesj-1365	103	2	,	,	PUNCT
cuesj-1365	103	3	these	these	DET
cuesj-1365	103	4	two	two	NUM
cuesj-1365	103	5	things	thing	NOUN
cuesj-1365	103	6	make	make	VERB
cuesj-1365	103	7	energy	energy	NOUN
cuesj-1365	103	8	loss	loss	NOUN
cuesj-1365	103	9	more	more	ADV
cuesj-1365	103	10	effective	effective	ADJ
cuesj-1365	103	11	.	.	PUNCT
cuesj-1365	104	1	the	the	DET
cuesj-1365	104	2	analysis	analysis	NOUN
cuesj-1365	104	3	also	also	ADV
cuesj-1365	104	4	showed	show	VERB
cuesj-1365	104	5	that	that	SCONJ
cuesj-1365	104	6	lowering	lower	VERB
cuesj-1365	104	7	the	the	DET
cuesj-1365	104	8	number	number	NOUN
cuesj-1365	104	9	of	of	ADP
cuesj-1365	104	10	steps	step	NOUN
cuesj-1365	104	11	can	can	AUX
cuesj-1365	104	12	increase	increase	VERB
cuesj-1365	104	13	energy	energy	NOUN
cuesj-1365	104	14	dissipation	dissipation	NOUN
cuesj-1365	104	15	even	even	ADV
cuesj-1365	104	16	more	more	ADV
cuesj-1365	104	17	when	when	SCONJ
cuesj-1365	104	18	the	the	DET
cuesj-1365	104	19	slope	slope	NOUN
cuesj-1365	104	20	is	be	AUX
cuesj-1365	104	21	at	at	ADP
cuesj-1365	104	22	its	its	PRON
cuesj-1365	104	23	highest	high	ADJ
cuesj-1365	104	24	.	.	PUNCT
cuesj-1365	105	1	this	this	PRON
cuesj-1365	105	2	is	be	AUX
cuesj-1365	105	3	probably	probably	ADV
cuesj-1365	105	4	because	because	SCONJ
cuesj-1365	105	5	fewer	few	ADJ
cuesj-1365	105	6	steps	step	NOUN
cuesj-1365	105	7	at	at	ADP
cuesj-1365	105	8	a	a	DET
cuesj-1365	105	9	steeper	steep	ADJ
cuesj-1365	105	10	angle	angle	NOUN
cuesj-1365	105	11	make	make	VERB
cuesj-1365	105	12	each	each	DET
cuesj-1365	105	13	step	step	NOUN
cuesj-1365	105	14	higher	higher	ADV
cuesj-1365	105	15	,	,	PUNCT
cuesj-1365	105	16	which	which	PRON
cuesj-1365	105	17	makes	make	VERB
cuesj-1365	105	18	the	the	DET
cuesj-1365	105	19	hydraulic	hydraulic	ADJ
cuesj-1365	105	20	impact	impact	NOUN
cuesj-1365	105	21	and	and	CCONJ
cuesj-1365	105	22	energy	energy	NOUN
cuesj-1365	105	23	conversion	conversion	NOUN
cuesj-1365	105	24	mechanisms	mechanism	NOUN
cuesj-1365	105	25	stronger	strong	ADJ
cuesj-1365	105	26	.	.	PUNCT
cuesj-1365	106	1	figure	figure	NOUN
cuesj-1365	106	2	8	8	NUM
cuesj-1365	106	3	clearly	clearly	ADV
cuesj-1365	106	4	shows	show	VERB
cuesj-1365	106	5	these	these	DET
cuesj-1365	106	6	results	result	NOUN
cuesj-1365	106	7	.	.	PUNCT
cuesj-1365	107	1	it	it	PRON
cuesj-1365	107	2	shows	show	VERB
cuesj-1365	107	3	how	how	SCONJ
cuesj-1365	107	4	the	the	DET
cuesj-1365	107	5	shape	shape	NOUN
cuesj-1365	107	6	of	of	ADP
cuesj-1365	107	7	the	the	DET
cuesj-1365	107	8	steps	step	NOUN
cuesj-1365	107	9	affects	affect	VERB
cuesj-1365	107	10	the	the	DET
cuesj-1365	107	11	amount	amount	NOUN
cuesj-1365	107	12	of	of	ADP
cuesj-1365	107	13	energy	energy	NOUN
cuesj-1365	107	14	lost	lose	VERB
cuesj-1365	107	15	when	when	SCONJ
cuesj-1365	107	16	the	the	DET
cuesj-1365	107	17	slope	slope	NOUN
cuesj-1365	107	18	changes	change	VERB
cuesj-1365	107	19	.	.	PUNCT
cuesj-1365	108	1	length	length	NOUN
cuesj-1365	108	2	of	of	ADP
cuesj-1365	108	3	stilling	still	VERB
cuesj-1365	108	4	basin	basin	NOUN
