id	sid	tid	token	lemma	pos
cet-7000	1	1	format	format	NOUN
cet-7000	1	2	and	and	CCONJ
cet-7000	1	3	type	type	NOUN
cet-7000	1	4	fonts	font	NOUN
cet-7000	1	5	cchheemmiiccaall	cchheemmiiccaall	NOUN
cet-7000	1	6	eennggiinneeeerriinngg	eennggiinneeeerriinngg	VERB
cet-7000	1	7	ttrraannssaaccttiioonnss	ttrraannssaaccttiioonns	NOUN
cet-7000	1	8	vol	vol	NOUN
cet-7000	1	9	.	.	PROPN
cet-7000	1	10	29	29	NUM
cet-7000	1	11	,	,	PUNCT
cet-7000	1	12	2012	2012	NUM
cet-7000	1	13	a	a	DET
cet-7000	1	14	publication	publication	NOUN
cet-7000	1	15	of	of	ADP
cet-7000	1	16	the	the	DET
cet-7000	1	17	italian	italian	ADJ
cet-7000	1	18	association	association	NOUN
cet-7000	1	19	of	of	ADP
cet-7000	1	20	chemical	chemical	PROPN
cet-7000	1	21	engineering	engineering	NOUN
cet-7000	1	22	online	online	ADV
cet-7000	1	23	at	at	ADP
cet-7000	1	24	:	:	PUNCT
cet-7000	1	25	www.aidic.it/cet	www.aidic.it/cet	PROPN
cet-7000	1	26	guest	guest	NOUN
cet-7000	1	27	editors	editor	NOUN
cet-7000	1	28	:	:	PUNCT
cet-7000	1	29	petar	petar	PROPN
cet-7000	1	30	sabev	sabev	PROPN
cet-7000	1	31	varbanov	varbanov	PROPN
cet-7000	1	32	,	,	PUNCT
cet-7000	1	33	hon	hon	PROPN
cet-7000	1	34	loong	loong	PROPN
cet-7000	1	35	lam	lam	PROPN
cet-7000	1	36	,	,	PUNCT
cet-7000	1	37	jiří	jiří	PROPN
cet-7000	1	38	jaromír	jaromír	PROPN
cet-7000	1	39	klemeš	klemeš	PROPN
cet-7000	1	40	copyright	copyright	NOUN
cet-7000	1	41	©	©	PROPN
cet-7000	1	42	2012	2012	NUM
cet-7000	1	43	,	,	PUNCT
cet-7000	1	44	aidic	aidic	ADJ
cet-7000	1	45	servizi	servizi	PROPN
cet-7000	1	46	s.r.l	s.r.l	NOUN
cet-7000	1	47	.	.	PUNCT
cet-7000	1	48	,	,	PUNCT
cet-7000	1	49	isbn	isbn	PROPN
cet-7000	1	50	978	978	NUM
cet-7000	1	51	-	-	SYM
cet-7000	1	52	88	88	NUM
cet-7000	1	53	-	-	PUNCT
cet-7000	1	54	95608	95608	NUM
cet-7000	1	55	-	-	PUNCT
cet-7000	1	56	20	20	NUM
cet-7000	1	57	-	-	SYM
cet-7000	1	58	4	4	NUM
cet-7000	1	59	;	;	PUNCT
cet-7000	1	60	issn	issn	PROPN
cet-7000	1	61	1974	1974	NUM
cet-7000	1	62	-	-	SYM
cet-7000	1	63	9791	9791	NUM
cet-7000	1	64	doi	doi	NOUN
cet-7000	1	65	:	:	PUNCT
cet-7000	1	66	10.3303	10.3303	NUM
cet-7000	1	67	/	/	SYM
cet-7000	1	68	cet1229004	cet1229004	NOUN
cet-7000	1	69	please	please	INTJ
cet-7000	1	70	cite	cite	VERB
cet-7000	1	71	this	this	DET
cet-7000	1	72	article	article	NOUN
cet-7000	1	73	as	as	ADP
cet-7000	1	74	:	:	PUNCT
cet-7000	1	75	tahouni	tahouni	PROPN
cet-7000	1	76	n.	n.	PROPN
cet-7000	1	77	,	,	PUNCT
cet-7000	1	78	jabbari	jabbari	PROPN
cet-7000	1	79	b.	b.	PROPN
cet-7000	1	80	and	and	CCONJ
cet-7000	1	81	panjeshahi	panjeshahi	PROPN
cet-7000	1	82	m.	m.	PROPN
cet-7000	1	83	h.	h.	PROPN
cet-7000	1	84	,	,	PUNCT
cet-7000	1	85	(	(	PUNCT
cet-7000	1	86	2012	2012	NUM
cet-7000	1	87	)	)	PUNCT
cet-7000	1	88	,	,	PUNCT
cet-7000	1	89	optimal	optimal	ADJ
cet-7000	1	90	design	design	NOUN
cet-7000	1	91	of	of	ADP
cet-7000	1	92	a	a	DET
cet-7000	1	93	cogeneration	cogeneration	NOUN
cet-7000	1	94	system	system	NOUN
cet-7000	1	95	in	in	ADP
cet-7000	1	96	a	a	DET
cet-7000	1	97	kraft	kraft	NOUN
cet-7000	1	98	process	process	NOUN
cet-7000	1	99	using	use	VERB
cet-7000	1	100	genetic	genetic	ADJ
cet-7000	1	101	algorithm	algorithm	NOUN
cet-7000	1	102	,	,	PUNCT
cet-7000	1	103	chemical	chemical	NOUN
cet-7000	1	104	engineering	engineering	NOUN
cet-7000	1	105	transactions	transaction	NOUN
cet-7000	1	106	,	,	PUNCT
cet-7000	1	107	29	29	NUM
cet-7000	1	108	,	,	PUNCT
cet-7000	1	109	19	19	NUM
cet-7000	1	110	-	-	SYM
cet-7000	1	111	24	24	NUM
cet-7000	1	112	19	19	NUM
cet-7000	1	113	optimal	optimal	ADJ
cet-7000	1	114	design	design	NOUN
cet-7000	1	115	of	of	ADP
cet-7000	1	116	a	a	DET
cet-7000	1	117	cogeneration	cogeneration	NOUN
cet-7000	1	118	system	system	NOUN
cet-7000	1	119	in	in	ADP
cet-7000	1	120	a	a	DET
cet-7000	1	121	kraft	kraft	NOUN
cet-7000	1	122	process	process	NOUN
cet-7000	1	123	using	use	VERB
cet-7000	1	124	genetic	genetic	ADJ
cet-7000	1	125	algorithm	algorithm	NOUN
cet-7000	1	126	nassim	nassim	PROPN
cet-7000	1	127	tahouni	tahouni	PROPN
cet-7000	1	128	*	*	PROPN
cet-7000	1	129	,	,	PUNCT
cet-7000	1	130	b.	b.	PROPN
cet-7000	1	131	jabbari	jabbari	PROPN
cet-7000	1	132	,	,	PUNCT
cet-7000	1	133	m.	m.	NOUN
cet-7000	1	134	hassan	hassan	PROPN
cet-7000	1	135	panjeshahi	panjeshahi	PROPN
cet-7000	1	136	school	school	NOUN
cet-7000	1	137	of	of	ADP
cet-7000	1	138	chemical	chemical	PROPN
cet-7000	1	139	engineering	engineering	NOUN
cet-7000	1	140	,	,	PUNCT
cet-7000	1	141	college	college	NOUN
cet-7000	1	142	of	of	ADP
cet-7000	1	143	engineering	engineering	NOUN
cet-7000	1	144	,	,	PUNCT
cet-7000	1	145	university	university	PROPN
cet-7000	1	146	of	of	ADP
cet-7000	1	147	tehran	tehran	PROPN
cet-7000	1	148	,	,	PUNCT
cet-7000	1	149	iran	iran	PROPN
cet-7000	1	150	ntahuni@ut.ac.ir	ntahuni@ut.ac.ir	ADJ
cet-7000	1	151	cogeneration	cogeneration	NOUN
cet-7000	1	152	is	be	AUX
cet-7000	1	153	one	one	NUM
cet-7000	1	154	of	of	ADP
cet-7000	1	155	the	the	DET
cet-7000	1	156	best	good	ADJ
cet-7000	1	157	methods	method	NOUN
cet-7000	1	158	for	for	ADP
cet-7000	1	159	energy	energy	NOUN
cet-7000	1	160	saving	saving	NOUN
cet-7000	1	161	which	which	PRON
cet-7000	1	162	makes	make	VERB
cet-7000	1	163	a	a	DET
cet-7000	1	164	better	well	ADJ
cet-7000	1	165	use	use	NOUN
cet-7000	1	166	of	of	ADP
cet-7000	1	167	fuels	fuel	NOUN
cet-7000	1	168	by	by	ADP
cet-7000	1	169	using	use	VERB
cet-7000	1	170	recovered	recover	VERB
cet-7000	1	171	heat	heat	NOUN
cet-7000	1	172	and	and	CCONJ
cet-7000	1	173	producing	produce	VERB
cet-7000	1	174	heat	heat	NOUN
cet-7000	1	175	and	and	CCONJ
cet-7000	1	176	power	power	NOUN
cet-7000	1	177	simultaneously	simultaneously	ADV
cet-7000	1	178	.	.	PUNCT
cet-7000	2	1	in	in	ADP
cet-7000	2	2	this	this	DET
cet-7000	2	3	study	study	NOUN
cet-7000	2	4	,	,	PUNCT
cet-7000	2	5	the	the	DET
cet-7000	2	6	implementation	implementation	NOUN
cet-7000	2	7	of	of	ADP
cet-7000	2	8	a	a	DET
cet-7000	2	9	cogeneration	cogeneration	NOUN
cet-7000	2	10	system	system	NOUN
cet-7000	2	11	(	(	PUNCT
cet-7000	2	12	chp	chp	NOUN
cet-7000	2	13	)	)	PUNCT
cet-7000	2	14	integrated	integrate	VERB
cet-7000	2	15	with	with	ADP
cet-7000	2	16	an	an	DET
cet-7000	2	17	industrial	industrial	ADJ
cet-7000	2	18	pulp	pulp	NOUN
cet-7000	2	19	and	and	CCONJ
cet-7000	2	20	paper	paper	NOUN
cet-7000	2	21	mill	mill	NOUN
cet-7000	2	22	is	be	AUX
cet-7000	2	23	studied	study	VERB
cet-7000	2	24	.	.	PUNCT
cet-7000	3	1	the	the	DET
cet-7000	3	2	cogeneration	cogeneration	NOUN
cet-7000	3	3	system	system	NOUN
cet-7000	3	4	consists	consist	VERB
cet-7000	3	5	of	of	ADP
cet-7000	3	6	an	an	DET
cet-7000	3	7	air	air	NOUN
cet-7000	3	8	compressor	compressor	NOUN
cet-7000	3	9	,	,	PUNCT
cet-7000	3	10	a	a	DET
cet-7000	3	11	combustion	combustion	NOUN
cet-7000	3	12	chamber	chamber	NOUN
cet-7000	3	13	,	,	PUNCT
cet-7000	3	14	a	a	DET
cet-7000	3	15	gas	gas	NOUN
cet-7000	3	16	turbine	turbine	NOUN
cet-7000	3	17	and	and	CCONJ
cet-7000	3	18	a	a	DET
cet-7000	3	19	single	single	ADJ
cet-7000	3	20	pressure	pressure	NOUN
cet-7000	3	21	heat	heat	NOUN
cet-7000	3	22	recovery	recovery	NOUN
cet-7000	3	23	steam	steam	NOUN
cet-7000	3	24	generator	generator	NOUN
cet-7000	3	25	(	(	PUNCT
cet-7000	3	26	hrsg	hrsg	NOUN
cet-7000	3	27	)	)	PUNCT
cet-7000	3	28	with	with	ADP
cet-7000	3	29	supplementary	supplementary	ADJ
cet-7000	3	30	firing	firing	NOUN
cet-7000	3	31	which	which	PRON
cet-7000	3	32	are	be	AUX
cet-7000	3	33	integrated	integrate	VERB
cet-7000	3	34	with	with	ADP
cet-7000	3	35	a	a	DET
cet-7000	3	36	back	back	ADJ
cet-7000	3	37	-	-	PUNCT
cet-7000	3	38	pressure	pressure	NOUN
cet-7000	3	39	steam	steam	NOUN
cet-7000	3	40	turbine	turbine	NOUN
cet-7000	3	41	available	available	ADJ
cet-7000	3	42	in	in	ADP
cet-7000	3	43	the	the	DET
cet-7000	3	44	mill	mill	NOUN
cet-7000	3	45	.	.	PUNCT
cet-7000	4	1	this	this	DET
cet-7000	4	2	system	system	NOUN
cet-7000	4	3	is	be	AUX
cet-7000	4	4	designed	design	VERB
cet-7000	4	5	for	for	ADP
cet-7000	4	6	producing	produce	VERB
cet-7000	4	7	35	35	NUM
cet-7000	4	8	mw	mw	NOUN
cet-7000	4	9	of	of	ADP
cet-7000	4	10	power	power	NOUN
cet-7000	4	11	required	require	VERB
cet-7000	4	12	in	in	ADP
cet-7000	4	13	the	the	DET
cet-7000	4	14	mill	mill	NOUN
cet-7000	4	15	and	and	CCONJ
cet-7000	4	16	192	192	NUM
cet-7000	4	17	t	t	PROPN
cet-7000	4	18	/	/	SYM
cet-7000	4	19	h	h	NOUN
cet-7000	4	20	of	of	ADP
cet-7000	4	21	superheated	superheated	ADJ
cet-7000	4	22	steam	steam	NOUN
cet-7000	4	23	at	at	ADP
cet-7000	4	24	61	61	NUM
cet-7000	4	25	bar	bar	NOUN
cet-7000	4	26	required	require	VERB
cet-7000	4	27	for	for	ADP
cet-7000	4	28	driving	drive	VERB
cet-7000	4	29	the	the	DET
cet-7000	4	30	steam	steam	NOUN
cet-7000	4	31	turbine	turbine	NOUN
cet-7000	4	32	.	.	PUNCT
cet-7000	5	1	aspen	aspen	PROPN
cet-7000	5	2	plus	plus	CCONJ
cet-7000	5	3	software	software	NOUN
cet-7000	5	4	is	be	AUX
cet-7000	5	5	used	use	VERB
cet-7000	5	6	to	to	PART
cet-7000	5	7	simulate	simulate	VERB
cet-7000	5	8	the	the	DET
cet-7000	5	9	proposed	propose	VERB
cet-7000	5	10	chp	chp	NOUN
cet-7000	5	11	system	system	NOUN
cet-7000	5	12	.	.	PUNCT
cet-7000	6	1	afterwards	afterwards	ADV
cet-7000	6	2	,	,	PUNCT
cet-7000	6	3	genetic	genetic	ADJ
cet-7000	6	4	algorithm	algorithm	NOUN
cet-7000	6	5	(	(	PUNCT
cet-7000	6	6	ga	ga	NOUN
cet-7000	6	7	)	)	PUNCT
cet-7000	6	8	is	be	AUX
cet-7000	6	9	used	use	VERB
cet-7000	6	10	for	for	ADP
cet-7000	6	11	optimization	optimization	NOUN
cet-7000	6	12	of	of	ADP
cet-7000	6	13	this	this	DET
cet-7000	6	14	cycle	cycle	NOUN
cet-7000	6	15	using	use	VERB
cet-7000	6	16	both	both	CCONJ
cet-7000	6	17	thermodynamic	thermodynamic	ADJ
cet-7000	6	18	and	and	CCONJ
cet-7000	6	19	thermo	thermo	NOUN
cet-7000	6	20	-	-	PUNCT
cet-7000	6	21	economic	economic	ADJ
cet-7000	6	22	models	model	NOUN
cet-7000	6	23	.	.	PUNCT
cet-7000	7	1	two	two	NUM
cet-7000	7	2	objective	objective	ADJ
cet-7000	7	3	functions	function	NOUN
cet-7000	7	4	are	be	AUX
cet-7000	7	5	considered	consider	VERB
cet-7000	7	6	which	which	PRON
cet-7000	7	7	are	be	AUX
cet-7000	7	8	total	total	ADJ
cet-7000	7	9	annual	annual	ADJ
cet-7000	7	10	cost	cost	NOUN
cet-7000	7	11	(	(	PUNCT
cet-7000	7	12	tac	tac	NOUN
cet-7000	7	13	)	)	PUNCT
cet-7000	7	14	of	of	ADP
cet-7000	7	15	the	the	DET
cet-7000	7	16	cogeneration	cogeneration	NOUN
