id	sid	tid	token	lemma	pos
cet-367	1	1	microsoft	microsoft	PROPN
cet-367	1	2	word	word	NOUN
cet-367	1	3	211.docx	211.docx	NUM
cet-367	1	4	chemical	chemical	NOUN
cet-367	1	5	engineering	engineering	NOUN
cet-367	1	6	transactions	transaction	NOUN
cet-367	1	7	vol	vol	NOUN
cet-367	1	8	.	.	PROPN
cet-367	1	9	61	61	NUM
cet-367	1	10	,	,	PUNCT
cet-367	1	11	2017	2017	NUM
cet-367	1	12	a	a	DET
cet-367	1	13	publication	publication	NOUN
cet-367	1	14	of	of	ADP
cet-367	1	15	the	the	DET
cet-367	1	16	italian	italian	ADJ
cet-367	1	17	association	association	NOUN
cet-367	1	18	of	of	ADP
cet-367	1	19	chemical	chemical	PROPN
cet-367	1	20	engineering	engineering	NOUN
cet-367	1	21	online	online	ADV
cet-367	1	22	at	at	ADP
cet-367	1	23	www.aidic.it/cet	www.aidic.it/cet	PROPN
cet-367	1	24	guest	guest	NOUN
cet-367	1	25	editors	editor	NOUN
cet-367	1	26	:	:	PUNCT
cet-367	1	27	petar	petar	PROPN
cet-367	1	28	s	s	PART
cet-367	1	29	varbanov	varbanov	NOUN
cet-367	1	30	,	,	PUNCT
cet-367	1	31	rongxin	rongxin	PROPN
cet-367	1	32	su	su	PROPN
cet-367	1	33	,	,	PUNCT
cet-367	1	34	hon	hon	PROPN
cet-367	1	35	loong	loong	PROPN
cet-367	1	36	lam	lam	PROPN
cet-367	1	37	,	,	PUNCT
cet-367	1	38	xia	xia	PROPN
cet-367	1	39	liu	liu	PROPN
cet-367	1	40	,	,	PUNCT
cet-367	1	41	jiří	jiří	NOUN
cet-367	1	42	j	j	PROPN
cet-367	1	43	klemeš	klemeš	PROPN
cet-367	1	44	copyright	copyright	NOUN
cet-367	1	45	©	©	PROPN
cet-367	1	46	2017	2017	NUM
cet-367	1	47	,	,	PUNCT
cet-367	1	48	aidic	aidic	ADJ
cet-367	1	49	servizi	servizi	PROPN
cet-367	1	50	s.r.l	s.r.l	PROPN
cet-367	1	51	.	.	PUNCT
cet-367	2	1	isbn	isbn	ADJ
cet-367	2	2	978	978	NUM
cet-367	2	3	-	-	SYM
cet-367	2	4	88	88	NUM
cet-367	2	5	-	-	PUNCT
cet-367	2	6	95608	95608	NUM
cet-367	2	7	-	-	PUNCT
cet-367	2	8	51	51	NUM
cet-367	2	9	-	-	SYM
cet-367	2	10	8	8	NUM
cet-367	2	11	;	;	PUNCT
cet-367	2	12	issn	issn	PROPN
cet-367	2	13	2283	2283	NUM
cet-367	2	14	-	-	SYM
cet-367	2	15	9216	9216	NUM
cet-367	2	16	a	a	DET
cet-367	2	17	superstructure	superstructure	NOUN
cet-367	2	18	approach	approach	NOUN
cet-367	2	19	for	for	ADP
cet-367	2	20	the	the	DET
cet-367	2	21	design	design	NOUN
cet-367	2	22	of	of	ADP
cet-367	2	23	heating	heating	NOUN
cet-367	2	24	utility	utility	NOUN
cet-367	2	25	system	system	NOUN
cet-367	2	26	diban	diban	ADJ
cet-367	2	27	pitchaimuthu	pitchaimuthu	NOUN
cet-367	2	28	*	*	NOUN
cet-367	2	29	,	,	PUNCT
cet-367	2	30	jui	jui	ADJ
cet-367	2	31	-	-	PUNCT
cet-367	2	32	yuan	yuan	PROPN
cet-367	2	33	lee	lee	PROPN
cet-367	2	34	,	,	PUNCT
cet-367	2	35	mahmoud	mahmoud	PROPN
cet-367	2	36	el	el	PROPN
cet-367	2	37	-	-	PUNCT
cet-367	2	38	halwagi	halwagi	PROPN
cet-367	2	39	,	,	PUNCT
cet-367	2	40	dominic	dominic	PROPN
cet-367	2	41	c.	c.	PROPN
cet-367	2	42	y.	y.	PROPN
cet-367	2	43	foo	foo	PROPN
cet-367	2	44	centre	centre	PROPN
cet-367	2	45	of	of	ADP
cet-367	2	46	excellence	excellence	NOUN
cet-367	2	47	for	for	ADP
cet-367	2	48	green	green	ADJ
cet-367	2	49	technologies	technology	NOUN
cet-367	2	50	/	/	SYM
cet-367	2	51	department	department	NOUN
cet-367	2	52	of	of	ADP
cet-367	2	53	chemical	chemical	PROPN
cet-367	2	54	and	and	CCONJ
cet-367	2	55	environmental	environmental	ADJ
cet-367	2	56	engineering	engineering	NOUN
cet-367	2	57	,	,	PUNCT
cet-367	2	58	university	university	PROPN
cet-367	2	59	of	of	ADP
cet-367	2	60	nottingham	nottingham	PROPN
cet-367	2	61	malaysia	malaysia	PROPN
cet-367	2	62	,	,	PUNCT
cet-367	2	63	broga	broga	NOUN
cet-367	2	64	road	road	NOUN
cet-367	2	65	,	,	PUNCT
cet-367	2	66	43500	43500	NUM
cet-367	2	67	semenyih	semenyih	NOUN
cet-367	2	68	,	,	PUNCT
cet-367	2	69	selangor	selangor	PROPN
cet-367	2	70	,	,	PUNCT
cet-367	2	71	malaysia	malaysia	PROPN
cet-367	2	72	.	.	PUNCT
cet-367	3	1	done_87@yahoo.com	done_87@yahoo.com	PROPN
cet-367	3	2	heavy	heavy	ADJ
cet-367	3	3	crude	crude	ADJ
cet-367	3	4	oil	oil	NOUN
cet-367	3	5	produced	produce	VERB
cet-367	3	6	from	from	ADP
cet-367	3	7	reservoir	reservoir	PROPN
cet-367	3	8	normally	normally	ADV
cet-367	3	9	requires	require	VERB
cet-367	3	10	heating	heat	VERB
cet-367	3	11	in	in	ADP
cet-367	3	12	order	order	NOUN
cet-367	3	13	to	to	PART
cet-367	3	14	facilitate	facilitate	VERB
cet-367	3	15	proper	proper	ADJ
cet-367	3	16	oil	oil	NOUN
cet-367	3	17	water	water	NOUN
cet-367	3	18	separation	separation	NOUN
cet-367	3	19	at	at	ADP
cet-367	3	20	the	the	DET
cet-367	3	21	separator	separator	NOUN
cet-367	3	22	.	.	PUNCT
cet-367	4	1	providing	provide	VERB
cet-367	4	2	heat	heat	NOUN
cet-367	4	3	helps	help	VERB
cet-367	4	4	to	to	PART
cet-367	4	5	reduce	reduce	VERB
cet-367	4	6	the	the	DET
cet-367	4	7	viscosity	viscosity	NOUN
cet-367	4	8	of	of	ADP
cet-367	4	9	the	the	DET
cet-367	4	10	crude	crude	NOUN
cet-367	4	11	thus	thus	ADV
cet-367	4	12	reducing	reduce	VERB
cet-367	4	13	the	the	DET
cet-367	4	14	residence	residence	NOUN
cet-367	4	15	time	time	NOUN
cet-367	4	16	required	require	VERB
cet-367	4	17	at	at	ADP
cet-367	4	18	the	the	DET
cet-367	4	19	separator	separator	NOUN
cet-367	4	20	and	and	CCONJ
cet-367	4	21	its	its	PRON
cet-367	4	22	size	size	NOUN
cet-367	4	23	.	.	PUNCT
cet-367	5	1	in	in	ADP
cet-367	5	2	conventional	conventional	ADJ
cet-367	5	3	heating	heating	NOUN
cet-367	5	4	utility	utility	NOUN
cet-367	5	5	system	system	NOUN
cet-367	5	6	,	,	PUNCT
cet-367	5	7	the	the	DET
cet-367	5	8	heating	heating	NOUN
cet-367	5	9	medium	medium	NOUN
cet-367	5	10	is	be	AUX
cet-367	5	11	supplied	supply	VERB
cet-367	5	12	to	to	ADP
cet-367	5	13	its	its	PRON
cet-367	5	14	users	user	NOUN
cet-367	5	15	in	in	ADP
cet-367	5	16	parallel	parallel	ADJ