cuesj-1365	108	5	y	y	PROPN
cuesj-1365	108	6	y	y	PROPN
cuesj-1365	108	7	f2	f2	PROPN
cuesj-1365	108	8	1	1	NUM
cuesj-1365	108	9	1	1	NUM
cuesj-1365	108	10	21	21	NUM
cuesj-1365	108	11	2	2	NUM
cuesj-1365	108	12	1	1	NUM
cuesj-1365	108	13	8	8	NUM
cuesj-1365	108	14	1=	1=	NUM
cuesj-1365	108	15	+	+	CCONJ
cuesj-1365	108	16	−	−	NOUN
cuesj-1365	108	17			X
cuesj-1365	108	18			PROPN
cuesj-1365	108	19			PROPN
cuesj-1365	108	20	(	(	PUNCT
cuesj-1365	108	21	10	10	NUM
cuesj-1365	108	22	)	)	PUNCT
cuesj-1365	108	23	f	f	NOUN
cuesj-1365	108	24	v	v	NUM
cuesj-1365	108	25	gy1	gy1	NOUN
cuesj-1365	108	26	1	1	NUM
cuesj-1365	108	27	1	1	NUM
cuesj-1365	108	28	=	=	SYM
cuesj-1365	108	29	(	(	PUNCT
cuesj-1365	108	30	11	11	NUM
cuesj-1365	108	31	)	)	PUNCT
cuesj-1365	108	32	length	length	NOUN
cuesj-1365	108	33	of	of	ADP
cuesj-1365	108	34	cistern	cistern	NOUN
cuesj-1365	108	35	=	=	NOUN
cuesj-1365	108	36	6	6	NUM
cuesj-1365	108	37	(	(	PUNCT
cuesj-1365	108	38	y2−y1	y2−y1	NUM
cuesj-1365	108	39	)	)	PUNCT
cuesj-1365	108	40	6	6	NUM
cuesj-1365	108	41	2	2	NUM
cuesj-1365	108	42	1	1	NUM
cuesj-1365	108	43	(	(	PUNCT
cuesj-1365	108	44	)	)	PUNCT
cuesj-1365	108	45	y	y	PROPN
cuesj-1365	108	46	y−	y−	NOUN
cuesj-1365	108	47	(	(	PUNCT
cuesj-1365	108	48	12	12	NUM
cuesj-1365	108	49	)	)	PUNCT
cuesj-1365	108	50	length	length	NOUN
cuesj-1365	108	51	of	of	ADP
cuesj-1365	108	52	cistern	cistern	NOUN
cuesj-1365	108	53	for	for	ADP
cuesj-1365	108	54	20	20	NUM
cuesj-1365	108	55	steps	step	NOUN
cuesj-1365	108	56	,	,	PUNCT
cuesj-1365	108	57	q	q	NOUN
cuesj-1365	108	58	=	=	SYM
cuesj-1365	108	59	0.8m2	0.8m2	NUM
cuesj-1365	108	60	/	/	SYM
cuesj-1365	108	61	s	s	PROPN
cuesj-1365	108	62	,	,	PUNCT
cuesj-1365	108	63	and	and	CCONJ
cuesj-1365	108	64	α	α	X
cuesj-1365	108	65	=	=	SYM
cuesj-1365	108	66	0	0	NUM
cuesj-1365	108	67	°	°	NUM
cuesj-1365	108	68	=	=	SYM
cuesj-1365	108	69	5.57	5.57	NUM
cuesj-1365	108	70	length	length	NOUN
cuesj-1365	108	71	of	of	ADP
cuesj-1365	108	72	cistern	cistern	NOUN
cuesj-1365	108	73	for	for	ADP
cuesj-1365	108	74	20	20	NUM
cuesj-1365	108	75	steps	step	NOUN
cuesj-1365	108	76	,	,	PUNCT
cuesj-1365	108	77	q	q	NOUN
cuesj-1365	108	78	=	=	SYM
cuesj-1365	108	79	0.8m2	0.8m2	NUM
cuesj-1365	108	80	/	/	SYM
cuesj-1365	108	81	s	s	PROPN
cuesj-1365	108	82	,	,	PUNCT
cuesj-1365	108	83	and	and	CCONJ
cuesj-1365	108	84	α=12	α=12	NOUN
cuesj-1365	108	85	°	°	NUM
cuesj-1365	108	86	=	=	SYM
cuesj-1365	108	87	4.66	4.66	NUM
cuesj-1365	108	88	m	m	NOUN
cuesj-1365	108	89	difference	difference	NOUN
cuesj-1365	108	90	between	between	ADP
cuesj-1365	108	91	cistern	cistern	NOUN
cuesj-1365	108	92	length	length	NOUN
cuesj-1365	108	93	of	of	ADP
cuesj-1365	108	94	(	(	PUNCT
cuesj-1365	108	95	α	α	X
cuesj-1365	108	96	=	=	SYM
cuesj-1365	108	97	0	0	NUM
cuesj-1365	108	98	°	°	NUM
cuesj-1365	108	99	and	and	CCONJ
cuesj-1365	108	100	α	α	NOUN
cuesj-1365	108	101	=	=	NOUN
cuesj-1365	108	102	12	12	NUM
cuesj-1365	108	103	°	°	NUM
cuesj-1365	108	104	)	)	PUNCT
cuesj-1365	108	105	=	=	SYM
cuesj-1365	108	106	16	16	NUM
cuesj-1365	108	107	%	%	NOUN
cuesj-1365	108	108	conclusion	conclusion	NOUN