cet-7000	7	17	system	system	NOUN
cet-7000	7	18	to	to	PART
cet-7000	7	19	be	be	AUX
cet-7000	7	20	minimized	minimize	VERB
cet-7000	7	21	and	and	CCONJ
cet-7000	7	22	exergy	exergy	NOUN
cet-7000	7	23	efficiency	efficiency	NOUN
cet-7000	7	24	of	of	ADP
cet-7000	7	25	this	this	DET
cet-7000	7	26	system	system	NOUN
cet-7000	7	27	to	to	PART
cet-7000	7	28	be	be	AUX
cet-7000	7	29	maximized	maximize	VERB
cet-7000	7	30	and	and	CCONJ
cet-7000	7	31	five	five	NUM
cet-7000	7	32	decision	decision	NOUN
cet-7000	7	33	variables	variable	NOUN
cet-7000	7	34	are	be	AUX
cet-7000	7	35	considered	consider	VERB
cet-7000	7	36	in	in	ADP
cet-7000	7	37	the	the	DET
cet-7000	7	38	optimization	optimization	NOUN
cet-7000	7	39	procedure	procedure	NOUN
cet-7000	7	40	.	.	PUNCT
cet-7000	8	1	by	by	ADP
cet-7000	8	2	applying	apply	VERB
cet-7000	8	3	the	the	DET
cet-7000	8	4	proposed	propose	VERB
cet-7000	8	5	chp	chp	NOUN
cet-7000	8	6	system	system	NOUN
cet-7000	8	7	both	both	CCONJ
cet-7000	8	8	power	power	NOUN
cet-7000	8	9	and	and	CCONJ
cet-7000	8	10	heating	heating	NOUN
cet-7000	8	11	requirements	requirement	NOUN
cet-7000	8	12	of	of	ADP
cet-7000	8	13	the	the	DET
cet-7000	8	14	pulp	pulp	NOUN
cet-7000	8	15	and	and	CCONJ
cet-7000	8	16	paper	paper	NOUN
cet-7000	8	17	mill	mill	NOUN
cet-7000	8	18	can	can	AUX
cet-7000	8	19	be	be	AUX
cet-7000	8	20	supplied	supply	VERB
cet-7000	8	21	with	with	ADP
cet-7000	8	22	a	a	DET
cet-7000	8	23	payback	payback	NOUN
cet-7000	8	24	of	of	ADP
cet-7000	8	25	1.1	1.1	NUM
cet-7000	8	26	year	year	NOUN
cet-7000	8	27	.	.	PUNCT
cet-7000	9	1	also	also	ADV
cet-7000	9	2	,	,	PUNCT
cet-7000	9	3	it	it	PRON
cet-7000	9	4	is	be	AUX
cet-7000	9	5	shown	show	VERB
cet-7000	9	6	that	that	SCONJ
cet-7000	9	7	by	by	ADP
cet-7000	9	8	applying	apply	VERB
cet-7000	9	9	ga	ga	NOUN
cet-7000	9	10	method	method	NOUN
cet-7000	9	11	,	,	PUNCT
cet-7000	9	12	tac	tac	PROPN
cet-7000	9	13	of	of	ADP
cet-7000	9	14	the	the	DET
cet-7000	9	15	chp	chp	NOUN
cet-7000	9	16	system	system	NOUN
cet-7000	9	17	is	be	AUX
cet-7000	9	18	improved	improve	VERB
cet-7000	9	19	by	by	ADP
cet-7000	9	20	18.5	18.5	NUM
cet-7000	9	21	%	%	NOUN
cet-7000	9	22	compared	compare	VERB
cet-7000	9	23	to	to	ADP
cet-7000	9	24	one	one	NUM
cet-7000	9	25	resulted	result	VERB
cet-7000	9	26	from	from	ADP
cet-7000	9	27	general	general	ADJ
cet-7000	9	28	simulation	simulation	NOUN
cet-7000	9	29	.	.	PUNCT
cet-7000	10	1	1	1	X
cet-7000	10	2	.	.	X
cet-7000	10	3	case	case	NOUN
cet-7000	10	4	study	study	NOUN
cet-7000	10	5	–	–	PUNCT
cet-7000	10	6	kraft	kraft	NOUN
cet-7000	10	7	process	process	NOUN
cet-7000	10	8	the	the	DET
cet-7000	10	9	pulp	pulp	NOUN
cet-7000	10	10	and	and	CCONJ
cet-7000	10	11	paper	paper	NOUN
cet-7000	10	12	industry	industry	NOUN
cet-7000	10	13	is	be	AUX
cet-7000	10	14	a	a	DET
cet-7000	10	15	very	very	ADV
cet-7000	10	16	large	large	ADJ
cet-7000	10	17	energy	energy	NOUN
cet-7000	10	18	consumer	consumer	NOUN
cet-7000	10	19	industry	industry	NOUN
cet-7000	10	20	,	,	PUNCT
cet-7000	10	21	in	in	ADP
cet-7000	10	22	the	the	DET
cet-7000	10	23	form	form	NOUN
cet-7000	10	24	of	of	ADP
cet-7000	10	25	electricity	electricity	NOUN
cet-7000	10	26	and	and	CCONJ
cet-7000	10	27	heat	heat	NOUN
cet-7000	10	28	for	for	ADP
cet-7000	10	29	pulp	pulp	NOUN
cet-7000	10	30	drying	drying	NOUN
cet-7000	10	31	,	,	PUNCT
cet-7000	10	32	liquor	liquor	NOUN
cet-7000	10	33	evaporation	evaporation	NOUN
cet-7000	10	34	and	and	CCONJ
cet-7000	10	35	other	other	ADJ
cet-7000	10	36	operations	operation	NOUN
cet-7000	10	37	which	which	PRON
cet-7000	10	38	represent	represent	VERB
cet-7000	10	39	a	a	DET
cet-7000	10	40	high	high	ADJ
cet-7000	10	41	potential	potential	NOUN
cet-7000	10	42	for	for	ADP
cet-7000	10	43	cogeneration	cogeneration	NOUN
cet-7000	10	44	(	(	PUNCT
cet-7000	10	45	mostajeran	mostajeran	NOUN
cet-7000	10	46	-	-	PUNCT
cet-7000	10	47	goortani	goortani	NOUN
cet-7000	10	48	et	et	PROPN
cet-7000	10	49	al	al	PROPN
cet-7000	10	50	.	.	PROPN
cet-7000	10	51	,	,	PUNCT
cet-7000	10	52	2010	2010	NUM
cet-7000	10	53	)	)	PUNCT
cet-7000	10	54	.	.	PUNCT
cet-7000	11	1	the	the	DET
cet-7000	11	2	kraft	kraft	NOUN
cet-7000	11	3	process	process	NOUN
cet-7000	11	4	is	be	AUX
cet-7000	11	5	a	a	DET
cet-7000	11	6	chemical	chemical	NOUN
cet-7000	11	7	process	process	NOUN
cet-7000	11	8	in	in	ADP
cet-7000	11	9	which	which	PRON
cet-7000	11	10	the	the	DET
cet-7000	11	11	paper	paper	NOUN
cet-7000	11	12	pulp	pulp	NOUN
cet-7000	11	13	is	be	AUX
cet-7000	11	14	produced	produce	VERB
cet-7000	11	15	by	by	ADP
cet-7000	11	16	wood	wood	NOUN
cet-7000	11	17	chips	chip	NOUN
cet-7000	11	18	.	.	PUNCT
cet-7000	12	1	paper	paper	NOUN
cet-7000	12	2	pulp	pulp	NOUN
cet-7000	12	3	is	be	AUX
cet-7000	12	4	an	an	DET
cet-7000	12	5	important	important	ADJ
cet-7000	12	6	source	source	NOUN
cet-7000	12	7	for	for	ADP
cet-7000	12	8	producing	produce	VERB
cet-7000	12	9	many	many	ADJ
cet-7000	12	10	kinds	kind	NOUN
cet-7000	12	11	of	of	ADP
cet-7000	12	12	paper	paper	NOUN
cet-7000	12	13	products	product	NOUN
cet-7000	12	14	.	.	PUNCT
cet-7000	13	1	in	in	ADP
cet-7000	13	2	this	this	DET
cet-7000	13	3	work	work	NOUN
cet-7000	13	4	we	we	PRON
cet-7000	13	5	consider	consider	VERB
cet-7000	13	6	an	an	DET
cet-7000	13	7	iranian	iranian	ADJ
cet-7000	13	8	pulp	pulp	NOUN
cet-7000	13	9	and	and	CCONJ
cet-7000	13	10	paper	paper	NOUN
cet-7000	13	11	mill	mill	NOUN
cet-7000	13	12	as	as	ADP
cet-7000	13	13	case	case	NOUN
cet-7000	13	14	study	study	NOUN
cet-7000	13	15	.	.	PUNCT
cet-7000	14	1	the	the	DET
cet-7000	14	2	mill	mill	NOUN
cet-7000	14	3	requires	require	VERB
cet-7000	14	4	155	155	NUM
cet-7000	14	5	t	t	PROPN
cet-7000	14	6	/	/	SYM
cet-7000	14	7	h	h	NOUN
cet-7000	14	8	steam	steam	NOUN
cet-7000	14	9	at	at	ADP
cet-7000	14	10	12	12	NUM
cet-7000	14	11	bar	bar	NOUN
cet-7000	14	12	for	for	ADP
cet-7000	14	13	process	process	NOUN
cet-7000	14	14	applications	application	NOUN
cet-7000	14	15	and	and	CCONJ
cet-7000	14	16	35	35	NUM
cet-7000	14	17	mw	mw	NOUN
cet-7000	14	18	power	power	NOUN
cet-7000	14	19	for	for	ADP
cet-7000	14	20	whole	whole	NOUN
cet-7000	14	21	of	of	ADP
cet-7000	14	22	the	the	DET
cet-7000	14	23	plant	plant	NOUN
cet-7000	14	24	.	.	PUNCT
cet-7000	15	1	1.1	1.1	NUM
cet-7000	15	2	cogeneration	cogeneration	NOUN
cet-7000	15	3	system	system	NOUN
cet-7000	15	4	–	–	PUNCT
cet-7000	15	5	scheme	scheme	NOUN
cet-7000	15	6	proposal	proposal	NOUN
cet-7000	15	7	in	in	ADP
cet-7000	15	8	existing	exist	VERB
cet-7000	15	9	process	process	NOUN
cet-7000	15	10	,	,	PUNCT
cet-7000	15	11	there	there	PRON
cet-7000	15	12	is	be	VERB
cet-7000	15	13	a	a	DET
cet-7000	15	14	back	back	ADJ
cet-7000	15	15	pressure	pressure	NOUN
cet-7000	15	16	steam	steam	NOUN
cet-7000	15	17	turbine	turbine	NOUN
cet-7000	15	18	(	(	PUNCT
cet-7000	15	19	22.5	22.5	NUM
cet-7000	15	20	mw	mw	NOUN
cet-7000	15	21	)	)	PUNCT
cet-7000	15	22	,	,	PUNCT
cet-7000	15	23	which	which	PRON
cet-7000	15	24	requires	require	VERB
cet-7000	15	25	superheated	superheate	VERB
cet-7000	15	26	steam	steam	NOUN
cet-7000	15	27	at	at	ADP
cet-7000	15	28	443	443	NUM
cet-7000	15	29	°	°	NOUN
cet-7000	15	30	c	c	NOUN
cet-7000	15	31	and	and	CCONJ
cet-7000	15	32	61	61	NUM
cet-7000	15	33	bar	bar	NOUN
cet-7000	15	34	to	to	PART
cet-7000	15	35	work	work	VERB
cet-7000	15	36	.	.	PUNCT
cet-7000	16	1	however	however	ADV
cet-7000	16	2	,	,	PUNCT
cet-7000	16	3	there	there	PRON
cet-7000	16	4	is	be	VERB
cet-7000	16	5	no	no	DET
cet-7000	16	6	boiler	boiler	NOUN
cet-7000	16	7	to	to	PART
cet-7000	16	8	produce	produce	VERB
cet-7000	16	9	steam	steam	NOUN
cet-7000	16	10	with	with	ADP
cet-7000	16	11	this	this	DET
cet-7000	16	12	condition	condition	NOUN
cet-7000	16	13	.	.	PUNCT
cet-7000	17	1	in	in	ADP
cet-7000	17	2	the	the	DET
cet-7000	17	3	other	other	ADJ
cet-7000	17	4	hand	hand	NOUN
cet-7000	17	5	,	,	PUNCT
cet-7000	17	6	the	the	DET
cet-7000	17	7	power	power	NOUN
cet-7000	17	8	generated	generate	VERB
cet-7000	17	9	by	by	ADP
cet-7000	17	10	steam	steam	NOUN
cet-7000	17	11	turbine	turbine	NOUN
cet-7000	17	12	is	be	AUX
cet-7000	17	13	not	not	PART
cet-7000	17	14	enough	enough	ADJ
cet-7000	17	15	for	for	ADP
cet-7000	17	16	the	the	DET
cet-7000	17	17	plant	plant	NOUN
cet-7000	17	18	and	and	CCONJ
cet-7000	17	19	the	the	DET
cet-7000	17	20	rest	rest	NOUN
cet-7000	17	21	must	must	AUX
cet-7000	17	22	be	be	AUX
cet-7000	17	23	supplied	supply	VERB
cet-7000	17	24	by	by	ADP
cet-7000	17	25	the	the	DET
cet-7000	17	26	grid	grid	NOUN
cet-7000	17	27	.	.	PUNCT
cet-7000	18	1	therefore	therefore	ADV
cet-7000	18	2	,	,	PUNCT
cet-7000	18	3	it	it	PRON
cet-7000	18	4	is	be	AUX
cet-7000	18	5	reasonable	reasonable	ADJ
cet-7000	18	6	to	to	PART
cet-7000	18	7	implement	implement	VERB
cet-7000	18	8	a	a	DET
cet-7000	18	9	gas	gas	NOUN
cet-7000	18	10	turbine	turbine	NOUN
cet-7000	18	11	cogeneration	cogeneration	NOUN
cet-7000	18	12	system	system	NOUN
cet-7000	18	13	to	to	PART
cet-7000	18	14	supply	supply	VERB
cet-7000	18	15	the	the	DET
cet-7000	18	16	rest	rest	NOUN
cet-7000	18	17	of	of	ADP
cet-7000	18	18	power	power	NOUN
cet-7000	18	19	demand	demand	NOUN
cet-7000	18	20	and	and	CCONJ
cet-7000	18	21	produce	produce	VERB
cet-7000	18	22	required	require	VERB
cet-7000	18	23	steam	steam	NOUN
cet-7000	18	24	for	for	ADP
cet-7000	18	25	the	the	DET
cet-7000	18	26	steam	steam	NOUN
cet-7000	18	27	turbine	turbine	NOUN
cet-7000	18	28	.	.	PUNCT
cet-7000	19	1	the	the	DET
cet-7000	19	2	gas	gas	NOUN
cet-7000	19	3	turbine	turbine	NOUN
cet-7000	19	4	is	be	AUX
cet-7000	19	5	driven	drive	VERB
cet-7000	19	6	by	by	ADP
cet-7000	19	7	natural	natural	ADJ
cet-7000	19	8	gas	gas	NOUN
cet-7000	19	9	.	.	PUNCT
cet-7000	20	1	the	the	DET
cet-7000	20	2	hot	hot	ADJ
cet-7000	20	3	exhaust	exhaust	NOUN
cet-7000	20	4	gases	gas	NOUN
cet-7000	20	5	from	from	ADP
cet-7000	20	6	the	the	DET
cet-7000	20	7	turbine	turbine	NOUN
cet-7000	20	8	enters	enter	VERB
cet-7000	20	9	to	to	ADP
cet-7000	20	10	a	a	DET
cet-7000	20	11	hrsg	hrsg	NOUN
cet-7000	20	12	system	system	NOUN
cet-7000	20	13	and	and	CCONJ
cet-7000	20	14	the	the	DET
cet-7000	20	15	output	output	NOUN
cet-7000	20	16	high	high	ADJ
cet-7000	20	17	pressure	pressure	NOUN
cet-7000	20	18	steam	steam	NOUN
cet-7000	20	19	derives	derive	VERB