cet-367	5	17	design	design	NOUN
cet-367	5	18	where	where	SCONJ
cet-367	5	19	all	all	DET
cet-367	5	20	the	the	DET
cet-367	5	21	users	user	NOUN
cet-367	5	22	receive	receive	VERB
cet-367	5	23	the	the	DET
cet-367	5	24	heating	heating	NOUN
cet-367	5	25	medium	medium	NOUN
cet-367	5	26	at	at	ADP
cet-367	5	27	the	the	DET
cet-367	5	28	supply	supply	NOUN
cet-367	5	29	temperature	temperature	NOUN
cet-367	5	30	.	.	PUNCT
cet-367	6	1	this	this	DET
cet-367	6	2	design	design	NOUN
cet-367	6	3	however	however	ADV
cet-367	6	4	may	may	AUX
cet-367	6	5	lead	lead	VERB
cet-367	6	6	to	to	ADP
cet-367	6	7	overdesign	overdesign	VERB
cet-367	6	8	of	of	ADP
cet-367	6	9	the	the	DET
cet-367	6	10	heating	heating	NOUN
cet-367	6	11	utility	utility	NOUN
cet-367	6	12	system	system	NOUN
cet-367	6	13	.	.	PUNCT
cet-367	7	1	in	in	ADP
cet-367	7	2	this	this	DET
cet-367	7	3	paper	paper	NOUN
cet-367	7	4	,	,	PUNCT
cet-367	7	5	a	a	DET
cet-367	7	6	novel	novel	ADJ
cet-367	7	7	superstructure	superstructure	NOUN
cet-367	7	8	approach	approach	NOUN
cet-367	7	9	is	be	AUX
cet-367	7	10	proposed	propose	VERB
cet-367	7	11	to	to	PART
cet-367	7	12	determine	determine	VERB
cet-367	7	13	the	the	DET
cet-367	7	14	optimum	optimum	ADJ
cet-367	7	15	network	network	NOUN
cet-367	7	16	design	design	NOUN
cet-367	7	17	of	of	ADP
cet-367	7	18	the	the	DET
cet-367	7	19	heating	heating	NOUN
cet-367	7	20	medium	medium	NOUN
cet-367	7	21	system	system	NOUN
cet-367	7	22	with	with	ADP
cet-367	7	23	minimum	minimum	ADJ
cet-367	7	24	total	total	ADJ
cet-367	7	25	annualised	annualise	VERB
cet-367	7	26	cost	cost	NOUN
cet-367	7	27	.	.	PUNCT
cet-367	8	1	the	the	DET
cet-367	8	2	novelty	novelty	NOUN
cet-367	8	3	of	of	ADP
cet-367	8	4	this	this	DET
cet-367	8	5	approach	approach	NOUN
cet-367	8	6	is	be	AUX
cet-367	8	7	that	that	SCONJ
cet-367	8	8	it	it	PRON
cet-367	8	9	allows	allow	VERB
cet-367	8	10	determination	determination	NOUN
cet-367	8	11	of	of	ADP
cet-367	8	12	the	the	DET
cet-367	8	13	global	global	ADJ
cet-367	8	14	optimum	optimum	ADJ
cet-367	8	15	solution	solution	NOUN
cet-367	8	16	for	for	ADP
cet-367	8	17	the	the	DET
cet-367	8	18	system	system	NOUN
cet-367	8	19	while	while	SCONJ
cet-367	8	20	taking	take	VERB
cet-367	8	21	into	into	ADP
cet-367	8	22	consideration	consideration	NOUN
cet-367	8	23	of	of	ADP
cet-367	8	24	all	all	DET
cet-367	8	25	possible	possible	ADJ
cet-367	8	26	network	network	NOUN
cet-367	8	27	configuration	configuration	NOUN
cet-367	8	28	.	.	PUNCT
cet-367	9	1	the	the	DET
cet-367	9	2	approach	approach	NOUN
cet-367	9	3	caters	cater	VERB
cet-367	9	4	for	for	ADP
cet-367	9	5	capital	capital	NOUN
cet-367	9	6	and	and	CCONJ
cet-367	9	7	operating	operating	NOUN
cet-367	9	8	costs	cost	NOUN
cet-367	9	9	trade	trade	NOUN
cet-367	9	10	-	-	PUNCT
cet-367	9	11	off	off	NOUN
cet-367	9	12	for	for	ADP
cet-367	9	13	the	the	DET
cet-367	9	14	heat	heat	NOUN
cet-367	9	15	exchanger	exchanger	NOUN
cet-367	9	16	network	network	NOUN
cet-367	9	17	(	(	PUNCT
cet-367	9	18	hen	hen	NOUN
cet-367	9	19	)	)	PUNCT
cet-367	9	20	and	and	CCONJ
cet-367	9	21	waste	waste	NOUN
cet-367	9	22	heat	heat	NOUN
cet-367	9	23	recovery	recovery	NOUN
cet-367	9	24	unit	unit	NOUN
cet-367	9	25	(	(	PUNCT
cet-367	9	26	whru	whru	PROPN
cet-367	9	27	)	)	PUNCT
cet-367	9	28	in	in	ADP
cet-367	9	29	the	the	DET
cet-367	9	30	heating	heating	NOUN
cet-367	9	31	utility	utility	NOUN
cet-367	9	32	system	system	NOUN
cet-367	9	33	.	.	PUNCT
cet-367	10	1	an	an	DET
cet-367	10	2	industrial	industrial	ADJ
cet-367	10	3	case	case	NOUN
cet-367	10	4	study	study	NOUN
cet-367	10	5	is	be	AUX
cet-367	10	6	used	use	VERB
cet-367	10	7	to	to	PART
cet-367	10	8	elucidate	elucidate	VERB
cet-367	10	9	the	the	DET
cet-367	10	10	newly	newly	ADV
cet-367	10	11	proposed	propose	VERB
cet-367	10	12	technique	technique	NOUN
cet-367	10	13	.	.	PUNCT
cet-367	11	1	1	1	X
cet-367	11	2	.	.	X
cet-367	11	3	introduction	introduction	NOUN
cet-367	11	4	the	the	DET
cet-367	11	5	oil	oil	NOUN
cet-367	11	6	price	price	NOUN
cet-367	11	7	has	have	AUX
cet-367	11	8	suffered	suffer	VERB
cet-367	11	9	a	a	DET
cet-367	11	10	big	big	ADJ
cet-367	11	11	drop	drop	NOUN
cet-367	11	12	in	in	ADP
cet-367	11	13	recent	recent	ADJ
cet-367	11	14	years	year	NOUN
cet-367	11	15	from	from	ADP
cet-367	11	16	its	its	PRON
cet-367	11	17	all	all	DET
cet-367	11	18	-	-	PUNCT
cet-367	11	19	time	time	NOUN
cet-367	11	20	high	high	ADJ
cet-367	11	21	price	price	NOUN
cet-367	11	22	of	of	ADP
cet-367	11	23	usd	usd	NOUN
cet-367	11	24	146	146	NUM
cet-367	11	25	/	/	SYM
cet-367	11	26	bbl	bbl	PROPN
cet-367	11	27	in	in	ADP
cet-367	11	28	2006	2006	NUM
cet-367	11	29	(	(	PUNCT
cet-367	11	30	macrotrends	macrotrend	NOUN
cet-367	11	31	,	,	PUNCT
cet-367	11	32	2017	2017	NUM
cet-367	11	33	)	)	PUNCT
cet-367	11	34	.	.	PUNCT
cet-367	12	1	as	as	ADP
cet-367	12	2	a	a	DET
cet-367	12	3	consequence	consequence	NOUN
cet-367	12	4	,	,	PUNCT
cet-367	12	5	oil	oil	NOUN
cet-367	12	6	production	production	NOUN
cet-367	12	7	companies	company	NOUN
cet-367	12	8	have	have	VERB
cet-367	12	9	to	to	PART
cet-367	12	10	be	be	AUX
cet-367	12	11	more	more	ADV
cet-367	12	12	prudent	prudent	ADJ
cet-367	12	13	either	either	CCONJ
cet-367	12	14	in	in	ADP
cet-367	12	15	their	their	PRON
cet-367	12	16	new	new	ADJ
cet-367	12	17	exploration	exploration	NOUN
cet-367	12	18	or	or	CCONJ
cet-367	12	19	operation	operation	NOUN
cet-367	12	20	of	of	ADP
cet-367	12	21	their	their	PRON
cet-367	12	22	existing	exist	VERB
cet-367	12	23	facility	facility	NOUN
cet-367	12	24	in	in	ADP
cet-367	12	25	this	this	DET
cet-367	12	26	uncertain	uncertain	ADJ