cuesj-1365	108	109	this	this	DET
cuesj-1365	108	110	research	research	NOUN
cuesj-1365	108	111	aimed	aim	VERB
cuesj-1365	108	112	to	to	PART
cuesj-1365	108	113	optimize	optimize	VERB
cuesj-1365	108	114	energy	energy	NOUN
cuesj-1365	108	115	dissipation	dissipation	NOUN
cuesj-1365	108	116	at	at	ADP
cuesj-1365	108	117	high	high	ADJ
cuesj-1365	108	118	discharges	discharge	NOUN
cuesj-1365	108	119	,	,	PUNCT
cuesj-1365	108	120	as	as	SCONJ
cuesj-1365	108	121	multiple	multiple	ADJ
cuesj-1365	108	122	studies	study	NOUN
cuesj-1365	108	123	have	have	AUX
cuesj-1365	108	124	shown	show	VERB
cuesj-1365	108	125	that	that	SCONJ
cuesj-1365	108	126	energy	energy	NOUN
cuesj-1365	108	127	dissipation	dissipation	NOUN
cuesj-1365	108	128	diminishes	diminish	VERB
cuesj-1365	108	129	with	with	ADP
cuesj-1365	108	130	increasing	increase	VERB
cuesj-1365	108	131	discharge	discharge	NOUN
cuesj-1365	108	132	.	.	PUNCT
cuesj-1365	109	1	the	the	DET
cuesj-1365	109	2	flow	flow	NOUN
cuesj-1365	109	3	rate	rate	NOUN
cuesj-1365	109	4	was	be	AUX
cuesj-1365	109	5	increased	increase	VERB
cuesj-1365	109	6	in	in	ADP
cuesj-1365	109	7	each	each	DET
cuesj-1365	109	8	case	case	NOUN
cuesj-1365	109	9	.	.	PUNCT
cuesj-1365	110	1	the	the	DET
cuesj-1365	110	2	study	study	NOUN
cuesj-1365	110	3	found	find	VERB
cuesj-1365	110	4	that	that	SCONJ
cuesj-1365	110	5	in	in	ADP
cuesj-1365	110	6	stepped	step	VERB
cuesj-1365	110	7	spillways	spillway	NOUN
cuesj-1365	110	8	,	,	PUNCT
cuesj-1365	110	9	a	a	DET
cuesj-1365	110	10	higher	high	ADJ
cuesj-1365	110	11	ratio	ratio	NOUN
cuesj-1365	110	12	of	of	ADP
cuesj-1365	110	13	flow	flow	NOUN
cuesj-1365	110	14	energy	energy	NOUN
cuesj-1365	110	15	dissipation	dissipation	NOUN
cuesj-1365	110	16	is	be	AUX
cuesj-1365	110	17	reached	reach	VERB
cuesj-1365	110	18	when	when	SCONJ
cuesj-1365	110	19	the	the	DET
cuesj-1365	110	20	number	number	NOUN
cuesj-1365	110	21	of	of	ADP
cuesj-1365	110	22	steps	step	NOUN
cuesj-1365	110	23	is	be	AUX
cuesj-1365	110	24	lowered	lower	VERB
cuesj-1365	110	25	and	and	CCONJ
cuesj-1365	110	26	the	the	DET
cuesj-1365	110	27	steep	steep	ADJ
cuesj-1365	110	28	slopes	slope	NOUN
cuesj-1365	110	29	are	be	AUX
cuesj-1365	110	30	raised	raise	VERB
cuesj-1365	110	31	.	.	PUNCT
cuesj-1365	111	1	this	this	PRON
cuesj-1365	111	2	is	be	AUX
cuesj-1365	111	3	different	different	ADJ
cuesj-1365	111	4	from	from	ADP
cuesj-1365	111	5	flat	flat	ADJ
cuesj-1365	111	6	stepped	step	VERB
cuesj-1365	111	7	spillways	spillway	NOUN
cuesj-1365	111	8	.	.	PUNCT
cuesj-1365	112	1	the	the	DET
cuesj-1365	112	2	results	result	NOUN
cuesj-1365	112	3	from	from	ADP
cuesj-1365	112	4	all	all	DET
cuesj-1365	112	5	cases	case	NOUN
cuesj-1365	112	6	indicate	indicate	VERB
cuesj-1365	112	7	that	that	SCONJ
cuesj-1365	112	8	20	20	NUM
cuesj-1365	112	9	steps	step	NOUN
cuesj-1365	112	10	and	and	CCONJ
cuesj-1365	112	11	an	an	DET
cuesj-1365	112	12	angle	angle	NOUN
cuesj-1365	112	13	of	of	ADP
cuesj-1365	112	14	α	α	NOUN
cuesj-1365	112	15	=	=	NOUN
cuesj-1365	112	16	12	12	NUM
cuesj-1365	112	17	°	°	NOUN