cet-7000	20	20	the	the	DET
cet-7000	20	21	steam	steam	NOUN
cet-7000	20	22	turbine	turbine	NOUN
cet-7000	20	23	,	,	PUNCT
cet-7000	20	24	which	which	PRON
cet-7000	20	25	produces	produce	VERB
cet-7000	20	26	power	power	NOUN
cet-7000	20	27	and	and	CCONJ
cet-7000	20	28	delivers	deliver	VERB
cet-7000	20	29	steam	steam	NOUN
cet-7000	20	30	at	at	ADP
cet-7000	20	31	a	a	DET
cet-7000	20	32	lower	low	ADJ
cet-7000	20	33	pressure	pressure	NOUN
cet-7000	20	34	that	that	PRON
cet-7000	20	35	could	could	AUX
cet-7000	20	36	be	be	AUX
cet-7000	20	37	used	use	VERB
cet-7000	20	38	for	for	ADP
cet-7000	20	39	process	process	NOUN
cet-7000	20	40	applications	application	NOUN
cet-7000	20	41	.	.	PUNCT
cet-7000	21	1	the	the	DET
cet-7000	21	2	proposed	propose	VERB
cet-7000	21	3	chp	chp	NOUN
cet-7000	21	4	system	system	NOUN
cet-7000	21	5	is	be	AUX
cet-7000	21	6	shown	show	VERB
cet-7000	21	7	in	in	ADP
cet-7000	21	8	figure	figure	NOUN
cet-7000	21	9	1	1	NUM
cet-7000	21	10	.	.	SYM
cet-7000	21	11	20	20	NUM
cet-7000	21	12	figure	figure	NOUN
cet-7000	21	13	1	1	NUM
cet-7000	21	14	:	:	PUNCT
cet-7000	21	15	proposed	propose	VERB
cet-7000	21	16	chp	chp	NOUN
cet-7000	21	17	system	system	NOUN
cet-7000	21	18	1.2	1.2	NUM
cet-7000	21	19	simulation	simulation	NOUN
cet-7000	21	20	of	of	ADP
cet-7000	21	21	proposed	propose	VERB
cet-7000	21	22	cogeneration	cogeneration	NOUN
cet-7000	21	23	system	system	NOUN
cet-7000	21	24	in	in	ADP
cet-7000	21	25	this	this	DET
cet-7000	21	26	work	work	NOUN
cet-7000	21	27	,	,	PUNCT
cet-7000	21	28	a	a	DET
cet-7000	21	29	chp	chp	NOUN
cet-7000	21	30	cycle	cycle	NOUN
cet-7000	21	31	is	be	AUX
cet-7000	21	32	proposed	propose	VERB
cet-7000	21	33	to	to	PART
cet-7000	21	34	integrate	integrate	VERB
cet-7000	21	35	with	with	ADP
cet-7000	21	36	an	an	DET
cet-7000	21	37	existing	exist	VERB
cet-7000	21	38	back	back	ADJ
cet-7000	21	39	pressure	pressure	NOUN
cet-7000	21	40	steam	steam	NOUN
cet-7000	21	41	turbine	turbine	NOUN
cet-7000	21	42	.	.	PUNCT
cet-7000	22	1	the	the	DET
cet-7000	22	2	back	back	ADJ
cet-7000	22	3	pressure	pressure	NOUN
cet-7000	22	4	steam	steam	NOUN
cet-7000	22	5	turbine	turbine	NOUN
cet-7000	22	6	requires	require	VERB
cet-7000	22	7	192	192	NUM
cet-7000	22	8	t	t	PROPN
cet-7000	22	9	/	/	SYM
cet-7000	22	10	h	h	NOUN
cet-7000	22	11	of	of	ADP
cet-7000	22	12	superheated	superheated	ADJ
cet-7000	22	13	steam	steam	NOUN
cet-7000	22	14	at	at	ADP
cet-7000	22	15	443	443	NUM
cet-7000	22	16	°	°	NOUN
cet-7000	22	17	c	c	NOUN
cet-7000	22	18	and	and	CCONJ
cet-7000	22	19	61	61	NUM
cet-7000	22	20	bar	bar	NOUN
cet-7000	22	21	to	to	PART
cet-7000	22	22	work	work	VERB
cet-7000	22	23	.	.	PUNCT
cet-7000	23	1	hence	hence	ADV
cet-7000	23	2	,	,	PUNCT
cet-7000	23	3	by	by	ADP
cet-7000	23	4	applying	apply	VERB
cet-7000	23	5	the	the	DET
cet-7000	23	6	cogeneration	cogeneration	NOUN
cet-7000	23	7	system	system	NOUN
cet-7000	23	8	the	the	DET
cet-7000	23	9	required	required	ADJ
cet-7000	23	10	steam	steam	NOUN
cet-7000	23	11	could	could	AUX
cet-7000	23	12	be	be	AUX
cet-7000	23	13	produced	produce	VERB
cet-7000	23	14	and	and	CCONJ
cet-7000	23	15	the	the	DET
cet-7000	23	16	rest	rest	NOUN
cet-7000	23	17	of	of	ADP
cet-7000	23	18	power	power	NOUN
cet-7000	23	19	demand	demand	NOUN
cet-7000	23	20	could	could	AUX
cet-7000	23	21	be	be	AUX
cet-7000	23	22	supplied	supply	VERB
cet-7000	23	23	.	.	PUNCT
cet-7000	24	1	to	to	PART
cet-7000	24	2	simulate	simulate	VERB
cet-7000	24	3	the	the	DET
cet-7000	24	4	chp	chp	NOUN
cet-7000	24	5	cycle	cycle	NOUN
cet-7000	24	6	the	the	DET
cet-7000	24	7	aspen	aspen	PROPN
cet-7000	24	8	plus	plus	CCONJ
cet-7000	24	9	software	software	NOUN
cet-7000	24	10	is	be	AUX
cet-7000	24	11	used	use	VERB
cet-7000	24	12	.	.	PUNCT
cet-7000	25	1	262.8	262.8	NUM
cet-7000	25	2	t	t	NOUN
cet-7000	25	3	/	/	SYM
cet-7000	25	4	h	h	NOUN
cet-7000	25	5	of	of	ADP
cet-7000	25	6	air	air	NOUN
cet-7000	25	7	after	after	ADP
cet-7000	25	8	compression	compression	NOUN
cet-7000	25	9	in	in	ADP
cet-7000	25	10	the	the	DET
cet-7000	25	11	compressor	compressor	NOUN
cet-7000	25	12	with	with	ADP
cet-7000	25	13	4.45	4.45	NUM
cet-7000	25	14	t	t	PROPN
cet-7000	25	15	/	/	SYM
cet-7000	25	16	h	h	NOUN
cet-7000	25	17	natural	natural	ADJ
cet-7000	25	18	gas	gas	NOUN
cet-7000	25	19	ignites	ignite	VERB
cet-7000	25	20	in	in	ADP
cet-7000	25	21	the	the	DET
cet-7000	25	22	combustion	combustion	NOUN
cet-7000	25	23	chamber	chamber	NOUN
cet-7000	25	24	of	of	ADP
cet-7000	25	25	the	the	DET
cet-7000	25	26	gas	gas	NOUN
cet-7000	25	27	turbine	turbine	NOUN
cet-7000	25	28	.	.	PUNCT
cet-7000	26	1	the	the	DET
cet-7000	26	2	flue	flue	NOUN
cet-7000	26	3	gases	gas	NOUN
cet-7000	26	4	at	at	ADP
cet-7000	26	5	1071.3	1071.3	NUM
cet-7000	26	6	°	°	NOUN
cet-7000	26	7	c	c	NOUN
cet-7000	26	8	are	be	AUX
cet-7000	26	9	expanded	expand	VERB
cet-7000	26	10	to	to	ADP
cet-7000	26	11	582.6	582.6	NUM
cet-7000	26	12	°	°	NOUN
cet-7000	26	13	c	c	NOUN
cet-7000	26	14	and	and	CCONJ
cet-7000	26	15	1.1	1.1	NUM
cet-7000	26	16	bar	bar	NOUN
cet-7000	26	17	and	and	CCONJ
cet-7000	26	18	16.5	16.5	NUM
cet-7000	26	19	mw	mw	NOUN
cet-7000	26	20	of	of	ADP
cet-7000	26	21	electricity	electricity	NOUN
cet-7000	26	22	is	be	AUX
cet-7000	26	23	produced	produce	VERB
cet-7000	26	24	.	.	PUNCT
cet-7000	27	1	the	the	DET
cet-7000	27	2	hrsg	hrsg	NOUN
cet-7000	27	3	system	system	NOUN
cet-7000	27	4	which	which	PRON
cet-7000	27	5	is	be	AUX
cet-7000	27	6	considered	consider	VERB
cet-7000	27	7	to	to	PART
cet-7000	27	8	be	be	AUX
cet-7000	27	9	single	single	ADJ
cet-7000	27	10	pressure	pressure	NOUN
cet-7000	27	11	consists	consist	NOUN
cet-7000	27	12	of	of	ADP
cet-7000	27	13	an	an	DET
cet-7000	27	14	economizer	economizer	NOUN
cet-7000	27	15	,	,	PUNCT
cet-7000	27	16	an	an	DET
cet-7000	27	17	evaporator	evaporator	NOUN
cet-7000	27	18	and	and	CCONJ
cet-7000	27	19	a	a	DET
cet-7000	27	20	super	super	ADJ
cet-7000	27	21	-	-	ADJ
cet-7000	27	22	heater	heater	NOUN
cet-7000	27	23	equipped	equip	VERB
cet-7000	27	24	with	with	ADP
cet-7000	27	25	a	a	DET
cet-7000	27	26	duct	duct	NOUN
cet-7000	27	27	burner	burner	NOUN
cet-7000	27	28	for	for	ADP
cet-7000	27	29	supplementary	supplementary	ADJ
cet-7000	27	30	firing	firing	NOUN
cet-7000	27	31	.	.	PUNCT
cet-7000	28	1	flue	flue	NOUN
cet-7000	28	2	gas	gas	NOUN
cet-7000	28	3	from	from	ADP
cet-7000	28	4	gas	gas	NOUN
cet-7000	28	5	turbine	turbine	NOUN
cet-7000	28	6	plus	plus	CCONJ
cet-7000	28	7	9.86	9.86	NUM
cet-7000	28	8	t	t	PROPN
cet-7000	28	9	/	/	SYM
cet-7000	28	10	h	h	NOUN
cet-7000	28	11	natural	natural	ADJ
cet-7000	28	12	gas	gas	NOUN
cet-7000	28	13	,	,	PUNCT
cet-7000	28	14	in	in	ADP
cet-7000	28	15	the	the	DET
cet-7000	28	16	hrsg	hrsg	NOUN
cet-7000	28	17	system	system	NOUN
cet-7000	28	18	produce	produce	VERB
cet-7000	28	19	192	192	NUM
cet-7000	28	20	t	t	PROPN
cet-7000	28	21	/	/	SYM
cet-7000	28	22	h	h	NOUN
cet-7000	28	23	steam	steam	NOUN
cet-7000	28	24	at	at	ADP
cet-7000	28	25	443	443	NUM
cet-7000	28	26	°	°	NOUN
cet-7000	28	27	c	c	NOUN
cet-7000	28	28	and	and	CCONJ
cet-7000	28	29	61	61	NUM
cet-7000	28	30	bar	bar	NOUN
cet-7000	28	31	,	,	PUNCT
cet-7000	28	32	which	which	PRON
cet-7000	28	33	is	be	AUX
cet-7000	28	34	sent	send	VERB
cet-7000	28	35	to	to	ADP
cet-7000	28	36	the	the	DET
cet-7000	28	37	back	back	ADJ
cet-7000	28	38	pressure	pressure	NOUN
cet-7000	28	39	steam	steam	NOUN
cet-7000	28	40	turbine	turbine	NOUN
cet-7000	28	41	.	.	PUNCT
cet-7000	29	1	in	in	ADP
cet-7000	29	2	this	this	DET
cet-7000	29	3	turbine	turbine	NOUN
cet-7000	29	4	the	the	DET
cet-7000	29	5	high	high	ADJ
cet-7000	29	6	pressure	pressure	NOUN
cet-7000	29	7	steam	steam	NOUN
cet-7000	29	8	is	be	AUX
cet-7000	29	9	expanded	expand	VERB
cet-7000	29	10	to	to	ADP
cet-7000	29	11	12	12	NUM
cet-7000	29	12	bar	bar	NOUN
cet-7000	29	13	and	and	CCONJ
cet-7000	29	14	254.9	254.9	NUM
cet-7000	29	15	°	°	NOUN
cet-7000	29	16	c	c	NOUN
cet-7000	29	17	and	and	CCONJ
cet-7000	29	18	18.5	18.5	NUM
cet-7000	29	19	mw	mw	NOUN
cet-7000	29	20	of	of	ADP
cet-7000	29	21	electricity	electricity	NOUN
cet-7000	29	22	is	be	AUX
cet-7000	29	23	produced	produce	VERB
cet-7000	29	24	.	.	PUNCT
cet-7000	30	1	the	the	DET
cet-7000	30	2	192	192	NUM
cet-7000	30	3	t	t	PROPN
cet-7000	30	4	/	/	SYM
cet-7000	30	5	h	h	NOUN
cet-7000	30	6	produced	produce	VERB
cet-7000	30	7	steam	steam	NOUN
cet-7000	30	8	with	with	ADP
cet-7000	30	9	lower	low	ADJ
cet-7000	30	10	pressure	pressure	NOUN
cet-7000	30	11	supplies	supply	VERB
cet-7000	30	12	the	the	DET
cet-7000	30	13	steam	steam	NOUN
cet-7000	30	14	demand	demand	NOUN
cet-7000	30	15	of	of	ADP
cet-7000	30	16	the	the	DET
cet-7000	30	17	mill	mill	NOUN
cet-7000	30	18	(	(	PUNCT
cet-7000	30	19	155	155	NUM
cet-7000	30	20	t	t	NOUN
cet-7000	30	21	/	/	SYM
cet-7000	30	22	h	h	NOUN
cet-7000	30	23	)	)	PUNCT
cet-7000	30	24	and	and	CCONJ
cet-7000	30	25	the	the	DET
cet-7000	30	26	remainder	remainder	NOUN
cet-7000	30	27	can	can	AUX
cet-7000	30	28	be	be	AUX
cet-7000	30	29	sent	send	VERB
cet-7000	30	30	to	to	ADP
cet-7000	30	31	another	another	DET
cet-7000	30	32	condensate	condensate	ADJ
cet-7000	30	33	steam	steam	NOUN
cet-7000	30	34	turbine	turbine	NOUN
cet-7000	30	35	to	to	PART
cet-7000	30	36	produce	produce	VERB
cet-7000	30	37	power	power	NOUN
cet-7000	30	38	for	for	ADP
cet-7000	30	39	selling	sell	VERB
cet-7000	30	40	to	to	ADP
cet-7000	30	41	the	the	DET
cet-7000	30	42	grid	grid	NOUN
cet-7000	30	43	,	,	PUNCT
cet-7000	30	44	which	which	PRON
cet-7000	30	45	is	be	AUX
cet-7000	30	46	not	not	PART
cet-7000	30	47	considered	consider	VERB
cet-7000	30	48	in	in	ADP
cet-7000	30	49	this	this	DET
cet-7000	30	50	study	study	NOUN
cet-7000	30	51	.	.	PUNCT
cet-7000	31	1	simulation	simulation	NOUN
cet-7000	31	2	of	of	ADP
cet-7000	31	3	the	the	DET
cet-7000	31	4	cycle	cycle	NOUN
cet-7000	31	5	is	be	AUX
cet-7000	31	6	shown	show	VERB
cet-7000	31	7	in	in	ADP
cet-7000	31	8	figure	figure	NOUN
cet-7000	31	9	2	2	NUM
cet-7000	31	10	.	.	PUNCT
cet-7000	31	11	figure	figure	NOUN
cet-7000	31	12	2	2	NUM
cet-7000	31	13	:	:	PUNCT
cet-7000	31	14	simulation	simulation	NOUN
cet-7000	31	15	of	of	ADP
cet-7000	31	16	the	the	DET
cet-7000	31	17	chp	chp	NOUN
cet-7000	31	18	cycle	cycle	NOUN
cet-7000	31	19	21	21	NUM
cet-7000	31	20	2	2	NUM