cet-367	12	27	market	market	NOUN
cet-367	12	28	condition	condition	NOUN
cet-367	12	29	.	.	PUNCT
cet-367	13	1	a	a	DET
cet-367	13	2	few	few	ADJ
cet-367	13	3	potential	potential	ADJ
cet-367	13	4	improvements	improvement	NOUN
cet-367	13	5	in	in	ADP
cet-367	13	6	the	the	DET
cet-367	13	7	design	design	NOUN
cet-367	13	8	of	of	ADP
cet-367	13	9	the	the	DET
cet-367	13	10	existing	exist	VERB
cet-367	13	11	oil	oil	NOUN
cet-367	13	12	and	and	CCONJ
cet-367	13	13	gas	gas	NOUN
cet-367	13	14	platform	platform	NOUN
cet-367	13	15	were	be	AUX
cet-367	13	16	studied	study	VERB
cet-367	13	17	by	by	ADP
cet-367	13	18	nyugen	nyugen	PROPN
cet-367	13	19	et	et	PROPN
cet-367	13	20	al	al	PROPN
cet-367	13	21	.	.	PROPN
cet-367	13	22	(	(	PUNCT
cet-367	13	23	2016a	2016a	NUM
cet-367	13	24	)	)	PUNCT
cet-367	13	25	in	in	ADP
cet-367	13	26	their	their	PRON
cet-367	13	27	research	research	NOUN
cet-367	13	28	paper	paper	NOUN
cet-367	13	29	.	.	PUNCT
cet-367	14	1	they	they	PRON
cet-367	14	2	summarised	summarise	VERB
cet-367	14	3	that	that	DET
cet-367	14	4	modification	modification	NOUN
cet-367	14	5	such	such	ADJ
cet-367	14	6	as	as	ADP
cet-367	14	7	limiting	limit	VERB
cet-367	14	8	anti	anti	ADJ
cet-367	14	9	-	-	ADJ
cet-367	14	10	surge	surge	ADJ
cet-367	14	11	recirculation	recirculation	NOUN
cet-367	14	12	at	at	ADP
cet-367	14	13	the	the	DET
cet-367	14	14	gas	gas	NOUN
cet-367	14	15	compression	compression	NOUN
cet-367	14	16	,	,	PUNCT
cet-367	14	17	installation	installation	NOUN
cet-367	14	18	of	of	ADP
cet-367	14	19	multi	multi	ADJ
cet-367	14	20	-	-	NOUN
cet-367	14	21	level	level	ADJ
cet-367	14	22	(	(	PUNCT
cet-367	14	23	low	low	ADJ
cet-367	14	24	and	and	CCONJ
cet-367	14	25	high	high	ADJ
cet-367	14	26	pressure	pressure	NOUN
cet-367	14	27	)	)	PUNCT
cet-367	14	28	production	production	NOUN
cet-367	14	29	manifold	manifold	ADJ
cet-367	14	30	,	,	PUNCT
cet-367	14	31	and	and	CCONJ
cet-367	14	32	waste	waste	NOUN
cet-367	14	33	heat	heat	NOUN
cet-367	14	34	recovery	recovery	NOUN
cet-367	14	35	as	as	ADP
cet-367	14	36	having	have	VERB
cet-367	14	37	good	good	ADJ
cet-367	14	38	energy	energy	NOUN
cet-367	14	39	saving	saving	NOUN
cet-367	14	40	potential	potential	NOUN
cet-367	14	41	.	.	PUNCT
cet-367	15	1	other	other	ADJ
cet-367	15	2	energy	energy	NOUN
cet-367	15	3	efficiency	efficiency	NOUN
cet-367	15	4	improvements	improvement	NOUN
cet-367	15	5	such	such	ADJ
cet-367	15	6	as	as	ADP
cet-367	15	7	heat	heat	NOUN
cet-367	15	8	integration	integration	NOUN
cet-367	15	9	by	by	ADP
cet-367	15	10	direct	direct	ADJ
cet-367	15	11	heat	heat	NOUN
cet-367	15	12	exchange	exchange	NOUN
cet-367	15	13	between	between	ADP
cet-367	15	14	the	the	DET
cet-367	15	15	hot	hot	ADJ
cet-367	15	16	and	and	CCONJ
cet-367	15	17	cold	cold	ADJ
cet-367	15	18	process	process	NOUN
cet-367	15	19	streams	stream	NOUN
cet-367	15	20	was	be	AUX
cet-367	15	21	found	find	VERB
cet-367	15	22	not	not	PART
cet-367	15	23	viable	viable	ADJ
cet-367	15	24	due	due	ADP
cet-367	15	25	to	to	ADP
cet-367	15	26	operation	operation	NOUN
cet-367	15	27	reasons	reason	NOUN
cet-367	15	28	(	(	PUNCT
cet-367	15	29	nyugen	nyugen	X
cet-367	15	30	et	et	PROPN
cet-367	15	31	al	al	PROPN
cet-367	15	32	.	.	PROPN
cet-367	15	33	,	,	PUNCT
cet-367	15	34	2016b	2016b	NUM
cet-367	15	35	)	)	PUNCT
cet-367	15	36	.	.	PUNCT
cet-367	16	1	the	the	DET
cet-367	16	2	installation	installation	NOUN
cet-367	16	3	of	of	ADP
cet-367	16	4	organic	organic	ADJ
cet-367	16	5	rankine	rankine	PROPN
cet-367	16	6	cycle	cycle	NOUN
cet-367	16	7	orc	orc	PROPN
cet-367	16	8	(	(	PUNCT
cet-367	16	9	pierobon	pierobon	NOUN
cet-367	16	10	et	et	PROPN
cet-367	16	11	al	al	PROPN
cet-367	16	12	.	.	PROPN
cet-367	16	13	,	,	PUNCT
cet-367	16	14	2014	2014	NUM
cet-367	16	15	)	)	PUNCT
cet-367	16	16	or	or	CCONJ
cet-367	16	17	steam	steam	NOUN
cet-367	16	18	rankine	rankine	PROPN
cet-367	16	19	cycle	cycle	NOUN
cet-367	16	20	src	src	NOUN
cet-367	16	21	(	(	PUNCT
cet-367	16	22	nyugen	nyugen	PROPN
cet-367	16	23	et	et	PROPN
cet-367	16	24	al	al	PROPN
cet-367	16	25	.	.	PROPN
cet-367	16	26	,	,	PUNCT
cet-367	16	27	2014	2014	NUM
cet-367	16	28	)	)	PUNCT
cet-367	16	29	to	to	PART
cet-367	16	30	recover	recover	VERB
cet-367	16	31	waste	waste	NOUN
cet-367	16	32	heat	heat	NOUN
cet-367	16	33	is	be	AUX
cet-367	16	34	an	an	DET
cet-367	16	35	attractive	attractive	ADJ
cet-367	16	36	option	option	NOUN
cet-367	16	37	in	in	ADP
cet-367	16	38	the	the	DET
cet-367	16	39	near	near	ADJ
cet-367	16	40	future	future	NOUN
cet-367	16	41	.	.	PUNCT
cet-367	17	1	another	another	DET
cet-367	17	2	system	system	NOUN
cet-367	17	3	that	that	PRON
cet-367	17	4	has	have	VERB
cet-367	17	5	potential	potential	NOUN
cet-367	17	6	for	for	ADP
cet-367	17	7	improvement	improvement	NOUN
cet-367	17	8	but	but	CCONJ
cet-367	17	9	has	have	AUX
cet-367	17	10	been	be	AUX
cet-367	17	11	overlooked	overlook	VERB
cet-367	17	12	is	be	AUX
cet-367	17	13	the	the	DET
cet-367	17	14	heating	heating	NOUN
cet-367	17	15	utility	utility	NOUN
cet-367	17	16	system	system	NOUN
cet-367	17	17	.	.	PUNCT
cet-367	18	1	this	this	PRON
cet-367	18	2	is	be	AUX
cet-367	18	3	reported	report	VERB
cet-367	18	4	by	by	ADP
cet-367	18	5	de	de	PROPN
cet-367	18	6	oilivera	oilivera	NOUN
cet-367	18	7	and	and	CCONJ
cet-367	18	8	van	van	PROPN
cet-367	18	9	hombeeck	hombeeck	PROPN
cet-367	18	10	(	(	PUNCT
cet-367	18	11	1997	1997	NUM
cet-367	18	12	)	)	PUNCT
cet-367	18	13	that	that	SCONJ
cet-367	18	14	petroleum	petroleum	NOUN
cet-367	18	15	heating	heating	NOUN
cet-367	18	16	and	and	CCONJ
cet-367	18	17	separation	separation	NOUN