cuesj-1365	112	18	are	be	AUX
cuesj-1365	112	19	most	most	ADV
cuesj-1365	112	20	effective	effective	ADJ
cuesj-1365	112	21	at	at	ADP
cuesj-1365	112	22	dissipating	dissipate	VERB
cuesj-1365	112	23	energy	energy	NOUN
cuesj-1365	112	24	,	,	PUNCT
cuesj-1365	112	25	achieving	achieve	VERB
cuesj-1365	112	26	approximately	approximately	ADV
cuesj-1365	112	27	46.6	46.6	NUM
cuesj-1365	112	28	%	%	NOUN
cuesj-1365	112	29	for	for	ADP
cuesj-1365	112	30	maximum	maximum	ADJ
cuesj-1365	112	31	discharge	discharge	NOUN
cuesj-1365	112	32	.	.	PUNCT
cuesj-1365	113	1	the	the	DET
cuesj-1365	113	2	length	length	NOUN
cuesj-1365	113	3	of	of	ADP
cuesj-1365	113	4	the	the	DET
cuesj-1365	113	5	stilling	still	VERB
cuesj-1365	113	6	basin	basin	NOUN
cuesj-1365	113	7	will	will	AUX
cuesj-1365	113	8	change	change	VERB
cuesj-1365	113	9	depending	depend	VERB
cuesj-1365	113	10	on	on	ADP
cuesj-1365	113	11	how	how	SCONJ
cuesj-1365	113	12	much	much	ADJ
cuesj-1365	113	13	energy	energy	NOUN
cuesj-1365	113	14	is	be	AUX
cuesj-1365	113	15	lost	lose	VERB
cuesj-1365	113	16	.	.	PUNCT
cuesj-1365	114	1	when	when	SCONJ
cuesj-1365	114	2	energy	energy	NOUN
cuesj-1365	114	3	losses	loss	NOUN
cuesj-1365	114	4	go	go	VERB
cuesj-1365	114	5	up	up	ADP
cuesj-1365	114	6	,	,	PUNCT
cuesj-1365	114	7	the	the	DET
cuesj-1365	114	8	length	length	NOUN
cuesj-1365	114	9	of	of	ADP
cuesj-1365	114	10	the	the	DET
cuesj-1365	114	11	stilling	still	VERB
cuesj-1365	114	12	basin	basin	NOUN
cuesj-1365	114	13	will	will	AUX
cuesj-1365	114	14	go	go	VERB
cuesj-1365	114	15	down	down	ADV
cuesj-1365	114	16	.	.	PUNCT
cuesj-1365	115	1	the	the	DET
cuesj-1365	115	2	study	study	NOUN
cuesj-1365	115	3	found	find	VERB
cuesj-1365	115	4	that	that	SCONJ
cuesj-1365	115	5	for	for	ADP
cuesj-1365	115	6	the	the	DET
cuesj-1365	115	7	critical	critical	ADJ
cuesj-1365	115	8	case	case	NOUN
cuesj-1365	115	9	(	(	PUNCT
cuesj-1365	115	10	20	20	NUM
cuesj-1365	115	11	steps	step	NOUN
cuesj-1365	115	12	and	and	CCONJ
cuesj-1365	115	13	qmax	qmax	NOUN
cuesj-1365	115	14	=	=	SYM
cuesj-1365	115	15	0.8m2	0.8m2	NUM
cuesj-1365	115	16	/	/	SYM
cuesj-1365	115	17	s	s	NOUN
cuesj-1365	115	18	)	)	PUNCT
cuesj-1365	115	19	,	,	PUNCT
cuesj-1365	115	20	the	the	DET
cuesj-1365	115	21	length	length	NOUN
cuesj-1365	115	22	of	of	ADP
cuesj-1365	115	23	the	the	DET
cuesj-1365	115	24	stilling	still	VERB
cuesj-1365	115	25	basin	basin	NOUN
cuesj-1365	115	26	will	will	AUX
cuesj-1365	115	27	go	go	VERB
cuesj-1365	115	28	down	down	ADP
cuesj-1365	115	29	by	by	ADP
cuesj-1365	115	30	16	16	NUM
cuesj-1365	115	31	%	%	NOUN
cuesj-1365	115	32	when	when	SCONJ
cuesj-1365	115	33	α	α	NOUN
cuesj-1365	115	34	=	=	VERB
cuesj-1365	115	35	12	12	NUM
cuesj-1365	115	36	°	°	NOUN
cuesj-1365	115	37	instead	instead	ADV
cuesj-1365	115	38	of	of	ADP
cuesj-1365	115	39	α	α	NOUN
cuesj-1365	115	40	=	=	SYM
cuesj-1365	115	41	0	0	NUM
cuesj-1365	115	42	°	°	NUM
cuesj-1365	115	43	.	.	PUNCT
cuesj-1365	115	44	references	reference	NOUN
cuesj-1365	115	45	1	1	NUM
cuesj-1365	115	46	.	.	PUNCT
cuesj-1365	115	47	j.	j.	PROPN