cet-7000	31	21	.	.	PUNCT
cet-7000	31	22	optimization	optimization	NOUN
cet-7000	31	23	of	of	ADP
cet-7000	31	24	proposed	propose	VERB
cet-7000	31	25	cogeneration	cogeneration	NOUN
cet-7000	31	26	system	system	NOUN
cet-7000	31	27	the	the	DET
cet-7000	31	28	aim	aim	NOUN
cet-7000	31	29	of	of	ADP
cet-7000	31	30	energy	energy	NOUN
cet-7000	31	31	system	system	NOUN
cet-7000	31	32	optimization	optimization	NOUN
cet-7000	31	33	is	be	AUX
cet-7000	31	34	modifying	modify	VERB
cet-7000	31	35	the	the	DET
cet-7000	31	36	system	system	NOUN
cet-7000	31	37	design	design	NOUN
cet-7000	31	38	according	accord	VERB
cet-7000	31	39	to	to	ADP
cet-7000	31	40	one	one	NUM
cet-7000	31	41	or	or	CCONJ
cet-7000	31	42	more	more	ADV
cet-7000	31	43	defined	define	VERB
cet-7000	31	44	objectives	objective	NOUN
cet-7000	31	45	.	.	PUNCT
cet-7000	32	1	toffolo	toffolo	PROPN
cet-7000	32	2	et	et	PROPN
cet-7000	32	3	al	al	PROPN
cet-7000	32	4	.	.	PROPN
cet-7000	33	1	(	(	PUNCT
cet-7000	33	2	2002	2002	NUM
cet-7000	33	3	)	)	PUNCT
cet-7000	33	4	considered	consider	VERB
cet-7000	33	5	a	a	DET
cet-7000	33	6	multi	multi	ADJ
cet-7000	33	7	-	-	ADJ
cet-7000	33	8	objective	objective	ADJ
cet-7000	33	9	optimization	optimization	NOUN
cet-7000	33	10	with	with	ADP
cet-7000	33	11	energetic	energetic	ADJ
cet-7000	33	12	and	and	CCONJ
cet-7000	33	13	economic	economic	ADJ
cet-7000	33	14	objectives	objective	NOUN
cet-7000	33	15	in	in	ADP
cet-7000	33	16	a	a	DET
cet-7000	33	17	benchmark	benchmark	ADJ
cet-7000	33	18	cogeneration	cogeneration	NOUN
cet-7000	33	19	system	system	NOUN
cet-7000	33	20	using	use	VERB
cet-7000	33	21	evolutionary	evolutionary	ADJ
cet-7000	33	22	algorithms	algorithm	NOUN
cet-7000	33	23	.	.	PUNCT
cet-7000	34	1	here	here	ADV
cet-7000	34	2	,	,	PUNCT
cet-7000	34	3	the	the	DET
cet-7000	34	4	optimization	optimization	NOUN
cet-7000	34	5	of	of	ADP
cet-7000	34	6	proposed	propose	VERB
cet-7000	34	7	chp	chp	NOUN
cet-7000	34	8	system	system	NOUN
cet-7000	34	9	is	be	AUX
cet-7000	34	10	carried	carry	VERB
cet-7000	34	11	out	out	ADP
cet-7000	34	12	based	base	VERB
cet-7000	34	13	on	on	ADP
cet-7000	34	14	their	their	PRON
cet-7000	34	15	work	work	NOUN
cet-7000	34	16	.	.	PUNCT
cet-7000	35	1	as	as	SCONJ
cet-7000	35	2	it	it	PRON
cet-7000	35	3	described	describe	VERB
cet-7000	35	4	before	before	ADV
cet-7000	35	5	,	,	PUNCT
cet-7000	35	6	the	the	DET
cet-7000	35	7	proposed	propose	VERB
cet-7000	35	8	cogeneration	cogeneration	NOUN
cet-7000	35	9	cycle	cycle	NOUN
cet-7000	35	10	is	be	AUX
cet-7000	35	11	designed	design	VERB
cet-7000	35	12	to	to	PART
cet-7000	35	13	supply	supply	VERB
cet-7000	35	14	the	the	DET
cet-7000	35	15	whole	whole	NOUN
cet-7000	35	16	of	of	ADP
cet-7000	35	17	power	power	NOUN
cet-7000	35	18	demand	demand	NOUN
cet-7000	35	19	(	(	PUNCT
cet-7000	35	20	35	35	NUM
cet-7000	35	21	mw	mw	NOUN
cet-7000	35	22	)	)	PUNCT
cet-7000	35	23	and	and	CCONJ
cet-7000	35	24	the	the	DET
cet-7000	35	25	required	required	ADJ
cet-7000	35	26	steam	steam	NOUN
cet-7000	35	27	for	for	ADP
cet-7000	35	28	steam	steam	NOUN
cet-7000	35	29	turbine	turbine	NOUN
cet-7000	35	30	.	.	PUNCT
cet-7000	36	1	the	the	DET
cet-7000	36	2	aim	aim	NOUN
cet-7000	36	3	of	of	ADP
cet-7000	36	4	optimization	optimization	NOUN
cet-7000	36	5	step	step	NOUN
cet-7000	36	6	is	be	AUX
cet-7000	36	7	getting	get	VERB
cet-7000	36	8	a	a	DET
cet-7000	36	9	cogeneration	cogeneration	NOUN
cet-7000	36	10	cycle	cycle	NOUN
cet-7000	36	11	for	for	ADP
cet-7000	36	12	supplying	supply	VERB
cet-7000	36	13	energy	energy	NOUN
cet-7000	36	14	demands	demand	NOUN
cet-7000	36	15	with	with	ADP
cet-7000	36	16	minimum	minimum	ADJ
cet-7000	36	17	tac	tac	NOUN
cet-7000	36	18	and	and	CCONJ
cet-7000	36	19	maximum	maximum	ADJ
cet-7000	36	20	exergy	exergy	NOUN
cet-7000	36	21	efficiency	efficiency	NOUN
cet-7000	36	22	,	,	PUNCT
cet-7000	36	23	which	which	PRON
cet-7000	36	24	is	be	AUX
cet-7000	36	25	carried	carry	VERB
cet-7000	36	26	out	out	ADP
cet-7000	36	27	by	by	ADP
cet-7000	36	28	varying	vary	VERB
cet-7000	36	29	some	some	DET
cet-7000	36	30	effective	effective	ADJ
cet-7000	36	31	thermodynamic	thermodynamic	ADJ
cet-7000	36	32	variables	variable	NOUN
cet-7000	36	33	of	of	ADP
cet-7000	36	34	the	the	DET
cet-7000	36	35	cycle	cycle	NOUN
cet-7000	36	36	using	use	VERB
cet-7000	36	37	genetic	genetic	ADJ
cet-7000	36	38	algorithm	algorithm	NOUN
cet-7000	36	39	.	.	PUNCT
cet-7000	37	1	dependent	dependent	ADJ
cet-7000	37	2	parameters	parameter	NOUN
cet-7000	37	3	like	like	ADP
cet-7000	37	4	temperatures	temperature	NOUN
cet-7000	37	5	,	,	PUNCT
cet-7000	37	6	pressures	pressure	NOUN
cet-7000	37	7	and	and	CCONJ
cet-7000	37	8	mass	mass	NOUN
cet-7000	37	9	flow	flow	NOUN
cet-7000	37	10	rates	rate	NOUN
cet-7000	37	11	are	be	AUX
cet-7000	37	12	obtained	obtain	VERB
cet-7000	37	13	again	again	ADV
cet-7000	37	14	from	from	ADP
cet-7000	37	15	optimization	optimization	NOUN
cet-7000	37	16	.	.	PUNCT
cet-7000	38	1	2.1	2.1	NUM
cet-7000	38	2	thermodynamic	thermodynamic	ADJ
cet-7000	38	3	model	model	NOUN
cet-7000	38	4	according	accord	VERB
cet-7000	38	5	to	to	ADP
cet-7000	38	6	the	the	DET
cet-7000	38	7	simulation	simulation	NOUN
cet-7000	38	8	of	of	ADP
cet-7000	38	9	proposed	propose	VERB
cet-7000	38	10	cogeneration	cogeneration	NOUN
cet-7000	38	11	system	system	NOUN
cet-7000	38	12	,	,	PUNCT
cet-7000	38	13	following	follow	VERB
cet-7000	38	14	thermodynamic	thermodynamic	ADJ
cet-7000	38	15	equations	equation	NOUN
cet-7000	38	16	are	be	AUX
cet-7000	38	17	used	use	VERB
cet-7000	38	18	to	to	PART
cet-7000	38	19	model	model	VERB
cet-7000	38	20	the	the	DET
cet-7000	38	21	cycle	cycle	NOUN
cet-7000	38	22	.	.	PUNCT
cet-7000	39	1	the	the	DET
cet-7000	39	2	power	power	NOUN
cet-7000	39	3	produced	produce	VERB
cet-7000	39	4	by	by	ADP
cet-7000	39	5	steam	steam	NOUN
cet-7000	39	6	turbine	turbine	NOUN
cet-7000	39	7	resulted	result	VERB
cet-7000	39	8	from	from	ADP
cet-7000	39	9	simulation	simulation	NOUN
cet-7000	39	10	is	be	AUX
cet-7000	39	11	18.5	18.5	NUM
cet-7000	39	12	mw	mw	NOUN
cet-7000	39	13	and	and	CCONJ
cet-7000	39	14	considered	consider	VERB
cet-7000	39	15	to	to	PART
cet-7000	39	16	be	be	AUX
cet-7000	39	17	fixed	fix	VERB
cet-7000	39	18	during	during	ADP
cet-7000	39	19	optimization	optimization	NOUN
cet-7000	39	20	.	.	PUNCT
cet-7000	40	1	so	so	ADV
cet-7000	40	2	the	the	DET
cet-7000	40	3	net	net	ADJ
cet-7000	40	4	power	power	NOUN
cet-7000	40	5	of	of	ADP
cet-7000	40	6	gas	gas	NOUN
cet-7000	40	7	turbine	turbine	NOUN
cet-7000	40	8	cycle	cycle	NOUN
cet-7000	40	9	has	have	VERB
cet-7000	40	10	to	to	PART
cet-7000	40	11	be	be	AUX
cet-7000	40	12	16.5	16.5	NUM
cet-7000	40	13	mw	mw	NOUN
cet-7000	40	14	,	,	PUNCT
cet-7000	40	15	for	for	ADP
cet-7000	40	16	supplying	supply	VERB
cet-7000	40	17	the	the	DET
cet-7000	40	18	mill	mill	NOUN
cet-7000	40	19	power	power	NOUN
cet-7000	40	20	demand	demand	NOUN
cet-7000	40	21	.	.	PUNCT
cet-7000	41	1	some	some	DET
cet-7000	41	2	assumptions	assumption	NOUN
cet-7000	41	3	are	be	AUX
cet-7000	41	4	used	use	VERB
cet-7000	41	5	during	during	ADP
cet-7000	41	6	the	the	DET
cet-7000	41	7	optimization	optimization	NOUN
cet-7000	41	8	,	,	PUNCT
cet-7000	41	9	which	which	PRON
cet-7000	41	10	are	be	AUX
cet-7000	41	11	described	describe	VERB
cet-7000	41	12	below	below	ADP
cet-7000	41	13	:	:	PUNCT
cet-7000	41	14			PRON
cet-7000	41	15	air	air	NOUN
cet-7000	41	16	is	be	AUX
cet-7000	41	17	considered	consider	VERB
cet-7000	41	18	as	as	SCONJ
cet-7000	41	19	ideal	ideal	ADJ
cet-7000	41	20	gas	gas	NOUN
cet-7000	41	21	with	with	ADP
cet-7000	41	22	constant	constant	ADJ
cet-7000	41	23	specific	specific	ADJ
cet-7000	41	24	heat	heat	NOUN
cet-7000	41	25	and	and	CCONJ
cet-7000	41	26	pure	pure	ADJ
cet-7000	41	27	methane	methane	NOUN
cet-7000	41	28	is	be	AUX
cet-7000	41	29	assumed	assume	VERB
cet-7000	41	30	as	as	ADP
cet-7000	41	31	fuel	fuel	NOUN
cet-7000	41	32	.	.	PUNCT
cet-7000	42	1			X
cet-7000	42	2	environmental	environmental	ADJ
cet-7000	42	3	conditions	condition	NOUN
cet-7000	42	4	of	of	ADP
cet-7000	42	5	the	the	DET
cet-7000	42	6	inlet	inlet	NOUN
cet-7000	42	7	air	air	NOUN
cet-7000	42	8	and	and	CCONJ
cet-7000	42	9	also	also	ADV
cet-7000	42	10	basic	basic	ADJ
cet-7000	42	11	conditions	condition	NOUN
cet-7000	42	12	for	for	ADP
cet-7000	42	13	enthalpy	enthalpy	NOUN
cet-7000	42	14	and	and	CCONJ
cet-7000	42	15	exergy	exergy	NOUN
cet-7000	42	16	calculations	calculation	NOUN
cet-7000	42	17	are	be	AUX
cet-7000	42	18	:	:	PUNCT
cet-7000	42	19	p0	p0	NOUN
cet-7000	42	20	=	=	SYM
cet-7000	42	21	1.013	1.013	NUM
cet-7000	42	22	bar	bar	NOUN
cet-7000	42	23	,	,	PUNCT
cet-7000	42	24	t0	t0	X
cet-7000	42	25	=	=	PUNCT
cet-7000	43	1	298	298	NUM
cet-7000	43	2	k.	k.	NOUN
cet-7000	43	3			NOUN
cet-7000	44	1	pressure	pressure	NOUN
cet-7000	44	2	drops	drop	VERB
cet-7000	44	3	in	in	ADP
cet-7000	44	4	combustion	combustion	NOUN
cet-7000	44	5	chamber	chamber	NOUN
cet-7000	44	6	and	and	CCONJ
cet-7000	44	7	hrsg	hrsg	NOUN
cet-7000	44	8	system	system	NOUN
cet-7000	44	9	are	be	AUX
cet-7000	44	10	considered	consider	VERB
cet-7000	44	11	0.03	0.03	NUM
cet-7000	44	12	and	and	CCONJ
cet-7000	44	13	0.05	0.05	NUM
cet-7000	44	14	of	of	ADP
cet-7000	44	15	combustion	combustion	NOUN
cet-7000	44	16	gases	gas	NOUN
cet-7000	44	17	,	,	PUNCT
cet-7000	44	18	respectively	respectively	ADV
cet-7000	44	19	.	.	PUNCT
cet-7000	45	1	thermodynamic	thermodynamic	ADJ
cet-7000	45	2	parameters	parameter	NOUN
cet-7000	45	3	and	and	CCONJ
cet-7000	45	4	variables	variable	NOUN
cet-7000	45	5	and	and	CCONJ
cet-7000	45	6	also	also	ADV
cet-7000	45	7	fixed	fix	VERB
cet-7000	45	8	parameters	parameter	NOUN
cet-7000	45	9	of	of	ADP
cet-7000	45	10	the	the	DET
cet-7000	45	11	cycle	cycle	NOUN
cet-7000	45	12	are	be	AUX
cet-7000	45	13	presented	present	VERB
cet-7000	45	14	in	in	ADP
cet-7000	45	15	tables	table	NOUN
cet-7000	45	16	1	1	NUM
cet-7000	45	17	and	and	CCONJ
cet-7000	45	18	2	2	NUM
cet-7000	45	19	.	.	NOUN
cet-7000	45	20	table	table	NOUN
cet-7000	45	21	1	1	NUM
cet-7000	45	22	:	:	PUNCT
cet-7000	45	23	thermodynamic	thermodynamic	ADJ
cet-7000	45	24	variables	variable	NOUN
cet-7000	45	25	state	state	NOUN
cet-7000	45	26	1	1	NUM
cet-7000	45	27	2	2	NUM
cet-7000	45	28	3	3	NUM