cet-367	18	18	steps	step	NOUN
cet-367	18	19	as	as	ADP
cet-367	18	20	the	the	DET
cet-367	18	21	most	most	ADV
cet-367	18	22	inefficient	inefficient	ADJ
cet-367	18	23	exergy	exergy	NOUN
cet-367	18	24	user	user	NOUN
cet-367	18	25	in	in	ADP
cet-367	18	26	oil	oil	NOUN
cet-367	18	27	and	and	CCONJ
cet-367	18	28	gas	gas	NOUN
cet-367	18	29	platform	platform	NOUN
cet-367	18	30	.	.	PUNCT
cet-367	19	1	the	the	DET
cet-367	19	2	heating	heating	NOUN
cet-367	19	3	utility	utility	NOUN
cet-367	19	4	system	system	NOUN
cet-367	19	5	is	be	AUX
cet-367	19	6	normally	normally	ADV
cet-367	19	7	used	use	VERB
cet-367	19	8	on	on	ADP
cet-367	19	9	offshore	offshore	ADJ
cet-367	19	10	platform	platform	NOUN
cet-367	19	11	when	when	SCONJ
cet-367	19	12	heavy	heavy	ADJ
cet-367	19	13	crude	crude	ADJ
cet-367	19	14	oil	oil	NOUN
cet-367	19	15	is	be	AUX
cet-367	19	16	produced	produce	VERB
cet-367	19	17	from	from	ADP
cet-367	19	18	the	the	DET
cet-367	19	19	reservoir	reservoir	NOUN
cet-367	19	20	.	.	PUNCT
cet-367	20	1	heating	heat	VERB
cet-367	20	2	the	the	DET
cet-367	20	3	heavy	heavy	ADJ
cet-367	20	4	crude	crude	NOUN
cet-367	20	5	helps	help	VERB
cet-367	20	6	to	to	PART
cet-367	20	7	reduce	reduce	VERB
cet-367	20	8	its	its	PRON
cet-367	20	9	viscosity	viscosity	NOUN
cet-367	20	10	thus	thus	ADV
cet-367	20	11	cutting	cut	VERB
cet-367	20	12	down	down	ADP
cet-367	20	13	the	the	DET
cet-367	20	14	residence	residence	NOUN
cet-367	20	15	time	time	NOUN
cet-367	20	16	required	require	VERB
cet-367	20	17	at	at	ADP
cet-367	20	18	the	the	DET
cet-367	20	19	separator	separator	NOUN
cet-367	20	20	and	and	CCONJ
cet-367	20	21	consequently	consequently	ADV
cet-367	20	22	its	its	PRON
cet-367	20	23	size	size	NOUN
cet-367	20	24	.	.	PUNCT
cet-367	21	1	common	common	ADJ
cet-367	21	2	heating	heating	NOUN
cet-367	21	3	media	medium	NOUN
cet-367	21	4	used	use	VERB
cet-367	21	5	in	in	ADP
cet-367	21	6	oil	oil	NOUN
cet-367	21	7	and	and	CCONJ
cet-367	21	8	gas	gas	NOUN
cet-367	21	9	platform	platform	NOUN
cet-367	21	10	are	be	AUX
cet-367	21	11	oil	oil	NOUN
cet-367	21	12	and	and	CCONJ
cet-367	21	13	water	water	NOUN
cet-367	21	14	due	due	ADP
cet-367	21	15	to	to	ADP
cet-367	21	16	their	their	PRON
cet-367	21	17	availability	availability	NOUN
cet-367	21	18	while	while	SCONJ
cet-367	21	19	ethylene	ethylene	NOUN
cet-367	21	20	glycol	glycol	NOUN
cet-367	21	21	is	be	AUX
cet-367	21	22	sometimes	sometimes	ADV
cet-367	21	23	used	use	VERB
cet-367	21	24	at	at	ADP
cet-367	21	25	offshore	offshore	ADJ
cet-367	21	26	location	location	NOUN
cet-367	21	27	with	with	ADP
cet-367	21	28	freezing	freeze	VERB
cet-367	21	29	temperature	temperature	NOUN
cet-367	21	30	.	.	PUNCT
cet-367	22	1	this	this	DET
cet-367	22	2	paper	paper	NOUN
cet-367	22	3	discusses	discuss	VERB
cet-367	22	4	a	a	DET
cet-367	22	5	systematic	systematic	ADJ
cet-367	22	6	approach	approach	NOUN
cet-367	22	7	based	base	VERB
cet-367	22	8	on	on	ADP
cet-367	22	9	superstructure	superstructure	NOUN
cet-367	22	10	method	method	NOUN
cet-367	22	11	in	in	ADP
cet-367	22	12	designing	design	VERB
cet-367	22	13	the	the	DET
cet-367	22	14	optimum	optimum	ADJ
cet-367	22	15	heating	heating	NOUN
cet-367	22	16	medium	medium	NOUN
cet-367	22	17	system	system	NOUN
cet-367	22	18	.	.	PUNCT
cet-367	23	1	heating	heating	NOUN
cet-367	23	2	utility	utility	NOUN
cet-367	23	3	system	system	NOUN
cet-367	23	4	like	like	ADP
cet-367	23	5	other	other	ADJ
cet-367	23	6	central	central	ADJ
cet-367	23	7	utility	utility	NOUN
cet-367	23	8	systems	system	NOUN
cet-367	23	9	is	be	AUX
cet-367	23	10	a	a	DET
cet-367	23	11	unique	unique	ADJ
cet-367	23	12	hiwn	hiwn	NOUN
cet-367	23	13	problem	problem	NOUN
cet-367	23	14	,	,	PUNCT
cet-367	23	15	as	as	SCONJ
cet-367	23	16	a	a	DET
cet-367	23	17	single	single	ADJ
cet-367	23	18	source	source	NOUN
cet-367	23	19	(	(	PUNCT
cet-367	23	20	heating	heating	NOUN
cet-367	23	21	medium	medium	NOUN
cet-367	23	22	)	)	PUNCT
cet-367	23	23	is	be	AUX
cet-367	23	24	used	use	VERB
cet-367	23	25	to	to	PART
cet-367	23	26	provide	provide	VERB
cet-367	23	27	heating	heating	NOUN
cet-367	23	28	requirement	requirement	NOUN
cet-367	23	29	to	to	ADP
cet-367	23	30	all	all	DET
cet-367	23	31	its	its	PRON
cet-367	23	32	users	user	NOUN
cet-367	23	33	.	.	PUNCT
cet-367	24	1	this	this	PRON
cet-367	24	2	is	be	AUX
cet-367	24	3	different	different	ADJ
cet-367	24	4	from	from	ADP
cet-367	24	5	the	the	DET
cet-367	24	6	conventional	conventional	ADJ
cet-367	24	7	heat	heat	NOUN
cet-367	24	8	exchange	exchange	NOUN
cet-367	24	9	network	network	NOUN
cet-367	24	10	(	(	PUNCT
cet-367	24	11	hen	hen	NOUN
cet-367	24	12	)	)	PUNCT
cet-367	24	13	whereby	whereby	SCONJ
cet-367	24	14	heat	heat	NOUN
cet-367	24	15	is	be	AUX
cet-367	24	16	integrated	integrate	VERB
cet-367	24	17	between	between	ADP
cet-367	24	18	process	process	NOUN
cet-367	24	19	streams	stream	NOUN
cet-367	24	20	and	and	CCONJ
cet-367	24	21	when	when	SCONJ
cet-367	24	22	there	there	PRON
cet-367	24	23	exist	exist	VERB
cet-367	24	24	insufficient	insufficient	ADJ
cet-367	24	25	or	or	CCONJ
cet-367	24	26	excess	excess	ADJ
cet-367	24	27	heat	heat	NOUN
cet-367	24	28	,	,	PUNCT
cet-367	24	29	steam	steam	NOUN
cet-367	24	30	or	or	CCONJ
cet-367	24	31	cooling	cool	VERB
cet-367	24	32	water	water	NOUN
cet-367	24	33	are	be	AUX
cet-367	24	34	used	use	VERB
cet-367	24	35	to	to	PART
cet-367	24	36	meet	meet	VERB
cet-367	24	37	the	the	DET
cet-367	24	38	demand	demand	NOUN
cet-367	24	39	of	of	ADP
cet-367	24	40	the	the	DET
cet-367	24	41	overall	overall	ADJ