cuesj-1365	115	48	peakall	peakall	PROPN
cuesj-1365	115	49	and	and	CCONJ
cuesj-1365	115	50	j.	j.	PROPN
cuesj-1365	115	51	warburton	warburton	PROPN
cuesj-1365	115	52	.	.	PUNCT
cuesj-1365	116	1	surface	surface	NOUN
cuesj-1365	116	2	tension	tension	NOUN
cuesj-1365	116	3	in	in	ADP
cuesj-1365	116	4	small	small	ADJ
cuesj-1365	116	5	hydraulic	hydraulic	NOUN
cuesj-1365	116	6	river	river	NOUN
cuesj-1365	116	7	models	model	NOUN
cuesj-1365	116	8	the	the	DET
cuesj-1365	116	9	significance	significance	NOUN
cuesj-1365	116	10	of	of	ADP
cuesj-1365	116	11	the	the	DET
cuesj-1365	116	12	weber	weber	PROPN
cuesj-1365	116	13	number	number	PROPN
cuesj-1365	116	14	.	.	PUNCT
cuesj-1365	117	1	journal	journal	NOUN
cuesj-1365	117	2	of	of	ADP
cuesj-1365	117	3	hydrology	hydrology	NOUN
cuesj-1365	117	4	new	new	PROPN
cuesj-1365	117	5	zealand	zealand	PROPN
cuesj-1365	117	6	,	,	PUNCT
cuesj-1365	117	7	vol	vol	NOUN
cuesj-1365	117	8	.	.	PROPN
cuesj-1365	117	9	35	35	NUM
cuesj-1365	117	10	,	,	PUNCT
cuesj-1365	117	11	no	no	INTJ
cuesj-1365	117	12	.	.	NOUN
cuesj-1365	117	13	2	2	NUM
cuesj-1365	117	14	,	,	PUNCT
cuesj-1365	117	15	pp	pp	ADJ
cuesj-1365	117	16	.	.	PUNCT
cuesj-1365	118	1	199	199	NUM
cuesj-1365	118	2	-	-	SYM
cuesj-1365	118	3	212	212	NUM
cuesj-1365	118	4	,	,	PUNCT
cuesj-1365	118	5	1996	1996	NUM
cuesj-1365	118	6	.	.	PUNCT
cuesj-1365	119	1	2	2	X
cuesj-1365	119	2	.	.	X
cuesj-1365	119	3	h.	h.	PROPN
cuesj-1365	119	4	chanson	chanson	PROPN
cuesj-1365	119	5	.	.	PUNCT
cuesj-1365	119	6	air	air	PROPN
cuesj-1365	119	7	bubble	bubble	NOUN
cuesj-1365	119	8	entrainment	entrainment	NOUN
cuesj-1365	119	9	in	in	ADP
cuesj-1365	119	10	free	free	ADJ
cuesj-1365	119	11	-	-	PUNCT
cuesj-1365	119	12	surface	surface	NOUN
cuesj-1365	119	13	turbulent	turbulent	ADJ
cuesj-1365	119	14	shear	shear	NOUN
cuesj-1365	119	15	flows	flow	VERB
cuesj-1365	119	16	.	.	PUNCT
cuesj-1365	120	1	vol	vol	NOUN
cuesj-1365	120	2	.	.	PROPN
cuesj-1365	121	1	20	20	NUM
cuesj-1365	121	2	.	.	PUNCT
cuesj-1365	122	1	elsevier	elsevier	PROPN
cuesj-1365	122	2	,	,	PUNCT
cuesj-1365	122	3	netherlands	netherlands	PROPN
cuesj-1365	122	4	,	,	PUNCT
cuesj-1365	122	5	pp	pp	ADJ
cuesj-1365	122	6	.	.	PUNCT
cuesj-1365	123	1	630	630	NUM
cuesj-1365	123	2	-	-	SYM
cuesj-1365	123	3	647	647	NUM
cuesj-1365	123	4	,	,	PUNCT
cuesj-1365	123	5	1996	1996	NUM
cuesj-1365	123	6	.	.	PUNCT
cuesj-1365	124	1	3	3	X
cuesj-1365	124	2	.	.	X
cuesj-1365	124	3	n.	n.	NOUN
cuesj-1365	124	4	rajaratnam	rajaratnam	NOUN
cuesj-1365	124	5	.	.	PUNCT
cuesj-1365	125	1	skimming	skim	VERB
cuesj-1365	125	2	flow	flow	NOUN
cuesj-1365	125	3	in	in	ADP
cuesj-1365	125	4	stepped	stepped	ADJ
cuesj-1365	125	5	spillways	spillway	NOUN
cuesj-1365	125	6	.	.	PUNCT
cuesj-1365	126	1	journal	journal	PROPN
cuesj-1365	126	2	of	of	ADP
cuesj-1365	126	3	hydraulic	hydraulic	ADJ
cuesj-1365	126	4	engineering	engineering	NOUN
cuesj-1365	126	5	,	,	PUNCT
cuesj-1365	126	6	vol	vol	NOUN
cuesj-1365	126	7	.	.	PROPN
cuesj-1365	126	8	116	116	NUM
cuesj-1365	126	9	,	,	PUNCT
cuesj-1365	126	10	no	no	INTJ
cuesj-1365	126	11	.	.	NOUN