cet-7000	45	29	4	4	NUM
cet-7000	45	30	5	5	NUM
cet-7000	45	31	6	6	NUM
cet-7000	45	32	6p	6p	NUM
cet-7000	45	33	7	7	NUM
cet-7000	45	34	8	8	NUM
cet-7000	45	35	8p	8p	NUM
cet-7000	45	36	9	9	NUM
cet-7000	45	37	10	10	NUM
cet-7000	45	38	p	p	NOUN
cet-7000	45	39	(	(	PUNCT
cet-7000	45	40	bar	bar	NOUN
cet-7000	45	41	)	)	PUNCT
cet-7000	45	42	1.01	1.01	NUM
cet-7000	45	43	p2	p2	NOUN
cet-7000	45	44	p3	p3	NOUN
cet-7000	45	45	1.1	1.1	NUM
cet-7000	45	46	1.06	1.06	NUM
cet-7000	45	47	1.01	1.01	NUM
cet-7000	45	48	61	61	NUM
cet-7000	45	49	61	61	NUM
cet-7000	45	50	61	61	NUM
cet-7000	45	51	61	61	NUM
cet-7000	45	52	t	t	NOUN
cet-7000	45	53	(	(	PUNCT
cet-7000	45	54	k	k	NOUN
cet-7000	45	55	)	)	PUNCT
cet-7000	45	56	298	298	NUM
cet-7000	46	1	t2	t2	PROPN
cet-7000	46	2	t3	t3	PROPN
cet-7000	46	3	t4	t4	PROPN
cet-7000	46	4	t5	t5	PROPN
cet-7000	46	5	t6	t6	PROPN
cet-7000	46	6	t6p	t6p	PROPN
cet-7000	46	7	t7	t7	PROPN
cet-7000	46	8	298	298	NUM
cet-7000	46	9	539.8	539.8	NUM
cet-7000	46	10	549.8	549.8	NUM
cet-7000	46	11	716	716	NUM
cet-7000	46	12	table	table	NOUN
cet-7000	46	13	2	2	NUM
cet-7000	46	14	:	:	PUNCT
cet-7000	46	15	fixed	fix	VERB
cet-7000	46	16	variables	variable	NOUN
cet-7000	46	17	fixed	fix	VERB
cet-7000	46	18	variables	variable	NOUN
cet-7000	46	19	material	material	NOUN
cet-7000	46	20	cpair	cpair	NOUN
cet-7000	46	21	=	=	NOUN
cet-7000	46	22	1.004	1.004	NUM
cet-7000	46	23	kj	kj	PROPN
cet-7000	46	24	/	/	SYM
cet-7000	46	25	kgk	kgk	PROPN
cet-7000	46	26	,	,	PUNCT
cet-7000	46	27	γair	γair	NOUN
cet-7000	46	28	=	=	SYM
cet-7000	46	29	1.4	1.4	NUM
cet-7000	46	30	air	air	NOUN
cet-7000	46	31	lhv=	lhv=	NOUN
cet-7000	46	32	50,000	50,000	NUM
cet-7000	46	33	kj	kj	PROPN
cet-7000	46	34	/	/	SYM
cet-7000	46	35	kg	kg	PROPN
cet-7000	46	36	,	,	PUNCT
cet-7000	46	37	exfuel	exfuel	NOUN
cet-7000	46	38	=	=	NUM
cet-7000	46	39	51,850	51,850	NUM
cet-7000	46	40	kj	kj	PROPN
cet-7000	46	41	/	/	SYM
cet-7000	46	42	kg	kg	PROPN
cet-7000	46	43	fuel	fuel	NOUN
cet-7000	46	44	γgas	γgas	NOUN
cet-7000	46	45	=	=	SYM
cet-7000	46	46	1.33	1.33	NUM
cet-7000	46	47	gas	gas	NOUN
cet-7000	46	48	m	m	NOUN
cet-7000	46	49	°	°	NOUN
cet-7000	46	50	steam=	steam=	NUM
cet-7000	46	51	48.38	48.38	NUM
cet-7000	46	52	kg	kg	PROPN
cet-7000	46	53	/	/	SYM
cet-7000	46	54	s	s	PROPN
cet-7000	46	55	,	,	PUNCT
cet-7000	46	56	h10	h10	PROPN
cet-7000	46	57	–	–	PUNCT
cet-7000	46	58	h8=3.2	h8=3.2	PROPN
cet-7000	46	59	mj	mj	PROPN
cet-7000	46	60	/	/	SYM
cet-7000	46	61	kg	kg	PROPN
cet-7000	46	62	,	,	PUNCT
cet-7000	46	63	h10	h10	PROPN
cet-7000	46	64	–	–	PUNCT
cet-7000	46	65	h9=0.33	h9=0.33	NUM
cet-7000	46	66	mj	mj	PROPN
cet-7000	46	67	/	/	SYM
cet-7000	46	68	kg	kg	PROPN
cet-7000	46	69	,	,	PUNCT
cet-7000	46	70	h10	h10	PROPN
cet-7000	46	71	–	–	PUNCT
cet-7000	46	72	h8p=	h8p=	PROPN
cet-7000	46	73	1.96	1.96	NUM
cet-7000	46	74	mj	mj	PROPN
cet-7000	46	75	/	/	SYM
cet-7000	46	76	kg	kg	PROPN
cet-7000	46	77	,	,	PUNCT
cet-7000	46	78	ex9	ex9	NOUN
cet-7000	46	79	–	–	PUNCT
cet-7000	46	80	ex7=	ex7=	NOUN
cet-7000	46	81	909.8	909.8	NUM
cet-7000	46	82	kj	kj	PROPN
cet-7000	46	83	/	/	SYM
cet-7000	46	84	kg	kg	PROPN
cet-7000	46	85	steam	steam	NOUN
cet-7000	46	86	for	for	ADP
cet-7000	46	87	compressor	compressor	NOUN
cet-7000	46	88	we	we	PRON
cet-7000	46	89	have	have	VERB
cet-7000	46	90	:	:	PUNCT
cet-7000	46	91	;	;	PUNCT
cet-7000	46	92	;	;	PUNCT
cet-7000	46	93	(	(	PUNCT
cet-7000	46	94	1	1	X
cet-7000	46	95	)	)	PUNCT
cet-7000	46	96	for	for	ADP
cet-7000	46	97	combustion	combustion	NOUN
cet-7000	46	98	chamber	chamber	NOUN
cet-7000	46	99	:	:	PUNCT
cet-7000	46	100	;	;	PUNCT
cet-7000	46	101	(	(	PUNCT
cet-7000	46	102	2	2	X
cet-7000	46	103	)	)	PUNCT
cet-7000	46	104	(	(	PUNCT
cet-7000	46	105	3	3	X
cet-7000	46	106	)	)	PUNCT
cet-7000	46	107	for	for	ADP
cet-7000	46	108	gas	gas	NOUN
cet-7000	46	109	turbine	turbine	NOUN
cet-7000	46	110	:	:	PUNCT
cet-7000	46	111	;	;	PUNCT
cet-7000	46	112	;	;	PUNCT
cet-7000	46	113	(	(	PUNCT
cet-7000	46	114	4	4	X
cet-7000	46	115	)	)	PUNCT
cet-7000	46	116	for	for	ADP
cet-7000	46	117	hrsg	hrsg	ADJ
cet-7000	46	118	system	system	NOUN
cet-7000	46	119	with	with	ADP
cet-7000	46	120	supplementary	supplementary	ADJ
cet-7000	46	121	firing	firing	NOUN
cet-7000	46	122	:	:	PUNCT
cet-7000	46	123	22	22	NUM
cet-7000	46	124	(	(	PUNCT
cet-7000	46	125	5	5	NUM
cet-7000	46	126	)	)	PUNCT
cet-7000	46	127	(	(	PUNCT
cet-7000	46	128	6	6	NUM
cet-7000	46	129	)	)	PUNCT
cet-7000	46	130	(	(	PUNCT
cet-7000	46	131	7	7	NUM
cet-7000	46	132	)	)	PUNCT
cet-7000	46	133	(	(	PUNCT
cet-7000	46	134	8)	8)	NUM
cet-7000	46	135	(	(	PUNCT
cet-7000	46	136	9	9	NUM
cet-7000	46	137	)	)	PUNCT
cet-7000	46	138	the	the	DET
cet-7000	46	139	cp	cp	PROPN
cet-7000	46	140	of	of	ADP
cet-7000	46	141	combustion	combustion	NOUN
cet-7000	46	142	gases	gas	NOUN
cet-7000	46	143	is	be	AUX
cet-7000	46	144	considered	consider	VERB
cet-7000	46	145	as	as	ADP
cet-7000	46	146	a	a	DET
cet-7000	46	147	function	function	NOUN
cet-7000	46	148	of	of	ADP
cet-7000	46	149	temperature	temperature	NOUN
cet-7000	46	150	variable	variable	NOUN
cet-7000	46	151	and	and	CCONJ
cet-7000	46	152	is	be	AUX
cet-7000	46	153	calculated	calculate	VERB
cet-7000	46	154	according	accord	VERB
cet-7000	46	155	to	to	ADP
cet-7000	46	156	the	the	DET
cet-7000	46	157	following	follow	VERB
cet-7000	46	158	equation	equation	NOUN
cet-7000	46	159	(	(	PUNCT
cet-7000	46	160	kurt	kurt	PROPN
cet-7000	46	161	et	et	PROPN
cet-7000	46	162	al	al	PROPN
cet-7000	46	163	.	.	PROPN
cet-7000	46	164	,	,	PUNCT
cet-7000	46	165	2009	2009	NUM
cet-7000	46	166	):	):	PUNCT
cet-7000	46	167	(	(	PUNCT
cet-7000	46	168	10	10	NUM
cet-7000	46	169	)	)	PUNCT
cet-7000	46	170	2.2	2.2	NUM
cet-7000	46	171	thermo	thermo	NOUN
cet-7000	46	172	-	-	PUNCT
cet-7000	46	173	economic	economic	ADJ
cet-7000	46	174	model	model	NOUN
cet-7000	46	175	the	the	DET
cet-7000	46	176	economic	economic	ADJ
cet-7000	46	177	model	model	NOUN
cet-7000	46	178	is	be	AUX
cet-7000	46	179	consists	consist	NOUN
cet-7000	46	180	of	of	ADP
cet-7000	46	181	the	the	DET
cet-7000	46	182	cost	cost	NOUN
cet-7000	46	183	of	of	ADP
cet-7000	46	184	all	all	DET
cet-7000	46	185	individual	individual	ADJ
cet-7000	46	186	components	component	NOUN
cet-7000	46	187	,	,	PUNCT
cet-7000	46	188	maintenance	maintenance	NOUN
cet-7000	46	189	cost	cost	NOUN
cet-7000	46	190	and	and	CCONJ
cet-7000	46	191	the	the	DET
cet-7000	46	192	cost	cost	NOUN
cet-7000	46	193	of	of	ADP
cet-7000	46	194	fuel	fuel	NOUN
cet-7000	46	195	consumption	consumption	NOUN
cet-7000	46	196	.	.	PUNCT
cet-7000	47	1	these	these	DET
cet-7000	47	2	cost	cost	NOUN
cet-7000	47	3	equations	equation	NOUN
cet-7000	47	4	have	have	VERB
cet-7000	47	5	to	to	PART
cet-7000	47	6	be	be	AUX
cet-7000	47	7	expressed	express	VERB
cet-7000	47	8	as	as	ADP
cet-7000	47	9	functions	function	NOUN
cet-7000	47	10	of	of	ADP
cet-7000	47	11	thermodynamic	thermodynamic	ADJ
cet-7000	47	12	variables	variable	NOUN
cet-7000	47	13	which	which	PRON
cet-7000	47	14	are	be	AUX
cet-7000	47	15	the	the	DET
cet-7000	47	16	optimization	optimization	NOUN
cet-7000	47	17	parameters	parameter	NOUN
cet-7000	47	18	.	.	PUNCT
cet-7000	48	1	the	the	DET
cet-7000	48	2	capital	capital	NOUN
cet-7000	48	3	costs	cost	NOUN
cet-7000	48	4	of	of	ADP
cet-7000	48	5	compressor	compressor	NOUN
cet-7000	48	6	(	(	PUNCT
cet-7000	48	7	ccomp	ccomp	ADJ
cet-7000	48	8	)	)	PUNCT
cet-7000	48	9	,	,	PUNCT
cet-7000	48	10	combustion	combustion	NOUN
cet-7000	48	11	chamber	chamber	NOUN
cet-7000	48	12	(	(	PUNCT
cet-7000	48	13	ccb	ccb	PROPN
cet-7000	48	14	)	)	PUNCT
cet-7000	48	15	,	,	PUNCT
cet-7000	48	16	gas	gas	NOUN
cet-7000	48	17	turbine	turbine	NOUN
cet-7000	48	18	(	(	PUNCT
cet-7000	48	19	cgt	cgt	PROPN
cet-7000	48	20	)	)	PUNCT
cet-7000	48	21	and	and	CCONJ
cet-7000	48	22	hrsg	hrsg	NOUN
cet-7000	48	23	system	system	NOUN
cet-7000	48	24	(	(	PUNCT
cet-7000	48	25	chrsg	chrsg	PROPN
cet-7000	48	26	)	)	PUNCT
cet-7000	48	27	are	be	AUX
cet-7000	48	28	determined	determine	VERB
cet-7000	48	29	from	from	ADP
cet-7000	48	30	(	(	PUNCT
cet-7000	48	31	baghernejad	baghernejad	NOUN
cet-7000	48	32	and	and	CCONJ
cet-7000	48	33	yaghoubi	yaghoubi	NOUN
cet-7000	48	34	,	,	PUNCT
cet-7000	48	35	2011	2011	NUM
cet-7000	48	36	):	):	PUNCT
cet-7000	48	37	(	(	PUNCT
cet-7000	48	38	11	11	NUM
cet-7000	48	39	)	)	PUNCT
cet-7000	48	40	(	(	PUNCT
cet-7000	48	41	12	12	NUM
cet-7000	48	42	)	)	PUNCT
cet-7000	48	43	(	(	PUNCT
cet-7000	48	44	13	13	NUM
cet-7000	48	45	)	)	PUNCT
cet-7000	48	46	(	(	PUNCT
cet-7000	48	47	14	14	NUM
cet-7000	48	48	)	)	PUNCT
cet-7000	48	49	to	to	PART
cet-7000	48	50	determine	determine	VERB
cet-7000	48	51	the	the	DET
cet-7000	48	52	duct	duct	NOUN
cet-7000	48	53	burner	burner	NOUN
cet-7000	48	54	investment	investment	NOUN
cet-7000	48	55	cost	cost	NOUN
cet-7000	48	56	(	(	PUNCT
cet-7000	48	57	cdb	cdb	PROPN
cet-7000	48	58	)	)	PUNCT
cet-7000	48	59	,	,	PUNCT
cet-7000	48	60	the	the	DET
cet-7000	48	61	following	follow	VERB
cet-7000	48	62	relation	relation	NOUN
cet-7000	48	63	can	can	AUX
cet-7000	48	64	be	be	AUX
cet-7000	48	65	used	use	VERB
cet-7000	48	66	(	(	PUNCT
cet-7000	48	67	charles	charle	NOUN
cet-7000	48	68	,	,	PUNCT
cet-7000	48	69	2003	2003	NUM
cet-7000	48	70	):	):	PUNCT
cet-7000	48	71	(	(	PUNCT
cet-7000	48	72	15	15	NUM
cet-7000	48	73	)	)	PUNCT
cet-7000	48	74	and	and	CCONJ
cet-7000	48	75	fuel	fuel	NOUN
cet-7000	48	76	cost	cost	NOUN
cet-7000	48	77	can	can	AUX
cet-7000	48	78	be	be	AUX
cet-7000	48	79	estimated	estimate	VERB
cet-7000	48	80	by	by	ADP
cet-7000	48	81	(	(	PUNCT
cet-7000	48	82	dincer	dincer	NOUN
cet-7000	48	83	and	and	CCONJ
cet-7000	48	84	ahmadi	ahmadi	PROPN
cet-7000	48	85	,	,	PUNCT
cet-7000	48	86	2011	2011	NUM
cet-7000	48	87	):	):	PUNCT
cet-7000	48	88	(	(	PUNCT
cet-7000	48	89	16	16	NUM
cet-7000	48	90	)	)	PUNCT
cet-7000	48	91	2.3	2.3	NUM
cet-7000	48	92	objective	objective	ADJ
cet-7000	48	93	functions	function	NOUN
cet-7000	48	94	a	a	DET
cet-7000	48	95	multi	multi	ADJ
cet-7000	48	96	-	-	ADJ
cet-7000	48	97	objective	objective	ADJ
cet-7000	48	98	optimization	optimization	NOUN
cet-7000	48	99	is	be	AUX
cet-7000	48	100	carried	carry	VERB
cet-7000	48	101	out	out	ADP
cet-7000	48	102	in	in	ADP
cet-7000	48	103	this	this	DET
cet-7000	48	104	work	work	NOUN