cet-367	24	42	network	network	NOUN
cet-367	24	43	.	.	PUNCT
cet-367	25	1	the	the	DET
cet-367	25	2	steam	steam	NOUN
cet-367	25	3	and	and	CCONJ
cet-367	25	4	cooling	cool	VERB
cet-367	25	5	water	water	NOUN
cet-367	25	6	is	be	AUX
cet-367	25	7	assumed	assume	VERB
cet-367	25	8	able	able	ADJ
cet-367	25	9	to	to	PART
cet-367	25	10	be	be	AUX
cet-367	25	11	obtained	obtain	VERB
cet-367	25	12	from	from	ADP
cet-367	25	13	a	a	DET
cet-367	25	14	source	source	NOUN
cet-367	25	15	at	at	ADP
cet-367	25	16	particular	particular	ADJ
cet-367	25	17	price	price	NOUN
cet-367	25	18	.	.	PUNCT
cet-367	26	1	however	however	ADV
cet-367	26	2	,	,	PUNCT
cet-367	26	3	this	this	PRON
cet-367	26	4	is	be	AUX
cet-367	26	5	far	far	ADV
cet-367	26	6	from	from	ADP
cet-367	26	7	true	true	ADJ
cet-367	26	8	.	.	PUNCT
cet-367	27	1	in	in	ADP
cet-367	27	2	a	a	DET
cet-367	27	3	typical	typical	ADJ
cet-367	27	4	chemical	chemical	NOUN
cet-367	27	5	plant	plant	NOUN
cet-367	27	6	,	,	PUNCT
cet-367	27	7	the	the	DET
cet-367	27	8	heating	heating	NOUN
cet-367	27	9	or	or	CCONJ
cet-367	27	10	cooling	cool	VERB
cet-367	27	11	medium	medium	NOUN
cet-367	27	12	is	be	AUX
cet-367	27	13	generated	generate	VERB
cet-367	27	14	from	from	ADP
cet-367	27	15	a	a	DET
cet-367	27	16	utility	utility	NOUN
cet-367	27	17	system	system	NOUN
cet-367	27	18	.	.	PUNCT
cet-367	28	1	recent	recent	ADJ
cet-367	28	2	superstructure	superstructure	NOUN
cet-367	28	3	works	work	NOUN
cet-367	28	4	avoids	avoid	VERB
cet-367	28	5	the	the	DET
cet-367	28	6	consideration	consideration	NOUN
cet-367	28	7	of	of	ADP
cet-367	28	8	such	such	ADJ
cet-367	28	9	system	system	NOUN
cet-367	28	10	.	.	PUNCT
cet-367	29	1	due	due	ADP
cet-367	29	2	to	to	ADP
cet-367	29	3	this	this	PRON
cet-367	29	4	,	,	PUNCT
cet-367	29	5	their	their	PRON
cet-367	29	6	optimisation	optimisation	NOUN
cet-367	29	7	model	model	NOUN
cet-367	29	8	can	can	AUX
cet-367	29	9	not	not	PART
cet-367	29	10	be	be	AUX
cet-367	29	11	applied	apply	VERB
cet-367	29	12	directly	directly	ADV
cet-367	29	13	for	for	ADP
cet-367	29	14	design	design	NOUN
cet-367	29	15	of	of	ADP
cet-367	29	16	heating	heating	NOUN
cet-367	29	17	medium	medium	ADJ
cet-367	29	18	system	system	NOUN
cet-367	29	19	.	.	PUNCT
cet-367	30	1	there	there	PRON
cet-367	30	2	are	be	VERB
cet-367	30	3	a	a	DET
cet-367	30	4	few	few	ADJ
cet-367	30	5	handful	handful	NOUN
cet-367	30	6	research	research	NOUN
cet-367	30	7	works	work	NOUN
cet-367	30	8	carried	carry	VERB
cet-367	30	9	out	out	ADP
cet-367	30	10	on	on	ADP
cet-367	30	11	the	the	DET
cet-367	30	12	design	design	NOUN
cet-367	30	13	of	of	ADP
cet-367	30	14	doi	doi	NOUN
cet-367	30	15	:	:	PUNCT
cet-367	30	16	10.3303	10.3303	NUM
cet-367	30	17	/	/	SYM
cet-367	30	18	cet1761314	cet1761314	NOUN
cet-367	30	19	please	please	INTJ
cet-367	30	20	cite	cite	VERB
cet-367	30	21	this	this	DET
cet-367	30	22	article	article	NOUN
cet-367	30	23	as	as	ADP
cet-367	30	24	:	:	PUNCT
cet-367	30	25	pitchaimuthu	pitchaimuthu	PROPN
cet-367	30	26	d.	d.	PROPN
cet-367	30	27	,	,	PUNCT
cet-367	30	28	lee	lee	PROPN
cet-367	30	29	j.-y	j.-y	PROPN
cet-367	30	30	.	.	PROPN
cet-367	30	31	,	,	PUNCT
cet-367	30	32	el	el	PROPN
cet-367	30	33	-	-	PUNCT
cet-367	30	34	halwagi	halwagi	ADJ
cet-367	30	35	m.	m.	NOUN
cet-367	30	36	,	,	PUNCT
cet-367	30	37	foo	foo	PROPN
cet-367	30	38	d.c.y	d.c.y	NOUN
cet-367	30	39	.	.	PUNCT
cet-367	30	40	,	,	PUNCT
cet-367	30	41	2017	2017	NUM
cet-367	30	42	,	,	PUNCT
cet-367	30	43	a	a	DET
cet-367	30	44	superstructure	superstructure	NOUN
cet-367	30	45	approach	approach	NOUN
cet-367	30	46	for	for	ADP
cet-367	30	47	the	the	DET
cet-367	30	48	design	design	NOUN
cet-367	30	49	of	of	ADP
cet-367	30	50	heating	heating	NOUN
cet-367	30	51	utility	utility	NOUN
cet-367	30	52	system	system	NOUN
cet-367	30	53	,	,	PUNCT
cet-367	30	54	chemical	chemical	NOUN
cet-367	30	55	engineering	engineering	NOUN
cet-367	30	56	transactions	transaction	NOUN
cet-367	30	57	,	,	PUNCT
cet-367	30	58	61	61	NUM
cet-367	30	59	,	,	PUNCT
cet-367	30	60	1897	1897	NUM
cet-367	30	61	-	-	SYM
cet-367	30	62	1902	1902	NUM
cet-367	30	63	doi:10.3303	doi:10.3303	NOUN
cet-367	30	64	/	/	SYM
cet-367	30	65	cet1761314	cet1761314	NOUN
cet-367	30	66	1897	1897	NUM
cet-367	30	67	central	central	ADJ
cet-367	30	68	utility	utility	NOUN
cet-367	30	69	systems	system	NOUN
cet-367	30	70	.	.	PUNCT
cet-367	31	1	some	some	DET
cet-367	31	2	graphical	graphical	ADJ
cet-367	31	3	approaches	approach	NOUN
cet-367	31	4	were	be	AUX
cet-367	31	5	proposed	propose	VERB
cet-367	31	6	to	to	PART
cet-367	31	7	target	target	VERB
cet-367	31	8	the	the	DET
cet-367	31	9	minimum	minimum	ADJ
cet-367	31	10	flowrate	flowrate	NOUN
cet-367	31	11	for	for	ADP
cet-367	31	12	cooling	cool	VERB
cet-367	31	13	water	water	NOUN
cet-367	31	14	network	network	NOUN
cet-367	31	15	(	(	PUNCT
cet-367	31	16	kim	kim	PROPN
cet-367	31	17	and	and	CCONJ
cet-367	31	18	smith	smith	PROPN
cet-367	31	19	,	,	PUNCT
cet-367	31	20	2001	2001	NUM
cet-367	31	21	)	)	PUNCT
cet-367	31	22	and	and	CCONJ
cet-367	31	23	chilled	chill	VERB
cet-367	31	24	water	water	NOUN
cet-367	31	25	network	network	NOUN
cet-367	31	26	(	(	PUNCT
cet-367	31	27	foo	foo	NOUN
cet-367	31	28	et	et	PROPN
cet-367	31	29	al	al	PROPN
cet-367	31	30	.	.	PROPN
cet-367	31	31	,	,	PUNCT
cet-367	31	32	2014	2014	NUM
cet-367	31	33	)	)	PUNCT
cet-367	31	34	,	,	PUNCT
cet-367	31	35	while	while	SCONJ
cet-367	31	36	ataei	ataei	VERB
cet-367	31	37	et	et	PROPN
cet-367	31	38	al	al	PROPN
cet-367	31	39	.	.	PROPN
cet-367	32	1	(	(	PUNCT
cet-367	32	2	2014	2014	NUM
cet-367	32	3	)	)	PUNCT
cet-367	32	4	proposed	propose	VERB