cuesj-1365	126	12	4	4	NUM
cuesj-1365	126	13	,	,	PUNCT
cuesj-1365	126	14	pp	pp	ADJ
cuesj-1365	126	15	.	.	PUNCT
cuesj-1365	127	1	587	587	NUM
cuesj-1365	127	2	-	-	SYM
cuesj-1365	127	3	591	591	NUM
cuesj-1365	127	4	,	,	PUNCT
cuesj-1365	127	5	1990	1990	NUM
cuesj-1365	127	6	.	.	PUNCT
cuesj-1365	128	1	4	4	X
cuesj-1365	128	2	.	.	X
cuesj-1365	128	3	n.	n.	PROPN
cuesj-1365	128	4	obaid	obaid	PROPN
cuesj-1365	128	5	,	,	PUNCT
cuesj-1365	128	6	s.	s.	PROPN
cuesj-1365	128	7	alghazali	alghazali	PROPN
cuesj-1365	128	8	and	and	CCONJ
cuesj-1365	128	9	s.	s.	PROPN
cuesj-1365	128	10	m.	m.	PROPN
cuesj-1365	128	11	jasim	jasim	PROPN
cuesj-1365	128	12	.	.	PUNCT
cuesj-1365	129	1	experimental	experimental	ADJ
cuesj-1365	129	2	study	study	NOUN
cuesj-1365	129	3	on	on	ADP
cuesj-1365	129	4	the	the	DET
cuesj-1365	129	5	limits	limit	NOUN
cuesj-1365	129	6	of	of	ADP
cuesj-1365	129	7	flow	flow	NOUN
cuesj-1365	129	8	regimes	regime	NOUN
cuesj-1365	129	9	for	for	ADP
cuesj-1365	129	10	different	different	ADJ
cuesj-1365	129	11	configurations	configuration	NOUN
cuesj-1365	129	12	of	of	ADP
cuesj-1365	129	13	stepped	step	VERB
cuesj-1365	129	14	spillway	spillway	NOUN
cuesj-1365	129	15	.	.	PUNCT
cuesj-1365	130	1	vol	vol	NOUN
cuesj-1365	130	2	.	.	PROPN
cuesj-1365	131	1	6	6	NUM
cuesj-1365	131	2	,	,	PUNCT
cuesj-1365	131	3	no	no	INTJ
cuesj-1365	131	4	.	.	NOUN
cuesj-1365	131	5	6	6	NUM
cuesj-1365	131	6	,	,	PUNCT
cuesj-1365	131	7	pp	pp	ADJ
cuesj-1365	131	8	.	.	PUNCT
cuesj-1365	132	1	30	30	NUM
cuesj-1365	132	2	-	-	SYM
cuesj-1365	132	3	40	40	NUM
cuesj-1365	132	4	,	,	PUNCT
cuesj-1365	132	5	2014	2014	NUM
cuesj-1365	132	6	.	.	PUNCT
cuesj-1365	133	1	5	5	NUM
cuesj-1365	133	2	.	.	PUNCT
cuesj-1365	134	1	p.	p.	NOUN
cuesj-1365	134	2	o.	o.	PROPN
cuesj-1365	135	1	zaid	zaid	PROPN
cuesj-1365	135	2	,	,	PUNCT
cuesj-1365	135	3	p.	p.	NOUN
cuesj-1365	135	4	o.	o.	PROPN
cuesj-1365	135	5	a.	a.	NOUN
cuesj-1365	135	6	abo	abo	PROPN
cuesj-1365	135	7	,	,	PUNCT
cuesj-1365	135	8	a.	a.	PROPN
cuesj-1365	135	9	k.	k.	PROPN
cuesj-1365	135	10	fatah	fatah	PROPN
cuesj-1365	135	11	and	and	CCONJ
cuesj-1365	135	12	a.	a.	PROPN
cuesj-1365	135	13	h.	h.	PROPN
cuesj-1365	135	14	ibrahim	ibrahim	PROPN
cuesj-1365	135	15	.	.	PUNCT
cuesj-1365	136	1	computation	computation	NOUN
cuesj-1365	136	2	of	of	ADP
cuesj-1365	136	3	hydraulic	hydraulic	ADJ
cuesj-1365	136	4	performance	performance	NOUN
cuesj-1365	136	5	for	for	ADP
cuesj-1365	136	6	ogee	ogee	NOUN
cuesj-1365	136	7	spillway	spillway	NOUN
cuesj-1365	136	8	with	with	ADP
cuesj-1365	136	9	bucket	bucket	NOUN
cuesj-1365	136	10	-	-	PUNCT
cuesj-1365	136	11	type	type	NOUN
cuesj-1365	136	12	energy	energy	NOUN
cuesj-1365	136	13	dissipater	dissipater	NOUN
cuesj-1365	136	14	using	use	VERB
cuesj-1365	136	15	cfd	cfd	NOUN
cuesj-1365	136	16	.	.	PUNCT
cuesj-1365	137	1	the	the	DET
cuesj-1365	137	2	3rd	3rd	ADJ
cuesj-1365	137	3	international	international	ADJ
cuesj-1365	137	4	conference	conference	NOUN
cuesj-1365	137	5	on	on	ADP
cuesj-1365	137	6	engineering	engineering	NOUN
cuesj-1365	137	7	and	and	CCONJ