cet-7000	48	105	including	include	VERB
cet-7000	48	106	two	two	NUM
cet-7000	48	107	objective	objective	ADJ
cet-7000	48	108	functions	function	NOUN
cet-7000	48	109	of	of	ADP
cet-7000	48	110	tac	tac	PROPN
cet-7000	48	111	and	and	CCONJ
cet-7000	48	112	exergetic	exergetic	ADJ
cet-7000	48	113	efficiency	efficiency	NOUN
cet-7000	48	114	.	.	PUNCT
cet-7000	49	1	the	the	DET
cet-7000	49	2	minimization	minimization	NOUN
cet-7000	49	3	of	of	ADP
cet-7000	49	4	tac	tac	PROPN
cet-7000	49	5	of	of	ADP
cet-7000	49	6	the	the	DET
cet-7000	49	7	cogeneration	cogeneration	NOUN
cet-7000	49	8	cycle	cycle	NOUN
cet-7000	49	9	and	and	CCONJ
cet-7000	49	10	maximization	maximization	NOUN
cet-7000	49	11	of	of	ADP
cet-7000	49	12	the	the	DET
cet-7000	49	13	exergetic	exergetic	ADJ
cet-7000	49	14	efficiency	efficiency	NOUN
cet-7000	49	15	of	of	ADP
cet-7000	49	16	this	this	DET
cet-7000	49	17	cycle	cycle	NOUN
cet-7000	49	18	is	be	AUX
cet-7000	49	19	considered	consider	VERB
cet-7000	49	20	.	.	PUNCT
cet-7000	50	1	;	;	PUNCT
cet-7000	50	2	(	(	PUNCT
cet-7000	50	3	17	17	NUM
cet-7000	50	4	)	)	PUNCT
cet-7000	50	5	(	(	PUNCT
cet-7000	50	6	18	18	NUM
cet-7000	50	7	)	)	SYM
cet-7000	50	8	five	five	NUM
cet-7000	50	9	decision	decision	NOUN
cet-7000	50	10	variables	variable	NOUN
cet-7000	50	11	are	be	AUX
cet-7000	50	12	considered	consider	VERB
cet-7000	50	13	through	through	ADP
cet-7000	50	14	the	the	DET
cet-7000	50	15	optimization	optimization	NOUN
cet-7000	50	16	procedure	procedure	NOUN
cet-7000	50	17	including	include	VERB
cet-7000	50	18	compressor	compressor	NOUN
cet-7000	50	19	pressure	pressure	NOUN
cet-7000	50	20	ratio	ratio	NOUN
cet-7000	50	21	(	(	PUNCT
cet-7000	50	22	rc	rc	PROPN
cet-7000	50	23	)	)	PUNCT
cet-7000	50	24	,	,	PUNCT
cet-7000	50	25	isentropic	isentropic	NOUN
cet-7000	50	26	efficiency	efficiency	NOUN
cet-7000	50	27	of	of	ADP
cet-7000	50	28	compressor	compressor	NOUN
cet-7000	50	29	(	(	PUNCT
cet-7000	50	30	ηc	ηc	PROPN
cet-7000	50	31	)	)	PUNCT
cet-7000	50	32	,	,	PUNCT
cet-7000	50	33	isentropic	isentropic	NOUN
cet-7000	50	34	efficiency	efficiency	NOUN
cet-7000	50	35	of	of	ADP
cet-7000	50	36	gas	gas	NOUN
cet-7000	50	37	turbine	turbine	NOUN
cet-7000	50	38	(	(	PUNCT
cet-7000	50	39	ηt	ηt	ADP
cet-7000	50	40	)	)	PUNCT
cet-7000	50	41	,	,	PUNCT
cet-7000	50	42	temperature	temperature	NOUN
cet-7000	50	43	of	of	ADP
cet-7000	50	44	combustion	combustion	NOUN
cet-7000	50	45	gases	gas	NOUN
cet-7000	50	46	entering	enter	VERB
cet-7000	50	47	the	the	DET
cet-7000	50	48	gas	gas	NOUN
cet-7000	50	49	turbine	turbine	NOUN
cet-7000	50	50	(	(	PUNCT
cet-7000	50	51	t3	t3	PROPN
cet-7000	50	52	)	)	PUNCT
cet-7000	50	53	and	and	CCONJ
cet-7000	50	54	the	the	DET
cet-7000	50	55	fuel	fuel	NOUN
cet-7000	50	56	mass	mass	NOUN
cet-7000	50	57	flow	flow	NOUN
cet-7000	50	58	rate	rate	NOUN
cet-7000	50	59	to	to	ADP
cet-7000	50	60	the	the	DET
cet-7000	50	61	hrsg	hrsg	NOUN
cet-7000	50	62	supplementary	supplementary	ADJ
cet-7000	50	63	firing	firing	NOUN
cet-7000	50	64	system	system	NOUN
cet-7000	50	65	(	(	PUNCT
cet-7000	50	66	m	m	NOUN
cet-7000	50	67	°	°	NOUN
cet-7000	50	68	fuel2	fuel2	NOUN
cet-7000	50	69	)	)	PUNCT
cet-7000	50	70	.	.	PUNCT
cet-7000	51	1	;	;	PUNCT
cet-7000	51	2	;	;	PUNCT
cet-7000	51	3	;	;	PUNCT
cet-7000	51	4	;	;	PUNCT
cet-7000	51	5	(	(	PUNCT
cet-7000	51	6	19	19	NUM
cet-7000	51	7	)	)	PUNCT
cet-7000	51	8	for	for	ADP
cet-7000	51	9	heat	heat	NOUN
cet-7000	51	10	exchange	exchange	NOUN
cet-7000	51	11	in	in	ADP
cet-7000	51	12	hrsg	hrsg	NOUN
cet-7000	51	13	system	system	NOUN
cet-7000	51	14	,	,	PUNCT
cet-7000	51	15	there	there	PRON
cet-7000	51	16	are	be	VERB
cet-7000	51	17	some	some	DET
cet-7000	51	18	constraints	constraint	NOUN
cet-7000	51	19	,	,	PUNCT
cet-7000	51	20	which	which	PRON
cet-7000	51	21	must	must	AUX
cet-7000	51	22	be	be	AUX
cet-7000	51	23	satisfied	satisfied	ADJ
cet-7000	51	24	during	during	ADP
cet-7000	51	25	the	the	DET
cet-7000	51	26	optimization	optimization	NOUN
cet-7000	51	27	:	:	PUNCT
cet-7000	51	28	;	;	PUNCT
cet-7000	51	29	;	;	PUNCT
cet-7000	51	30	;	;	PUNCT
cet-7000	51	31	(	(	PUNCT
cet-7000	51	32	20	20	NUM
cet-7000	51	33	)	)	PUNCT
cet-7000	51	34	23	23	NUM
cet-7000	51	35	3	3	NUM
cet-7000	51	36	.	.	PUNCT
cet-7000	51	37	results	result	NOUN
cet-7000	51	38	of	of	ADP
cet-7000	51	39	optimal	optimal	ADJ
cet-7000	51	40	design	design	NOUN
cet-7000	51	41	the	the	DET
cet-7000	51	42	number	number	NOUN
cet-7000	51	43	of	of	ADP
cet-7000	51	44	adjustable	adjustable	ADJ
cet-7000	51	45	variables	variable	NOUN
cet-7000	51	46	is	be	AUX
cet-7000	51	47	5	5	NUM
cet-7000	51	48	.	.	PUNCT
cet-7000	52	1	an	an	DET
cet-7000	52	2	initial	initial	ADJ
cet-7000	52	3	population	population	NOUN
cet-7000	52	4	of	of	ADP
cet-7000	52	5	chromosomes	chromosome	NOUN
cet-7000	52	6	is	be	AUX
cet-7000	52	7	randomly	randomly	ADV
cet-7000	52	8	generated	generate	VERB
cet-7000	52	9	.	.	PUNCT
cet-7000	53	1	the	the	DET
cet-7000	53	2	population	population	NOUN
cet-7000	53	3	in	in	ADP
cet-7000	53	4	each	each	DET
cet-7000	53	5	generation	generation	NOUN
cet-7000	53	6	is	be	AUX
cet-7000	53	7	taken	take	VERB
cet-7000	53	8	as	as	ADP
cet-7000	53	9	100	100	NUM
cet-7000	53	10	.	.	PUNCT
cet-7000	54	1	the	the	DET
cet-7000	54	2	results	result	NOUN
cet-7000	54	3	of	of	ADP
cet-7000	54	4	optimal	optimal	ADJ
cet-7000	54	5	design	design	NOUN
cet-7000	54	6	found	find	VERB
cet-7000	54	7	by	by	ADP
cet-7000	54	8	the	the	DET
cet-7000	54	9	ga	ga	PROPN
cet-7000	54	10	are	be	AUX
cet-7000	54	11	presented	present	VERB
cet-7000	54	12	in	in	ADP
cet-7000	54	13	tables	table	NOUN
cet-7000	54	14	3	3	NUM
cet-7000	54	15	to	to	PART
cet-7000	54	16	5	5	NUM
cet-7000	54	17	.	.	PUNCT
cet-7000	54	18	table	table	NOUN
cet-7000	54	19	3	3	NUM
cet-7000	54	20	:	:	PUNCT
cet-7000	54	21	optimal	optimal	ADJ
cet-7000	54	22	values	value	NOUN
cet-7000	54	23	for	for	ADP
cet-7000	54	24	decision	decision	NOUN
cet-7000	54	25	variables	variable	NOUN
cet-7000	54	26	and	and	CCONJ
cet-7000	54	27	objective	objective	ADJ
cet-7000	54	28	functions	function	NOUN
cet-7000	54	29	value	value	NOUN
cet-7000	54	30	parameter	parameter	NOUN
cet-7000	54	31	19	19	NUM
cet-7000	54	32	rc	rc	PROPN
cet-7000	54	33	0.87	0.87	NUM
cet-7000	54	34	ηc	ηc	PRON
cet-7000	54	35	0.89	0.89	NUM
cet-7000	54	36	ηt	ηt	ADP
cet-7000	54	37	1398	1398	NUM
cet-7000	54	38	t3(k	t3(k	SYM
cet-7000	54	39	)	)	PUNCT
cet-7000	54	40	2.01	2.01	NUM
cet-7000	54	41	m	m	NOUN
cet-7000	54	42	°	°	ADP
cet-7000	54	43	fuel2(kg	fuel2(kg	NOUN
cet-7000	54	44	/	/	SYM
cet-7000	54	45	s	s	PART
cet-7000	54	46	)	)	PUNCT
cet-7000	54	47	13.8×10	13.8×10	NUM
cet-7000	54	48	6	6	NUM
cet-7000	54	49	tac($/year	tac($/year	NUM
cet-7000	54	50	)	)	PUNCT
cet-7000	54	51	0.51	0.51	NUM
cet-7000	54	52	ηex	ηex	NOUN
cet-7000	54	53	table	table	NOUN
cet-7000	54	54	4	4	NUM
cet-7000	54	55	:	:	PUNCT
cet-7000	54	56	optimal	optimal	ADJ
cet-7000	54	57	values	value	NOUN
cet-7000	54	58	for	for	ADP
cet-7000	54	59	dependent	dependent	ADJ
cet-7000	54	60	parameters	parameter	NOUN
cet-7000	54	61	parameter	parameter	NOUN
cet-7000	54	62	value	value	NOUN
cet-7000	54	63	parameter	parameter	NOUN
cet-7000	54	64	value	value	NOUN
cet-7000	54	65	m	m	NOUN
cet-7000	54	66	°	°	NOUN
cet-7000	54	67	air(kg	air(kg	NOUN
cet-7000	54	68	/	/	SYM
cet-7000	54	69	s	s	PART
cet-7000	54	70	)	)	PUNCT
cet-7000	54	71	54.9	54.9	NUM
cet-7000	54	72	p3(bar	p3(bar	NOUN
cet-7000	54	73	)	)	PUNCT
cet-7000	54	74	18.5	18.5	NUM
cet-7000	54	75	m	m	NOUN
cet-7000	54	76	°	°	ADP
cet-7000	54	77	gas1(kg	gas1(kg	NOUN
cet-7000	54	78	/	/	SYM
cet-7000	54	79	s	s	NOUN
cet-7000	54	80	)	)	PUNCT
cet-7000	54	81	55.9	55.9	NUM
cet-7000	54	82	t2	t2	NOUN
cet-7000	54	83	(	(	PUNCT
cet-7000	54	84	°	°	ADP
cet-7000	54	85	c	c	NOUN
cet-7000	54	86	)	)	PUNCT
cet-7000	54	87	749.5	749.5	NUM
cet-7000	54	88	m	m	NOUN
cet-7000	54	89	°	°	ADP
cet-7000	54	90	fuel1(kg	fuel1(kg	NOUN
cet-7000	54	91	/	/	SYM
cet-7000	54	92	s	s	NOUN
cet-7000	54	93	)	)	PUNCT
cet-7000	54	94	0.96	0.96	NUM
cet-7000	54	95	t4	t4	PROPN
cet-7000	54	96	(	(	PUNCT
cet-7000	54	97	°	°	ADP
cet-7000	54	98	c	c	NOUN
cet-7000	54	99	)	)	PUNCT
cet-7000	54	100	765	765	NUM
cet-7000	54	101	m	m	NOUN
cet-7000	54	102	°	°	NOUN
cet-7000	54	103	gas2(kg	gas2(kg	NOUN
cet-7000	54	104	/	/	SYM
cet-7000	54	105	s	s	NOUN
cet-7000	54	106	)	)	PUNCT
cet-7000	54	107	)	)	PUNCT
cet-7000	54	108	57.9	57.9	NUM
cet-7000	54	109	t5	t5	PROPN
cet-7000	54	110	(	(	PUNCT
cet-7000	54	111	°	°	ADP
cet-7000	54	112	c	c	NOUN
cet-7000	54	113	)	)	PUNCT
cet-7000	54	114	1891	1891	NUM
cet-7000	54	115	wc(mw	wc(mw	PROPN
cet-7000	54	116	)	)	PUNCT
cet-7000	54	117	24.9	24.9	NUM
cet-7000	54	118	t6	t6	PROPN
cet-7000	54	119	(	(	PUNCT
cet-7000	54	120	°	°	ADP
cet-7000	54	121	c	c	NOUN
cet-7000	54	122	)	)	PUNCT
cet-7000	54	123	1706	1706	NUM
cet-7000	54	124	wgt(mw	wgt(mw	NOUN
cet-7000	54	125	)	)	PUNCT
cet-7000	54	126	41.4	41.4	NUM
cet-7000	54	127	t6p	t6p	PART
cet-7000	54	128	(	(	PUNCT
cet-7000	54	129	°	°	ADP
cet-7000	54	130	c	c	NOUN
cet-7000	54	131	)	)	PUNCT
cet-7000	54	132	512	512	NUM
cet-7000	54	133	261.8	261.8	NUM
cet-7000	54	134	p2	p2	NOUN
cet-7000	54	135	(	(	PUNCT
cet-7000	54	136	bar	bar	NOUN
cet-7000	54	137	)	)	PUNCT
cet-7000	54	138	19.5	19.5	NUM
cet-7000	54	139	t7	t7	PROPN
cet-7000	54	140	(	(	PUNCT
cet-7000	54	141	°	°	ADP
cet-7000	54	142	c	c	NOUN
cet-7000	54	143	)	)	PUNCT
cet-7000	54	144	table	table	NOUN
cet-7000	54	145	5	5	NUM
cet-7000	54	146	:	:	PUNCT
cet-7000	54	147	comparison	comparison	NOUN
cet-7000	54	148	between	between	ADP
cet-7000	54	149	cogeneration	cogeneration	NOUN
cet-7000	54	150	system	system	NOUN
cet-7000	54	151	before	before	ADP
cet-7000	54	152	and	and	CCONJ
cet-7000	54	153	after	after	ADP
cet-7000	54	154	optimization	optimization	NOUN
cet-7000	54	155	improvement%	improvement%	PUNCT
cet-7000	54	156	cost	cost	NOUN
cet-7000	54	157	of	of	ADP
cet-7000	54	158	optimized	optimize	VERB
cet-7000	54	159	chp	chp	NOUN
cet-7000	54	160	(	(	PUNCT
cet-7000	54	161	$	$	SYM
cet-7000	54	162	/y	/y	SYM
cet-7000	54	163	)	)	PUNCT
cet-7000	54	164	cost	cost	NOUN
cet-7000	54	165	of	of	ADP
cet-7000	54	166	designed	design	VERB
cet-7000	54	167	chp	chp	NOUN
cet-7000	54	168	(	(	PUNCT
cet-7000	54	169	$	$	SYM
cet-7000	54	170	/y	/y	SYM
cet-7000	54	171	)	)	PUNCT