cet-367	32	5	a	a	DET
cet-367	32	6	similar	similar	ADJ
cet-367	32	7	approach	approach	NOUN
cet-367	32	8	for	for	ADP
cet-367	32	9	hot	hot	ADJ
cet-367	32	10	oil	oil	NOUN
cet-367	32	11	system	system	NOUN
cet-367	32	12	which	which	PRON
cet-367	32	13	closely	closely	ADV
cet-367	32	14	resembles	resemble	VERB
cet-367	32	15	heating	heating	NOUN
cet-367	32	16	utility	utility	NOUN
cet-367	32	17	system	system	NOUN
cet-367	32	18	.	.	PUNCT
cet-367	33	1	it	it	PRON
cet-367	33	2	is	be	AUX
cet-367	33	3	to	to	PART
cet-367	33	4	be	be	AUX
cet-367	33	5	highlighted	highlight	VERB
cet-367	33	6	that	that	SCONJ
cet-367	33	7	their	their	PRON
cet-367	33	8	works	work	NOUN
cet-367	33	9	did	do	AUX
cet-367	33	10	not	not	PART
cet-367	33	11	find	find	VERB
cet-367	33	12	the	the	DET
cet-367	33	13	optimum	optimum	ADJ
cet-367	33	14	overall	overall	ADJ
cet-367	33	15	cost	cost	NOUN
cet-367	33	16	of	of	ADP
cet-367	33	17	the	the	DET
cet-367	33	18	system	system	NOUN
cet-367	33	19	rather	rather	ADV
cet-367	33	20	only	only	ADV
cet-367	33	21	optimum	optimum	ADJ
cet-367	33	22	heating	heating	NOUN
cet-367	33	23	medium	medium	ADJ
cet-367	33	24	flowrate	flowrate	ADJ
cet-367	33	25	.	.	PUNCT
cet-367	34	1	on	on	ADP
cet-367	34	2	the	the	DET
cet-367	34	3	other	other	ADJ
cet-367	34	4	hand	hand	NOUN
cet-367	34	5	,	,	PUNCT
cet-367	34	6	bade	bade	NOUN
cet-367	34	7	and	and	CCONJ
cet-367	34	8	bandyopadhyay	bandyopadhyay	NOUN
cet-367	34	9	(	(	PUNCT
cet-367	34	10	2014	2014	NUM
cet-367	34	11	)	)	PUNCT
cet-367	34	12	proposed	propose	VERB
cet-367	34	13	an	an	DET
cet-367	34	14	iterative	iterative	NOUN
cet-367	34	15	approach	approach	NOUN
cet-367	34	16	to	to	PART
cet-367	34	17	determine	determine	VERB
cet-367	34	18	the	the	DET
cet-367	34	19	optimum	optimum	ADJ
cet-367	34	20	total	total	ADJ
cet-367	34	21	overall	overall	ADJ
cet-367	34	22	cost	cost	NOUN
cet-367	34	23	solution	solution	NOUN
cet-367	34	24	for	for	ADP
cet-367	34	25	the	the	DET
cet-367	34	26	hot	hot	ADJ
cet-367	34	27	oil	oil	NOUN
cet-367	34	28	system	system	NOUN
cet-367	34	29	.	.	PUNCT
cet-367	35	1	in	in	ADP
cet-367	35	2	their	their	PRON
cet-367	35	3	approach	approach	NOUN
cet-367	35	4	,	,	PUNCT
cet-367	35	5	they	they	PRON
cet-367	35	6	varied	vary	VERB
cet-367	35	7	the	the	DET
cet-367	35	8	minimum	minimum	ADJ
cet-367	35	9	approach	approach	NOUN
cet-367	35	10	temperature	temperature	NOUN
cet-367	35	11	(	(	PUNCT
cet-367	35	12	δtmin	δtmin	NOUN
cet-367	35	13	)	)	PUNCT
cet-367	35	14	to	to	PART
cet-367	35	15	calculate	calculate	VERB
cet-367	35	16	the	the	DET
cet-367	35	17	minimum	minimum	ADJ
cet-367	35	18	flowrate	flowrate	NOUN
cet-367	35	19	and	and	CCONJ
cet-367	35	20	the	the	DET
cet-367	35	21	respective	respective	ADJ
cet-367	35	22	area	area	NOUN
cet-367	35	23	required	require	VERB
cet-367	35	24	for	for	ADP
cet-367	35	25	the	the	DET
cet-367	35	26	network	network	NOUN
cet-367	35	27	.	.	PUNCT
cet-367	36	1	the	the	DET
cet-367	36	2	downside	downside	NOUN
cet-367	36	3	of	of	ADP
cet-367	36	4	their	their	PRON
cet-367	36	5	proposed	propose	VERB
cet-367	36	6	method	method	NOUN
cet-367	36	7	is	be	AUX
cet-367	36	8	that	that	SCONJ
cet-367	36	9	it	it	PRON
cet-367	36	10	is	be	AUX
cet-367	36	11	a	a	DET
cet-367	36	12	time	time	NOUN
cet-367	36	13	-	-	PUNCT
cet-367	36	14	consuming	consume	VERB
cet-367	36	15	process	process	NOUN
cet-367	36	16	,	,	PUNCT
cet-367	36	17	as	as	SCONJ
cet-367	36	18	detailed	detailed	ADJ
cet-367	36	19	network	network	NOUN
cet-367	36	20	for	for	ADP
cet-367	36	21	different	different	ADJ
cet-367	36	22	δtmin	δtmin	NOUN
cet-367	36	23	values	value	NOUN
cet-367	36	24	needs	need	VERB
cet-367	36	25	to	to	PART
cet-367	36	26	be	be	AUX
cet-367	36	27	determined	determine	VERB
cet-367	36	28	,	,	PUNCT
cet-367	36	29	before	before	SCONJ
cet-367	36	30	the	the	DET
cet-367	36	31	total	total	ADJ
cet-367	36	32	cost	cost	NOUN
cet-367	36	33	can	can	AUX
cet-367	36	34	be	be	AUX
cet-367	36	35	calculated	calculate	VERB
cet-367	36	36	.	.	PUNCT
cet-367	37	1	besides	besides	SCONJ
cet-367	37	2	,	,	PUNCT
cet-367	37	3	their	their	PRON
cet-367	37	4	approach	approach	NOUN
cet-367	37	5	does	do	AUX
cet-367	37	6	not	not	PART
cet-367	37	7	guarantee	guarantee	VERB
cet-367	37	8	global	global	ADJ
cet-367	37	9	optimum	optimum	NOUN
cet-367	37	10	.	.	PUNCT
cet-367	38	1	the	the	DET
cet-367	38	2	proposed	propose	VERB
cet-367	38	3	new	new	ADJ
cet-367	38	4	superstructure	superstructure	NOUN
cet-367	38	5	model	model	NOUN
cet-367	38	6	that	that	PRON
cet-367	38	7	is	be	AUX
cet-367	38	8	presented	present	VERB
cet-367	38	9	guarantees	guarantee	VERB
cet-367	38	10	global	global	ADJ
cet-367	38	11	optimum	optimum	NOUN
cet-367	38	12	for	for	ADP
cet-367	38	13	the	the	DET
cet-367	38	14	utility	utility	NOUN
cet-367	38	15	system	system	NOUN
cet-367	38	16	which	which	PRON
cet-367	38	17	is	be	AUX
cet-367	38	18	not	not	PART
cet-367	38	19	considered	consider	VERB
cet-367	38	20	in	in	ADP
cet-367	38	21	conventional	conventional	ADJ
cet-367	38	22	hen	hen	NOUN
cet-367	38	23	model	model	NOUN
cet-367	38	24	.	.	PUNCT
cet-367	39	1	2	2	X
cet-367	39	2	.	.	X
cet-367	39	3	heating	heating	NOUN
cet-367	39	4	utility	utility	NOUN
cet-367	39	5	system	system	NOUN
cet-367	39	6	problem	problem	NOUN
cet-367	39	7	statement	statement	NOUN
cet-367	39	8	for	for	ADP
cet-367	39	9	a	a	DET
cet-367	39	10	given	give	VERB
cet-367	39	11	set	set	NOUN
cet-367	39	12	of	of	ADP
cet-367	39	13	heating	heating	NOUN
cet-367	39	14	medium	medium	ADJ
cet-367	39	15	user	user	NOUN
cet-367	39	16	(	(	PUNCT
cet-367	39	17	heat	heat	NOUN