cuesj-1365	137	8	innovative	innovative	ADJ
cuesj-1365	137	9	technology	technology	NOUN
cuesj-1365	137	10	iceit2024	iceit2024	NOUN
cuesj-1365	137	11	salahaddin	salahaddin	VERB
cuesj-1365	137	12	university	university	NOUN
cuesj-1365	137	13	-	-	PUNCT
cuesj-1365	137	14	erbil	erbil	PROPN
cuesj-1365	137	15	,	,	PUNCT
cuesj-1365	137	16	2024	2024	NUM
cuesj-1365	137	17	.	.	PUNCT
cuesj-1365	138	1	6	6	NUM
cuesj-1365	138	2	.	.	X
cuesj-1365	138	3	b.	b.	PROPN
cuesj-1365	138	4	s.	s.	PROPN
cuesj-1365	138	5	mamand	mamand	PROPN
cuesj-1365	138	6	and	and	CCONJ
cuesj-1365	138	7	p.	p.	PROPN
cuesj-1365	138	8	o.	o.	PROPN
cuesj-1365	139	1	zaid	zaid	PROPN
cuesj-1365	139	2	.	.	PUNCT
cuesj-1365	140	1	the	the	DET
cuesj-1365	140	2	validation	validation	NOUN
cuesj-1365	140	3	of	of	ADP
cuesj-1365	140	4	rectangular	rectangular	ADJ
cuesj-1365	140	5	sharp	sharp	ADJ
cuesj-1365	140	6	crested	crest	VERB
cuesj-1365	140	7	weir	weir	PROPN
cuesj-1365	140	8	flow	flow	PROPN
cuesj-1365	140	9	using	use	VERB
cuesj-1365	140	10	ansys	ansys	PROPN
cuesj-1365	140	11	-	-	PUNCT
cuesj-1365	140	12	fluent	fluent	ADJ
cuesj-1365	140	13	.	.	PUNCT
cuesj-1365	141	1	zanco	zanco	PROPN
cuesj-1365	141	2	journal	journal	PROPN
cuesj-1365	141	3	of	of	ADP
cuesj-1365	141	4	pure	pure	ADJ
cuesj-1365	141	5	and	and	CCONJ
cuesj-1365	141	6	applied	applied	ADJ
cuesj-1365	141	7	sciences	science	NOUN
cuesj-1365	141	8	,	,	PUNCT
cuesj-1365	141	9	vol	vol	NOUN
cuesj-1365	141	10	.	.	PROPN
cuesj-1365	142	1	36	36	NUM
cuesj-1365	142	2	,	,	PUNCT
cuesj-1365	142	3	pp	pp	ADJ
cuesj-1365	142	4	.	.	PUNCT
cuesj-1365	143	1	27	27	NUM
cuesj-1365	143	2	-	-	SYM
cuesj-1365	143	3	34	34	NUM
cuesj-1365	143	4	,	,	PUNCT
cuesj-1365	143	5	2024	2024	NUM
cuesj-1365	143	6	.	.	PUNCT
cuesj-1365	144	1	7	7	X
cuesj-1365	144	2	.	.	X
cuesj-1365	144	3	ansys	ansys	PROPN
cuesj-1365	144	4	.	.	PUNCT
cuesj-1365	145	1	ansys	ansys	PROPN
cuesj-1365	145	2	fluent	fluent	ADJ
cuesj-1365	145	3	-	-	PUNCT
cuesj-1365	145	4	solver	solver	NOUN
cuesj-1365	145	5	theory	theory	NOUN
cuesj-1365	145	6	guide	guide	NOUN
cuesj-1365	145	7	.	.	PUNCT
cuesj-1365	146	1	ansys	ansys	PROPN
cuesj-1365	146	2	,	,	PUNCT
cuesj-1365	146	3	united	united	PROPN
cuesj-1365	146	4	states	states	PROPN
cuesj-1365	146	5	,	,	PUNCT
cuesj-1365	146	6	2021	2021	NUM
cuesj-1365	146	7	.	.	PUNCT
cuesj-1365	147	1	8	8	NUM
cuesj-1365	147	2	.	.	PUNCT
cuesj-1365	147	3	f.	f.	PROPN
cuesj-1365	147	4	zhang	zhang	PROPN
cuesj-1365	147	5	and	and	CCONJ
cuesj-1365	147	6	h.	h.	PROPN
cuesj-1365	147	7	liu	liu	PROPN
cuesj-1365	147	8	.	.	PUNCT
cuesj-1365	148	1	experimental	experimental	ADJ
cuesj-1365	148	2	study	study	NOUN
cuesj-1365	148	3	on	on	ADP
cuesj-1365	148	4	energy	energy	NOUN
cuesj-1365	148	5	dissipation	dissipation	NOUN
cuesj-1365	148	6	ratio	ratio	NOUN
cuesj-1365	148	7	of	of	ADP
cuesj-1365	148	8	pure	pure	ADJ
cuesj-1365	148	9	steps	step	NOUN
cuesj-1365	148	10	on	on	ADP
cuesj-1365	148	11	stepped	step	VERB
cuesj-1365	148	12	spillway	spillway	NOUN
cuesj-1365	148	13	.	.	PUNCT
cuesj-1365	149	1	shuili	shuili	PROPN
cuesj-1365	149	2	fadian	fadian	PROPN