cet-7000	54	172	18.5	18.5	NUM
cet-7000	54	173	13.8×10	13.8×10	NUM
cet-7000	54	174	6	6	NUM
cet-7000	54	175	16.95×10	16.95×10	NUM
cet-7000	54	176	6	6	NUM
cet-7000	54	177	the	the	DET
cet-7000	54	178	electricity	electricity	NOUN
cet-7000	54	179	and	and	CCONJ
cet-7000	54	180	steam	steam	NOUN
cet-7000	54	181	costs	cost	NOUN
cet-7000	54	182	for	for	ADP
cet-7000	54	183	this	this	DET
cet-7000	54	184	plant	plant	NOUN
cet-7000	54	185	are	be	AUX
cet-7000	54	186	about	about	ADV
cet-7000	54	187	33	33	NUM
cet-7000	54	188	$	$	SYM
cet-7000	54	189	/mwh	/mwh	NOUN
cet-7000	54	190	and	and	CCONJ
cet-7000	54	191	8.1	8.1	NUM
cet-7000	54	192	$	$	SYM
cet-7000	54	193	/t	/t	NOUN
cet-7000	54	194	,	,	PUNCT
cet-7000	54	195	respectively	respectively	ADV
cet-7000	54	196	,	,	PUNCT
cet-7000	54	197	and	and	CCONJ
cet-7000	54	198	the	the	DET
cet-7000	54	199	cost	cost	NOUN
cet-7000	54	200	of	of	ADP
cet-7000	54	201	cooling	cool	VERB
cet-7000	54	202	water	water	NOUN
cet-7000	54	203	is	be	AUX
cet-7000	54	204	taken	take	VERB
cet-7000	54	205	as	as	ADP
cet-7000	54	206	1.2	1.2	NUM
cet-7000	54	207	$	$	SYM
cet-7000	54	208	/m	/m	NUM
cet-7000	54	209	3	3	NUM
cet-7000	54	210	.	.	PUNCT
cet-7000	55	1	by	by	ADP
cet-7000	55	2	considering	consider	VERB
cet-7000	55	3	8000	8000	NUM
cet-7000	55	4	hours	hour	NOUN
cet-7000	55	5	for	for	ADP
cet-7000	55	6	annual	annual	ADJ
cet-7000	55	7	operating	operating	NOUN
cet-7000	55	8	time	time	NOUN
cet-7000	55	9	of	of	ADP
cet-7000	55	10	the	the	DET
cet-7000	55	11	plant	plant	NOUN
cet-7000	55	12	,	,	PUNCT
cet-7000	55	13	the	the	DET
cet-7000	55	14	simple	simple	ADJ
cet-7000	55	15	payback	payback	NOUN
cet-7000	55	16	time	time	NOUN
cet-7000	55	17	describing	describe	VERB
cet-7000	55	18	by	by	ADP
cet-7000	55	19	spb=	spb=	ADJ
cet-7000	55	20	investment	investment	NOUN
cet-7000	55	21	/	/	SYM
cet-7000	55	22	yearly	yearly	ADJ
cet-7000	55	23	savings	saving	NOUN
cet-7000	55	24	,	,	PUNCT
cet-7000	55	25	can	can	AUX
cet-7000	55	26	be	be	AUX
cet-7000	55	27	calculated	calculate	VERB
cet-7000	55	28	.	.	PUNCT
cet-7000	56	1	economic	economic	ADJ
cet-7000	56	2	evaluation	evaluation	NOUN
cet-7000	56	3	of	of	ADP
cet-7000	56	4	the	the	DET
cet-7000	56	5	proposed	propose	VERB
cet-7000	56	6	cogeneration	cogeneration	NOUN
cet-7000	56	7	system	system	NOUN
cet-7000	56	8	implementation	implementation	NOUN
cet-7000	56	9	is	be	AUX
cet-7000	56	10	shown	show	VERB
cet-7000	56	11	in	in	ADP
cet-7000	56	12	table	table	NOUN
cet-7000	56	13	6	6	NUM
cet-7000	56	14	.	.	PUNCT
cet-7000	56	15	table	table	NOUN
cet-7000	56	16	6	6	NUM
cet-7000	56	17	:	:	PUNCT
cet-7000	56	18	economic	economic	ADJ
cet-7000	56	19	evaluation	evaluation	NOUN
cet-7000	56	20	of	of	ADP
cet-7000	56	21	the	the	DET
cet-7000	56	22	cogeneration	cogeneration	NOUN
cet-7000	56	23	system	system	NOUN
cet-7000	56	24	implementation	implementation	NOUN
cet-7000	56	25	net	net	ADJ
cet-7000	56	26	saving	saving	NOUN
cet-7000	56	27	(	(	PUNCT
cet-7000	56	28	m$/y)=	m$/y)=	PROPN
cet-7000	56	29	6.9	6.9	NUM
cet-7000	56	30	tac	tac	NOUN
cet-7000	56	31	of	of	ADP
cet-7000	56	32	chp	chp	NOUN
cet-7000	56	33	system	system	NOUN
cet-7000	56	34	(	(	PUNCT
cet-7000	56	35	m$/y)=	m$/y)=	NOUN
cet-7000	56	36	13.8	13.8	NUM
cet-7000	56	37	electricity	electricity	NOUN
cet-7000	56	38	(	(	PUNCT
cet-7000	56	39	mw	mw	NOUN
cet-7000	56	40	)	)	PUNCT
cet-7000	56	41	steam	steam	NOUN
cet-7000	56	42	(	(	PUNCT
cet-7000	56	43	t	t	NOUN
cet-7000	56	44	/	/	SYM
cet-7000	56	45	h	h	NOUN
cet-7000	56	46	)	)	PUNCT
cet-7000	56	47	fuel	fuel	NOUN
cet-7000	56	48	and	and	CCONJ
cet-7000	56	49	water	water	NOUN
cet-7000	56	50	cost	cost	NOUN
cet-7000	56	51	(	(	PUNCT
cet-7000	56	52	m$/y	m$/y	NOUN
cet-7000	56	53	)	)	PUNCT
cet-7000	56	54	installation	installation	NOUN
cet-7000	56	55	cost	cost	NOUN
cet-7000	56	56	of	of	ADP
cet-7000	56	57	chp	chp	NOUN
cet-7000	56	58	system	system	NOUN
cet-7000	56	59	(	(	PUNCT
cet-7000	56	60	m$	m$	NOUN
cet-7000	56	61	)	)	PUNCT
cet-7000	56	62	payback	payback	NOUN
cet-7000	56	63	(	(	PUNCT
cet-7000	56	64	y	y	NOUN
cet-7000	56	65	)	)	PUNCT
cet-7000	56	66	35	35	NUM
cet-7000	56	67	192	192	NUM
cet-7000	56	68	14.7	14.7	NUM
cet-7000	56	69	7.2	7.2	NUM
cet-7000	56	70	1.1	1.1	NUM
cet-7000	56	71	4	4	NUM
cet-7000	56	72	.	.	PUNCT
cet-7000	57	1	conclusions	conclusion	NOUN
cet-7000	57	2	in	in	ADP
cet-7000	57	3	this	this	DET
cet-7000	57	4	work	work	NOUN
cet-7000	57	5	,	,	PUNCT
cet-7000	57	6	we	we	PRON
cet-7000	57	7	have	have	AUX
cet-7000	57	8	performed	perform	VERB
cet-7000	57	9	an	an	DET
cet-7000	57	10	optimum	optimum	ADJ
cet-7000	57	11	design	design	NOUN
cet-7000	57	12	of	of	ADP
cet-7000	57	13	a	a	DET
cet-7000	57	14	cogeneration	cogeneration	NOUN
cet-7000	57	15	system	system	NOUN
cet-7000	57	16	integrated	integrate	VERB
cet-7000	57	17	with	with	ADP
cet-7000	57	18	a	a	DET
cet-7000	57	19	pulp	pulp	NOUN
cet-7000	57	20	and	and	CCONJ
cet-7000	57	21	paper	paper	NOUN
cet-7000	57	22	mill	mill	NOUN
cet-7000	57	23	.	.	PUNCT
cet-7000	58	1	for	for	ADP
cet-7000	58	2	the	the	DET
cet-7000	58	3	cycle	cycle	NOUN
cet-7000	58	4	simulation	simulation	NOUN
cet-7000	58	5	,	,	PUNCT
cet-7000	58	6	aspen	aspen	PROPN
cet-7000	58	7	plus	plus	CCONJ
cet-7000	58	8	software	software	NOUN
cet-7000	58	9	was	be	AUX
cet-7000	58	10	used	use	VERB
cet-7000	58	11	.	.	PUNCT
cet-7000	59	1	we	we	PRON
cet-7000	59	2	have	have	AUX
cet-7000	59	3	considered	consider	VERB
cet-7000	59	4	5	5	NUM
cet-7000	59	5	variables	variable	NOUN
cet-7000	59	6	related	relate	VERB
cet-7000	59	7	to	to	ADP
cet-7000	59	8	the	the	DET
cet-7000	59	9	thermodynamic	thermodynamic	ADJ
cet-7000	59	10	model	model	NOUN
cet-7000	59	11	to	to	PART
cet-7000	59	12	get	get	VERB
cet-7000	59	13	the	the	DET
cet-7000	59	14	best	good	ADJ
cet-7000	59	15	design	design	NOUN
cet-7000	59	16	of	of	ADP
cet-7000	59	17	the	the	DET
cet-7000	59	18	proposed	propose	VERB
cet-7000	59	19	cogeneration	cogeneration	NOUN
cet-7000	59	20	system	system	NOUN
cet-7000	59	21	with	with	ADP
cet-7000	59	22	minimum	minimum	ADJ
cet-7000	59	23	cost	cost	NOUN
cet-7000	59	24	and	and	CCONJ
cet-7000	59	25	maximum	maximum	ADJ
cet-7000	59	26	exergy	exergy	NOUN
cet-7000	59	27	efficiency	efficiency	NOUN
cet-7000	59	28	using	use	VERB
cet-7000	59	29	ga	ga	PROPN
cet-7000	59	30	method	method	NOUN
cet-7000	59	31	for	for	ADP
cet-7000	59	32	optimization	optimization	NOUN
cet-7000	59	33	.	.	PUNCT
cet-7000	60	1	by	by	ADP
cet-7000	60	2	comparison	comparison	NOUN
cet-7000	60	3	between	between	ADP
cet-7000	60	4	the	the	DET
cet-7000	60	5	cost	cost	NOUN
cet-7000	60	6	resulted	result	VERB
cet-7000	60	7	by	by	ADP
cet-7000	60	8	ga	ga	PROPN
cet-7000	60	9	(	(	PUNCT
cet-7000	60	10	13.8×10	13.8×10	NUM
cet-7000	60	11	6	6	NUM
cet-7000	60	12	$	$	SYM
cet-7000	60	13	/y	/y	PUNCT
cet-7000	60	14	)	)	PUNCT
cet-7000	60	15	and	and	CCONJ
cet-7000	60	16	the	the	DET
cet-7000	60	17	one	one	NOUN
cet-7000	60	18	resulted	result	VERB
cet-7000	60	19	from	from	ADP
cet-7000	60	20	general	general	ADJ
cet-7000	60	21	simulation	simulation	NOUN
cet-7000	60	22	by	by	ADP
cet-7000	60	23	aspen	aspen	PROPN
cet-7000	60	24	plus	plus	CCONJ
cet-7000	60	25	software	software	NOUN
cet-7000	60	26	before	before	ADP
cet-7000	60	27	optimization	optimization	NOUN
cet-7000	60	28	(	(	PUNCT
cet-7000	60	29	16.95×10	16.95×10	NUM
cet-7000	60	30	6	6	NUM
cet-7000	60	31	$	$	SYM
cet-7000	60	32	/y	/y	PUNCT
cet-7000	60	33	)	)	PUNCT
cet-7000	60	34	,	,	PUNCT
cet-7000	60	35	it	it	PRON
cet-7000	60	36	was	be	AUX
cet-7000	60	37	found	find	VERB
cet-7000	60	38	that	that	SCONJ
cet-7000	60	39	by	by	ADP
cet-7000	60	40	this	this	DET
cet-7000	60	41	24	24	NUM
cet-7000	60	42	optimum	optimum	ADJ
cet-7000	60	43	design	design	NOUN
cet-7000	60	44	;	;	PUNCT
cet-7000	60	45	tac	tac	PROPN
cet-7000	60	46	is	be	AUX
cet-7000	60	47	reduced	reduce	VERB
cet-7000	60	48	by	by	ADP
cet-7000	60	49	18.5	18.5	NUM
cet-7000	60	50	%	%	NOUN
cet-7000	60	51	.	.	PUNCT
cet-7000	61	1	also	also	ADV
cet-7000	61	2	,	,	PUNCT
cet-7000	61	3	the	the	DET
cet-7000	61	4	economic	economic	ADJ
cet-7000	61	5	evaluation	evaluation	NOUN
cet-7000	61	6	showed	show	VERB
cet-7000	61	7	that	that	SCONJ
cet-7000	61	8	by	by	ADP
cet-7000	61	9	implementation	implementation	NOUN
cet-7000	61	10	of	of	ADP
cet-7000	61	11	the	the	DET
cet-7000	61	12	cogeneration	cogeneration	NOUN
cet-7000	61	13	system	system	NOUN
cet-7000	61	14	both	both	CCONJ
cet-7000	61	15	power	power	NOUN
cet-7000	61	16	and	and	CCONJ
cet-7000	61	17	heating	heating	NOUN
cet-7000	61	18	requirements	requirement	NOUN
cet-7000	61	19	of	of	ADP
cet-7000	61	20	the	the	DET
cet-7000	61	21	pulp	pulp	NOUN
cet-7000	61	22	and	and	CCONJ
cet-7000	61	23	paper	paper	NOUN
cet-7000	61	24	mill	mill	NOUN
cet-7000	61	25	can	can	AUX
cet-7000	61	26	be	be	AUX
cet-7000	61	27	supplied	supply	VERB
cet-7000	61	28	with	with	ADP
cet-7000	61	29	a	a	DET
cet-7000	61	30	payback	payback	NOUN
cet-7000	61	31	of	of	ADP
cet-7000	61	32	1.1	1.1	NUM
cet-7000	61	33	y	y	NOUN
cet-7000	61	34	,	,	PUNCT
cet-7000	61	35	which	which	PRON
cet-7000	61	36	shows	show	VERB
cet-7000	61	37	that	that	SCONJ
cet-7000	61	38	the	the	DET
cet-7000	61	39	cogeneration	cogeneration	NOUN
cet-7000	61	40	system	system	NOUN
cet-7000	61	41	application	application	NOUN
cet-7000	61	42	is	be	AUX
cet-7000	61	43	a	a	DET
cet-7000	61	44	cost	cost	NOUN
cet-7000	61	45	attractive	attractive	ADJ
cet-7000	61	46	option	option	NOUN
cet-7000	61	47	.	.	PUNCT
cet-7000	62	1	nomenclature	nomenclature	NOUN
cet-7000	62	2	af	af	PROPN
cet-7000	62	3	:	:	PUNCT
cet-7000	62	4	annual	annual	ADJ
cet-7000	62	5	factor	factor	NOUN
cet-7000	62	6	n	n	CCONJ
cet-7000	62	7	:	:	PUNCT
cet-7000	62	8	chp	chp	NOUN
cet-7000	62	9	plant	plant	NOUN
cet-7000	62	10	lifetime	lifetime	NOUN
cet-7000	62	11	c	c	NOUN
cet-7000	62	12	:	:	PUNCT
cet-7000	62	13	compressor	compressor	NOUN
cet-7000	62	14	p	p	NOUN
cet-7000	62	15	:	:	PUNCT
cet-7000	62	16	pressure	pressure	NOUN
cet-7000	62	17	cb	cb	PROPN
cet-7000	62	18	:	:	PUNCT
cet-7000	62	19	combustion	combustion	NOUN
cet-7000	62	20	chamber	chamber	NOUN
cet-7000	62	21	∆p	∆p	PROPN
cet-7000	62	22	:	:	PUNCT
cet-7000	62	23	pressure	pressure	NOUN
cet-7000	62	24	drop	drop	NOUN
cet-7000	62	25	ci	ci	NOUN
cet-7000	62	26	:	:	PUNCT