cet-367	39	18	exchangers	exchanger	NOUN
cet-367	39	19	)	)	PUNCT
cet-367	39	20	m	m	VERB
cet-367	39	21	ϵ	ϵ	NOUN
cet-367	39	22	m	m	PROPN
cet-367	39	23	,	,	PUNCT
cet-367	39	24	each	each	PRON
cet-367	39	25	with	with	ADP
cet-367	39	26	a	a	DET
cet-367	39	27	fixed	fix	VERB
cet-367	39	28	heat	heat	NOUN
cet-367	39	29	load	load	NOUN
cet-367	39	30	qm	qm	PROPN
cet-367	39	31	to	to	PART
cet-367	39	32	be	be	AUX
cet-367	39	33	provided	provide	VERB
cet-367	39	34	by	by	ADP
cet-367	39	35	the	the	DET
cet-367	39	36	heating	heating	NOUN
cet-367	39	37	medium	medium	NOUN
cet-367	39	38	(	(	PUNCT
cet-367	39	39	water	water	NOUN
cet-367	39	40	,	,	PUNCT
cet-367	39	41	hot	hot	ADJ
cet-367	39	42	oil	oil	NOUN
cet-367	39	43	or	or	CCONJ
cet-367	39	44	glycol	glycol	NOUN
cet-367	39	45	)	)	PUNCT
cet-367	39	46	,	,	PUNCT
cet-367	39	47	and	and	CCONJ
cet-367	39	48	with	with	ADP
cet-367	39	49	specified	specify	VERB
cet-367	39	50	maximum	maximum	ADJ
cet-367	39	51	inlet	inlet	NOUN
cet-367	39	52	(	(	PUNCT
cet-367	39	53	t	t	NOUN
cet-367	39	54	in	in	ADP
cet-367	39	55	,	,	PUNCT
cet-367	39	56	m	m	PROPN
cet-367	39	57	)	)	PUNCT
cet-367	39	58	and	and	CCONJ
cet-367	39	59	outlet	outlet	NOUN
cet-367	39	60	(	(	PUNCT
cet-367	39	61	tout	tout	PROPN
cet-367	39	62	,	,	PUNCT
cet-367	39	63	m	m	NOUN
cet-367	39	64	)	)	PUNCT
cet-367	39	65	temperatures	temperature	NOUN
cet-367	39	66	.	.	PUNCT
cet-367	40	1	the	the	DET
cet-367	40	2	heating	heating	NOUN
cet-367	40	3	medium	medium	NOUN
cet-367	40	4	(	(	PUNCT
cet-367	40	5	with	with	ADP
cet-367	40	6	return	return	NOUN
cet-367	40	7	temperature	temperature	NOUN
cet-367	40	8	thmr	thmr	NOUN
cet-367	40	9	)	)	PUNCT
cet-367	40	10	is	be	AUX
cet-367	40	11	reheated	reheat	VERB
cet-367	40	12	using	use	VERB
cet-367	40	13	whru	whru	NOUN
cet-367	40	14	using	use	VERB
cet-367	40	15	exhaust	exhaust	ADJ
cet-367	40	16	gas	gas	NOUN
cet-367	40	17	from	from	ADP
cet-367	40	18	gas	gas	NOUN
cet-367	40	19	turbine	turbine	NOUN
cet-367	40	20	generator	generator	NOUN
cet-367	40	21	and	and	CCONJ
cet-367	40	22	gas	gas	NOUN
cet-367	40	23	turbine	turbine	NOUN
cet-367	40	24	compressor	compressor	NOUN
cet-367	40	25	at	at	ADP
cet-367	40	26	specified	specify	VERB
cet-367	40	27	maximum	maximum	ADJ
cet-367	40	28	inlet	inlet	NOUN
cet-367	40	29	(	(	PUNCT
cet-367	40	30	t	t	NOUN
cet-367	40	31	in	in	ADV
cet-367	40	32	,	,	PUNCT
cet-367	40	33	g	g	NOUN
cet-367	40	34	)	)	PUNCT
cet-367	40	35	and	and	CCONJ
cet-367	40	36	outlet	outlet	NOUN
cet-367	40	37	(	(	PUNCT
cet-367	40	38	tout	tout	PROPN
cet-367	40	39	,	,	PUNCT
cet-367	40	40	g	g	NOUN
cet-367	40	41	)	)	PUNCT
cet-367	40	42	temperatures	temperature	NOUN
cet-367	40	43	.	.	PUNCT
cet-367	41	1	the	the	DET
cet-367	41	2	reheated	reheat	VERB
cet-367	41	3	heating	heating	NOUN
cet-367	41	4	medium	medium	NOUN
cet-367	41	5	at	at	ADP
cet-367	41	6	circulation	circulation	NOUN
cet-367	41	7	temperature	temperature	NOUN
cet-367	41	8	(	(	PUNCT
cet-367	41	9	thm	thm	PROPN
cet-367	41	10	)	)	PUNCT
cet-367	41	11	is	be	AUX
cet-367	41	12	re	re	VERB
cet-367	41	13	-	-	VERB
cet-367	41	14	circulated	circulate	VERB
cet-367	41	15	among	among	ADP
cet-367	41	16	the	the	DET
cet-367	41	17	heating	heating	NOUN
cet-367	41	18	medium	medium	NOUN
cet-367	41	19	users	user	NOUN
cet-367	41	20	to	to	PART
cet-367	41	21	provide	provide	VERB
cet-367	41	22	the	the	DET
cet-367	41	23	necessary	necessary	ADJ
cet-367	41	24	heating	heating	NOUN
cet-367	41	25	.	.	PUNCT
cet-367	42	1	the	the	DET
cet-367	42	2	main	main	ADJ
cet-367	42	3	objective	objective	NOUN
cet-367	42	4	is	be	AUX
cet-367	42	5	to	to	PART
cet-367	42	6	synthesise	synthesise	VERB
cet-367	42	7	an	an	DET
cet-367	42	8	optimum	optimum	ADJ
cet-367	42	9	heating	heating	NOUN
cet-367	42	10	medium	medium	NOUN
cet-367	42	11	network	network	NOUN
cet-367	42	12	,	,	PUNCT
cet-367	42	13	that	that	PRON
cet-367	42	14	have	have	VERB
cet-367	42	15	the	the	DET
cet-367	42	16	lowest	low	ADJ
cet-367	42	17	total	total	ADJ
cet-367	42	18	overall	overall	ADJ
cet-367	42	19	cost	cost	NOUN
cet-367	42	20	while	while	SCONJ
cet-367	42	21	meeting	meet	VERB
cet-367	42	22	the	the	DET
cet-367	42	23	heat	heat	NOUN
cet-367	42	24	load	load	NOUN
cet-367	42	25	requirements	requirement	NOUN
cet-367	42	26	of	of	ADP
cet-367	42	27	all	all	DET
cet-367	42	28	heating	heat	VERB
cet-367	42	29	medium	medium	ADJ
cet-367	42	30	users	user	NOUN
cet-367	42	31	.	.	PUNCT
cet-367	43	1	from	from	ADP
cet-367	43	2	nitrogen	nitrogen	NOUN
cet-367	43	3	system	system	NOUN
cet-367	43	4	waste	waste	NOUN
cet-367	43	5	heat	heat	PROPN
cet-367	43	6	recovery	recovery	NOUN
cet-367	43	7	unit	unit	NOUN
cet-367	43	8	heating	heat	VERB
cet-367	43	9	medium	medium	NOUN
cet-367	43	10	make	make	NOUN
cet-367	43	11	mp	mp	NOUN
cet-367	43	12	heating	heating	NOUN
cet-367	43	13	medium	medium	ADJ
cet-367	43	14	pump	pump	NOUN
cet-367	43	15	h	h	NOUN
cet-367	43	16	e	e	NOUN
cet-367	43	17	a	a	DET
cet-367	43	18	ti	ti	NOUN
cet-367	43	19	n	n	CCONJ
cet-367	43	20	g	g	NOUN
cet-367	43	21	m	m	PROPN
cet-367	43	22	e	e	NOUN
cet-367	43	23	d	d	NOUN
cet-367	43	24	iu	iu	ADP
cet-367	43	25	m	m	PROPN
cet-367	43	26	s	s	NOUN
cet-367	43	27	u	u	NOUN
cet-367	43	28	p	p	NOUN
cet-367	43	29	p	p	X
cet-367	43	30	ly	ly	ADP
cet-367	43	31	h	h	NOUN
cet-367	43	32	e	e	PROPN
cet-367	43	33	a	a	X
cet-367	43	34	d	d	X
cet-367	43	35	e	e	NOUN
cet-367	43	36	r	r	NOUN
cet-367	43	37	h	h	NOUN
cet-367	43	38	e	e	NOUN
cet-367	43	39	a	a	DET
cet-367	43	40	ti	ti	NOUN
cet-367	43	41	n	n	CCONJ
cet-367	43	42	g	g	NOUN
cet-367	43	43	m	m	PROPN
cet-367	43	44	e	e	NOUN