cuesj-1365	149	3	xuebao	xuebao	PROPN
cuesj-1365	149	4	journal	journal	PROPN
cuesj-1365	149	5	hydroelectric	hydroelectric	ADJ
cuesj-1365	149	6	engineering	engineering	NOUN
cuesj-1365	149	7	,	,	PUNCT
cuesj-1365	149	8	vol	vol	NOUN
cuesj-1365	149	9	.	.	PROPN
cuesj-1365	150	1	34	34	NUM
cuesj-1365	150	2	,	,	PUNCT
cuesj-1365	150	3	no	no	INTJ
cuesj-1365	150	4	.	.	NOUN
cuesj-1365	150	5	4	4	NUM
cuesj-1365	150	6	,	,	PUNCT
cuesj-1365	150	7	p.	p.	NOUN
cuesj-1365	150	8	87	87	NUM
cuesj-1365	150	9	-	-	SYM
cuesj-1365	150	10	100	100	NUM
cuesj-1365	150	11	,	,	PUNCT
cuesj-1365	150	12	2015	2015	NUM
cuesj-1365	150	13	.	.	PUNCT
cuesj-1365	151	1	9	9	X
cuesj-1365	151	2	.	.	X
cuesj-1365	151	3	h.	h.	NOUN
cuesj-1365	151	4	rouse	rouse	PROPN
cuesj-1365	151	5	.	.	PUNCT
cuesj-1365	152	1	open	open	ADJ
cuesj-1365	152	2	channel	channel	NOUN
cuesj-1365	152	3	flow	flow	NOUN
cuesj-1365	152	4	.	.	PUNCT
cuesj-1365	153	1	by	by	ADP
cuesj-1365	153	2	f.	f.	PROPN
cuesj-1365	153	3	m.	m.	PROPN
cuesj-1365	153	4	henderson	henderson	PROPN
cuesj-1365	153	5	.	.	PUNCT
cuesj-1365	154	1	macmillan	macmillan	PROPN
cuesj-1365	154	2	,	,	PUNCT
cuesj-1365	154	3	1966	1966	NUM
cuesj-1365	154	4	.	.	PUNCT
cuesj-1365	155	1	522	522	NUM
cuesj-1365	155	2	pp	pp	NOUN
cuesj-1365	155	3	.	.	PUNCT
cuesj-1365	156	1	$	$	SYM
cuesj-1365	156	2	14.95	14.95	NUM
cuesj-1365	156	3	.	.	PUNCT
cuesj-1365	157	1	journal	journal	NOUN
cuesj-1365	157	2	of	of	ADP
cuesj-1365	157	3	fluid	fluid	ADJ
cuesj-1365	157	4	mechanics	mechanic	NOUN
cuesj-1365	157	5	,	,	PUNCT
cuesj-1365	157	6	vol	vol	NOUN
cuesj-1365	157	7	.	.	PROPN
cuesj-1365	157	8	29	29	NUM
cuesj-1365	157	9	,	,	PUNCT
cuesj-1365	157	10	no	no	INTJ
cuesj-1365	157	11	.	.	NOUN
cuesj-1365	157	12	2	2	NUM
cuesj-1365	157	13	,	,	PUNCT
cuesj-1365	157	14	pp	pp	ADJ
cuesj-1365	157	15	.	.	PUNCT
cuesj-1365	158	1	414	414	NUM
cuesj-1365	158	2	-	-	NUM
cuesj-1365	158	3	415	415	NUM
cuesj-1365	158	4	,	,	PUNCT
cuesj-1365	158	5	1967	1967	NUM
cuesj-1365	158	6	.	.	PUNCT
cuesj-1365	159	1	figure	figure	NOUN
cuesj-1365	159	2	8	8	NUM
cuesj-1365	159	3	:	:	PUNCT
cuesj-1365	159	4	discharge	discharge	VERB
cuesj-1365	159	5	and	and	CCONJ
cuesj-1365	159	6	energy	energy	NOUN
cuesj-1365	159	7	dissipation	dissipation	NOUN
cuesj-1365	159	8	relations	relation	NOUN
cuesj-1365	159	9	for	for	ADP
cuesj-1365	159	10	20	20	NUM
cuesj-1365	159	11	,	,	PUNCT
cuesj-1365	159	12	30	30	NUM
cuesj-1365	159	13	,	,	PUNCT
cuesj-1365	159	14	40	40	NUM
cuesj-1365	159	15	steps	step	NOUN
cuesj-1365	159	16	and	and	CCONJ
cuesj-1365	159	17	α	α	NOUN
cuesj-1365	159	18	=	=	NOUN
cuesj-1365	159	19	12	12	NUM
cuesj-1365	159	20	°	°	NUM
cuesj-1365	159	21	figure	figure	NOUN
cuesj-1365	159	22	7	7	NUM
cuesj-1365	159	23	:	:	PUNCT
cuesj-1365	159	24	discharge	discharge	VERB
cuesj-1365	159	25	and	and	CCONJ
cuesj-1365	159	26	relative	relative	ADJ
cuesj-1365	159	27	energy	energy	NOUN
cuesj-1365	159	28	dissipation	dissipation	NOUN
cuesj-1365	159	29	relations	relation	NOUN
cuesj-1365	159	30	for	for	ADP
cuesj-1365	159	31	40	40	NUM
cuesj-1365	159	32	steps	step	NOUN