cet-7000	62	27	component	component	NOUN
cet-7000	62	28	investment	investment	NOUN
cet-7000	62	29	cost	cost	NOUN
cet-7000	62	30	(	(	PUNCT
cet-7000	62	31	$	$	SYM
cet-7000	62	32	)	)	PUNCT
cet-7000	62	33	rc	rc	PROPN
cet-7000	62	34	:	:	PUNCT
cet-7000	62	35	compressor	compressor	NOUN
cet-7000	62	36	pressure	pressure	NOUN
cet-7000	62	37	ratio	ratio	NOUN
cet-7000	62	38	chp	chp	PROPN
cet-7000	62	39	:	:	PUNCT
cet-7000	62	40	combined	combined	ADJ
cet-7000	62	41	heating	heating	NOUN
cet-7000	62	42	and	and	CCONJ
cet-7000	62	43	power	power	NOUN
cet-7000	62	44	tac	tac	PROPN
cet-7000	62	45	:	:	PUNCT
cet-7000	62	46	total	total	ADJ
cet-7000	62	47	annual	annual	ADJ
cet-7000	62	48	cost	cost	NOUN
cet-7000	62	49	cp	cp	NOUN
cet-7000	62	50	:	:	PUNCT
cet-7000	62	51	heat	heat	NOUN
cet-7000	62	52	capacity	capacity	NOUN
cet-7000	62	53	(	(	PUNCT
cet-7000	62	54	kj	kj	PROPN
cet-7000	62	55	/	/	SYM
cet-7000	62	56	kg	kg	PROPN
cet-7000	62	57	°	°	PROPN
cet-7000	62	58	c	c	NOUN
cet-7000	62	59	)	)	PUNCT
cet-7000	62	60	t	t	PROPN
cet-7000	62	61	:	:	PUNCT
cet-7000	62	62	temperature	temperature	NOUN
cet-7000	62	63	cf	cf	NOUN
cet-7000	62	64	:	:	PUNCT
cet-7000	62	65	fuel	fuel	NOUN
cet-7000	62	66	cost	cost	NOUN
cet-7000	62	67	∆tlm	∆tlm	NOUN
cet-7000	62	68	:	:	PUNCT
cet-7000	62	69	log	log	NOUN
cet-7000	62	70	mean	mean	VERB
cet-7000	62	71	temperature	temperature	NOUN
cet-7000	62	72	difference	difference	NOUN
cet-7000	62	73	ex	ex	NOUN
cet-7000	62	74	:	:	PUNCT
cet-7000	62	75	exergy	exergy	NOUN
cet-7000	62	76	∆tp	∆tp	PROPN
cet-7000	62	77	:	:	PUNCT
cet-7000	62	78	pinch	pinch	NOUN
cet-7000	62	79	point	point	NOUN
cet-7000	62	80	temperature	temperature	NOUN
cet-7000	62	81	difference	difference	NOUN
cet-7000	62	82	db	db	NOUN
cet-7000	62	83	:	:	PUNCT
cet-7000	62	84	duct	duct	VERB
cet-7000	62	85	burner	burner	NOUN
cet-7000	62	86	w	w	PROPN
cet-7000	62	87	:	:	PUNCT
cet-7000	62	88	power	power	NOUN
cet-7000	62	89	i	i	PRON
cet-7000	62	90	:	:	PUNCT
cet-7000	62	91	annual	annual	ADJ
cet-7000	62	92	interest	interest	NOUN
cet-7000	62	93	rate	rate	NOUN
cet-7000	62	94	γ	γ	X
cet-7000	62	95	:	:	PUNCT
cet-7000	62	96	specific	specific	ADJ
cet-7000	62	97	heat	heat	NOUN
cet-7000	62	98	ratio	ratio	NOUN
cet-7000	62	99	h	h	NOUN
cet-7000	62	100	:	:	PUNCT
cet-7000	62	101	specific	specific	ADJ
cet-7000	62	102	enthalpy	enthalpy	NOUN
cet-7000	62	103	(	(	PUNCT
cet-7000	62	104	kj	kj	PROPN
cet-7000	62	105	/	/	SYM
cet-7000	62	106	kg	kg	PROPN
cet-7000	62	107	)	)	PUNCT
cet-7000	62	108	ηc	ηc	PROPN
cet-7000	62	109	:	:	PUNCT
cet-7000	62	110	compressor	compressor	NOUN
cet-7000	62	111	isentropic	isentropic	NOUN
cet-7000	62	112	efficiency	efficiency	NOUN
cet-7000	62	113	lhv	lhv	NOUN
cet-7000	62	114	:	:	PUNCT
cet-7000	62	115	lower	low	ADJ
cet-7000	62	116	heating	heating	NOUN
cet-7000	62	117	value	value	NOUN
cet-7000	62	118	(	(	PUNCT
cet-7000	62	119	kj	kj	PROPN
cet-7000	62	120	/	/	SYM
cet-7000	62	121	kg	kg	PROPN
cet-7000	62	122	)	)	PUNCT
cet-7000	62	123	ηgt	ηgt	NOUN
cet-7000	62	124	:	:	PUNCT
cet-7000	62	125	gas	gas	NOUN
cet-7000	62	126	turbine	turbine	NOUN
cet-7000	62	127	isentropic	isentropic	NOUN
cet-7000	62	128	efficiency	efficiency	NOUN
cet-7000	62	129	m	m	VERB
cet-7000	62	130	°	°	NUM
cet-7000	62	131	:	:	PUNCT
cet-7000	62	132	mass	mass	ADJ
cet-7000	62	133	flow	flow	NOUN
cet-7000	62	134	rate	rate	NOUN
cet-7000	62	135	(	(	PUNCT
cet-7000	62	136	kg	kg	PROPN
cet-7000	62	137	/	/	SYM
cet-7000	62	138	s	s	NOUN
cet-7000	62	139	)	)	PUNCT
cet-7000	62	140	ηex	ηex	NOUN
cet-7000	62	141	:	:	PUNCT
cet-7000	62	142	exergetic	exergetic	ADJ
cet-7000	62	143	efficiency	efficiency	NOUN
cet-7000	62	144	n	n	CCONJ
cet-7000	62	145	:	:	PUNCT
cet-7000	62	146	operating	operate	VERB
cet-7000	62	147	hour	hour	NOUN
cet-7000	62	148	per	per	ADP
cet-7000	62	149	year	year	NOUN
cet-7000	62	150	ø	ø	NOUN
cet-7000	62	151	:	:	PUNCT
cet-7000	62	152	maintenance	maintenance	NOUN
cet-7000	62	153	factor	factor	NOUN
cet-7000	62	154	references	reference	VERB
cet-7000	62	155	baghernejad	baghernejad	PROPN
cet-7000	62	156	a.	a.	PROPN
cet-7000	62	157	,	,	PUNCT
cet-7000	62	158	yaghoubi	yaghoubi	NOUN
cet-7000	62	159	m.	m.	NOUN
cet-7000	62	160	,	,	PUNCT
cet-7000	62	161	2011	2011	NUM
cet-7000	62	162	,	,	PUNCT
cet-7000	62	163	exergoeconomic	exergoeconomic	ADJ
cet-7000	62	164	analysis	analysis	NOUN
cet-7000	62	165	and	and	CCONJ
cet-7000	62	166	optimization	optimization	NOUN
cet-7000	62	167	of	of	ADP
cet-7000	62	168	an	an	DET
cet-7000	62	169	integrated	integrate	VERB
cet-7000	62	170	solar	solar	ADJ
cet-7000	62	171	combined	combine	VERB
cet-7000	62	172	cycle	cycle	NOUN
cet-7000	62	173	system	system	NOUN
cet-7000	62	174	(	(	PUNCT
cet-7000	62	175	isccs	isccs	NOUN
cet-7000	62	176	)	)	PUNCT
cet-7000	62	177	using	use	VERB
cet-7000	62	178	genetic	genetic	ADJ
cet-7000	62	179	algorithm	algorithm	NOUN
cet-7000	62	180	,	,	PUNCT
cet-7000	62	181	energy	energy	NOUN
cet-7000	62	182	conversion	conversion	NOUN
cet-7000	62	183	and	and	CCONJ
cet-7000	62	184	management	management	NOUN
cet-7000	62	185	,	,	PUNCT
cet-7000	62	186	52	52	NUM
cet-7000	62	187	,	,	PUNCT
cet-7000	62	188	2193	2193	NUM
cet-7000	62	189	-	-	SYM
cet-7000	62	190	2203	2203	NUM
cet-7000	62	191	.	.	PUNCT
cet-7000	63	1	charles	charles	PROPN
cet-7000	63	2	e.b	e.b	PROPN
cet-7000	63	3	.	.	PROPN
cet-7000	63	4	,	,	PUNCT
cet-7000	63	5	2003	2003	NUM
cet-7000	63	6	,	,	PUNCT
cet-7000	63	7	industrial	industrial	ADJ
cet-7000	63	8	burners	burner	NOUN
cet-7000	63	9	,	,	PUNCT
cet-7000	63	10	boca	boca	PROPN
cet-7000	63	11	raton	raton	PROPN
cet-7000	63	12	,	,	PUNCT
cet-7000	63	13	london	london	PROPN
cet-7000	63	14	,	,	PUNCT
cet-7000	63	15	new	new	PROPN
cet-7000	63	16	york	york	PROPN
cet-7000	63	17	,	,	PUNCT
cet-7000	63	18	crc	crc	NOUN
cet-7000	63	19	press	press	PROPN
cet-7000	63	20	.	.	PUNCT
cet-7000	64	1	dincer	dincer	PROPN
cet-7000	64	2	i.	i.	PROPN
cet-7000	64	3	,	,	PUNCT
cet-7000	64	4	ahmadi	ahmadi	PROPN
cet-7000	64	5	p.	p.	PROPN
cet-7000	64	6	,	,	PUNCT
cet-7000	64	7	2011	2011	NUM
cet-7000	64	8	,	,	PUNCT
cet-7000	64	9	multi	multi	VERB
cet-7000	64	10	objective	objective	ADJ
cet-7000	64	11	exergoenvirnomental	exergoenvirnomental	ADJ
cet-7000	64	12	optimization	optimization	NOUN
cet-7000	64	13	of	of	ADP
cet-7000	64	14	a	a	DET
cet-7000	64	15	combined	combine	VERB
cet-7000	64	16	heat	heat	NOUN
cet-7000	64	17	and	and	CCONJ
cet-7000	64	18	power	power	NOUN
cet-7000	64	19	(	(	PUNCT
cet-7000	64	20	chp	chp	NOUN
cet-7000	64	21	)	)	PUNCT
cet-7000	64	22	system	system	NOUN
cet-7000	64	23	in	in	ADP
cet-7000	64	24	a	a	DET
cet-7000	64	25	paper	paper	NOUN
cet-7000	64	26	mill	mill	NOUN
cet-7000	64	27	using	use	VERB
cet-7000	64	28	evolutionary	evolutionary	ADJ
cet-7000	64	29	algorithm	algorithm	NOUN
cet-7000	64	30	,	,	PUNCT
cet-7000	64	31	international	international	ADJ
cet-7000	64	32	journal	journal	NOUN
cet-7000	64	33	of	of	ADP
cet-7000	64	34	energy	energy	NOUN
cet-7000	64	35	research	research	NOUN
cet-7000	64	36	,	,	PUNCT
cet-7000	64	37	8(1	8(1	NOUN
cet-7000	64	38	)	)	PUNCT
cet-7000	64	39	,	,	PUNCT
cet-7000	64	40	44	44	NUM
cet-7000	64	41	-	-	SYM
cet-7000	64	42	64	64	NUM
cet-7000	64	43	.	.	PUNCT
cet-7000	65	1	kurt	kurt	PROPN
cet-7000	65	2	h.	h.	PROPN
cet-7000	65	3	,	,	PUNCT
cet-7000	65	4	recebli	recebli	PROPN
cet-7000	65	5	z.	z.	PROPN
cet-7000	65	6	,	,	PUNCT
cet-7000	65	7	gredik	gredik	PROPN
cet-7000	65	8	e.	e.	PROPN
cet-7000	65	9	,	,	PUNCT
cet-7000	65	10	2009	2009	NUM
cet-7000	65	11	,	,	PUNCT
cet-7000	65	12	performance	performance	NOUN
cet-7000	65	13	analysis	analysis	NOUN
cet-7000	65	14	of	of	ADP
cet-7000	65	15	open	open	ADJ
cet-7000	65	16	cycle	cycle	NOUN
cet-7000	65	17	gas	gas	NOUN
cet-7000	65	18	turbines	turbine	NOUN
cet-7000	65	19	,	,	PUNCT
cet-7000	65	20	international	international	ADJ
cet-7000	65	21	journal	journal	NOUN
cet-7000	65	22	of	of	ADP
cet-7000	65	23	energy	energy	NOUN
cet-7000	65	24	research	research	NOUN
cet-7000	65	25	,	,	PUNCT
cet-7000	65	26	33(2	33(2	NUM
cet-7000	65	27	)	)	PUNCT
cet-7000	65	28	,	,	PUNCT
cet-7000	65	29	285	285	NUM
cet-7000	65	30	-	-	SYM
cet-7000	65	31	294	294	NUM
cet-7000	65	32	.	.	PUNCT
cet-7000	65	33	mostajeran	mostajeran	NOUN
cet-7000	65	34	-	-	PUNCT
cet-7000	65	35	goortani	goortani	PROPN
cet-7000	65	36	b.	b.	PROPN
cet-7000	65	37	,	,	PUNCT
cet-7000	65	38	mateos	mateo	NOUN
cet-7000	65	39	-	-	PUNCT
cet-7000	65	40	espejel	espejel	PROPN
cet-7000	65	41	e.	e.	PROPN
cet-7000	65	42	,	,	PUNCT
cet-7000	65	43	paris	paris	PROPN
cet-7000	65	44	j.	j.	PROPN
cet-7000	65	45	,	,	PUNCT
cet-7000	65	46	2010	2010	NUM
cet-7000	65	47	,	,	PUNCT
cet-7000	65	48	integration	integration	NOUN
cet-7000	65	49	of	of	ADP
cet-7000	65	50	a	a	DET
cet-7000	65	51	cogeneration	cogeneration	NOUN
cet-7000	65	52	unit	unit	NOUN
cet-7000	65	53	into	into	ADP
cet-7000	65	54	a	a	DET
cet-7000	65	55	kraft	kraft	NOUN
cet-7000	65	56	pulping	pulp	VERB
cet-7000	65	57	process	process	NOUN
cet-7000	65	58	,	,	PUNCT
cet-7000	65	59	applied	apply	VERB
cet-7000	65	60	thermal	thermal	ADJ
cet-7000	65	61	engineering	engineering	NOUN
cet-7000	65	62	,	,	PUNCT
cet-7000	65	63	30	30	NUM
cet-7000	65	64	,	,	PUNCT
cet-7000	65	65	2724	2724	NUM
cet-7000	65	66	-	-	SYM
cet-7000	65	67	2729	2729	NUM
cet-7000	65	68	.	.	PUNCT
cet-7000	66	1	toffolo	toffolo	PROPN
cet-7000	66	2	a.	a.	PROPN
cet-7000	66	3	,	,	PUNCT
cet-7000	66	4	lazzaretto	lazzaretto	PROPN
cet-7000	66	5	a.	a.	NOUN
cet-7000	66	6	,	,	PUNCT
cet-7000	66	7	2002	2002	NUM
cet-7000	66	8	,	,	PUNCT
cet-7000	66	9	evolutionary	evolutionary	ADJ
cet-7000	66	10	algorithms	algorithm	NOUN
cet-7000	66	11	for	for	ADP
cet-7000	66	12	multi	multi	ADJ
cet-7000	66	13	-	-	ADJ
cet-7000	66	14	objective	objective	ADJ
cet-7000	66	15	energetic	energetic	ADJ
cet-7000	66	16	and	and	CCONJ
cet-7000	66	17	economic	economic	ADJ
cet-7000	66	18	optimization	optimization	NOUN
cet-7000	66	19	in	in	ADP
cet-7000	66	20	thermal	thermal	ADJ
cet-7000	66	21	system	system	NOUN
cet-7000	66	22	design	design	NOUN
cet-7000	66	23	,	,	PUNCT
cet-7000	66	24	energy	energy	NOUN
cet-7000	66	25	,	,	PUNCT
cet-7000	66	26	27	27	NUM
cet-7000	66	27	,	,	PUNCT
cet-7000	66	28	549	549	NUM
cet-7000	66	29	-	-	SYM
cet-7000	66	30	567	567	NUM
cet-7000	66	31	.	.	PUNCT