cet-367	43	45	d	d	NOUN
cet-367	43	46	iu	iu	ADP
cet-367	43	47	m	m	PROPN
cet-367	43	48	r	r	NOUN
cet-367	43	49	e	e	X
cet-367	43	50	tu	tu	PROPN
cet-367	43	51	rn	rn	PROPN
cet-367	43	52	h	h	PROPN
cet-367	43	53	e	e	PROPN
cet-367	43	54	a	a	PROPN
cet-367	43	55	d	d	X
cet-367	43	56	e	e	NOUN
cet-367	43	57	r	r	NOUN
cet-367	43	58	heating	heating	NOUN
cet-367	43	59	medium	medium	ADJ
cet-367	43	60	dump	dump	NOUN
cet-367	43	61	cooler	cooler	NOUN
cet-367	43	62	sea	sea	NOUN
cet-367	43	63	water	water	NOUN
cet-367	43	64	supply	supply	PROPN
cet-367	43	65	sea	sea	NOUN
cet-367	43	66	water	water	NOUN
cet-367	43	67	return	return	VERB
cet-367	43	68	tc	tc	PRON
cet-367	43	69	lc	lc	NOUN
cet-367	43	70	nnf	nnf	NOUN
cet-367	43	71	=	=	PRON
cet-367	43	72	normally	normally	ADV
cet-367	43	73	no	no	DET
cet-367	43	74	flow	flow	NOUN
cet-367	43	75	nnf	nnf	NOUN
cet-367	43	76	nnf	nnf	NOUN
cet-367	43	77	nnf	nnf	NOUN
cet-367	43	78	nnf	nnf	NOUN
cet-367	43	79	hp	hp	PROPN
cet-367	43	80	flare	flare	NOUN
cet-367	43	81	knock	knock	NOUN
cet-367	43	82	-	-	PUNCT
cet-367	43	83	out	out	ADP
cet-367	43	84	drum	drum	NOUN
cet-367	43	85	heater	heater	NOUN
cet-367	43	86	flue	flue	NOUN
cet-367	43	87	gas	gas	NOUN
cet-367	43	88	to	to	AUX
cet-367	43	89	atm	atm	NOUN
cet-367	43	90	closed	close	VERB
cet-367	43	91	drain	drain	NOUN
cet-367	43	92	drum	drum	NOUN
cet-367	43	93	heater	heater	NOUN
cet-367	43	94	heavy	heavy	ADJ
cet-367	43	95	oil	oil	NOUN
cet-367	43	96	heater	heater	NOUN
cet-367	43	97	light	light	NOUN
cet-367	43	98	oil	oil	NOUN
cet-367	43	99	heater	heater	NOUN
cet-367	43	100	crude	crude	ADJ
cet-367	43	101	oil	oil	NOUN
cet-367	43	102	heater	heater	NOUN
cet-367	43	103	diesel	diesel	NOUN
cet-367	43	104	flushing/	flushing/	NUM
cet-367	43	105	pigging	pigging	NOUN
cet-367	43	106	heater	heater	NOUN
cet-367	43	107	test	test	NOUN
cet-367	43	108	separator	separator	NOUN
cet-367	43	109	heater	heater	NOUN
cet-367	43	110	figure	figure	NOUN
cet-367	43	111	1	1	NUM
cet-367	43	112	:	:	PUNCT
cet-367	43	113	pfd	pfd	NOUN
cet-367	43	114	of	of	ADP
cet-367	43	115	heating	heating	NOUN
cet-367	43	116	utility	utility	NOUN
cet-367	43	117	system	system	NOUN
cet-367	43	118	for	for	ADP
cet-367	43	119	an	an	DET
cet-367	43	120	offshore	offshore	ADJ
cet-367	43	121	platform	platform	NOUN
cet-367	43	122	3	3	NUM
cet-367	43	123	.	.	PUNCT
cet-367	43	124	superstructure	superstructure	NOUN
cet-367	43	125	model	model	NOUN
cet-367	43	126	for	for	ADP
cet-367	43	127	hen	hen	NOUN
cet-367	43	128	the	the	DET
cet-367	43	129	general	general	ADJ
cet-367	43	130	superstructure	superstructure	NOUN
cet-367	43	131	model	model	NOUN
cet-367	43	132	for	for	ADP
cet-367	43	133	heating	heating	NOUN
cet-367	43	134	utility	utility	NOUN
cet-367	43	135	system	system	NOUN
cet-367	43	136	is	be	AUX
cet-367	43	137	shown	show	VERB
cet-367	43	138	in	in	ADP
cet-367	43	139	figure	figure	NOUN
cet-367	43	140	2	2	NUM
cet-367	43	141	.	.	PUNCT
cet-367	44	1	the	the	DET
cet-367	44	2	model	model	NOUN
cet-367	44	3	is	be	AUX
cet-367	44	4	a	a	DET
cet-367	44	5	generic	generic	ADJ
cet-367	44	6	representation	representation	NOUN
cet-367	44	7	of	of	ADP
cet-367	44	8	a	a	DET
cet-367	44	9	single	single	ADJ
cet-367	44	10	heating	heating	NOUN
cet-367	44	11	medium	medium	NOUN
cet-367	44	12	user	user	NOUN
cet-367	44	13	in	in	ADP
cet-367	44	14	the	the	DET
cet-367	44	15	system	system	NOUN
cet-367	44	16	.	.	PUNCT
cet-367	45	1	for	for	ADP
cet-367	45	2	every	every	DET
cet-367	45	3	user	user	NOUN
cet-367	45	4	,	,	PUNCT
cet-367	45	5	the	the	DET
cet-367	45	6	heating	heating	NOUN
cet-367	45	7	medium	medium	NOUN
cet-367	45	8	at	at	ADP
cet-367	45	9	supply	supply	NOUN
cet-367	45	10	temperature	temperature	NOUN
cet-367	45	11	(	(	PUNCT
cet-367	45	12	fhm	fhm	PROPN
cet-367	45	13	)	)	PUNCT
cet-367	45	14	is	be	AUX
cet-367	45	15	allowed	allow	VERB
cet-367	45	16	to	to	PART
cet-367	45	17	mix	mix	VERB
cet-367	45	18	with	with	ADP
cet-367	45	19	the	the	DET
cet-367	45	20	used	use	VERB
cet-367	45	21	heating	heating	NOUN
cet-367	45	22	medium	medium	NOUN
cet-367	45	23	from	from	ADP
cet-367	45	24	its	its	PRON
cet-367	45	25	own	own	ADJ
cet-367	45	26	or	or	CCONJ
cet-367	45	27	other	other	ADJ
cet-367	45	28	users	user	NOUN
cet-367	45	29	(	(	PUNCT
cet-367	45	30	fm’,m	fm’,m	NOUN
cet-367	45	31	)	)	PUNCT
cet-367	45	32	at	at	ADP
cet-367	45	33	the	the	DET
cet-367	45	34	mixing	mixing	NOUN
cet-367	45	35	point	point	NOUN
cet-367	45	36	c.	c.	NOUN
cet-367	45	37	after	after	ADP
cet-367	45	38	heat	heat	NOUN
cet-367	45	39	exchange	exchange	NOUN
cet-367	45	40	with	with	ADP
cet-367	45	41	the	the	DET
cet-367	45	42	process	process	NOUN
cet-367	45	43	fluid	fluid	NOUN
cet-367	45	44	,	,	PUNCT
cet-367	45	45	the	the	DET
cet-367	45	46	heating	heating	NOUN
cet-367	45	47	medium	medium	ADJ
cet-367	45	48	flowrate	flowrate	NOUN
cet-367	45	49	can	can	AUX
cet-367	45	50	be	be	AUX
cet-367	45	51	split	split	VERB
cet-367	45	52	at	at	ADP
cet-367	45	53	the	the	DET
cet-367	45	54	splitting	splitting	NOUN
cet-367	45	55	point	point	NOUN
cet-367	45	56	,	,	PUNCT
cet-367	45	57	s	s	VERB
cet-367	45	58	either	either	CCONJ
cet-367	45	59	to	to	ADP
cet-367	45	60	whru	whru	NOUN
cet-367	45	61	for	for	ADP
cet-367	45	62	reheating	reheat	VERB
cet-367	45	63	(	(	PUNCT
cet-367	45	64	fw	fw	PROPN
cet-367	45	65	,	,	PUNCT
cet-367	45	66	m	m	NOUN
cet-367	45	67	)	)	PUNCT
cet-367	45	68	or	or	CCONJ
cet-367	45	69	reused	reuse	VERB
cet-367	45	70	by	by	ADP
cet-367	45	71	the	the	DET
cet-367	45	72	users	user	NOUN
cet-367	45	73	(	(	PUNCT
cet-367	45	74	fm	fm	PROPN
cet-367	45	75	,	,	PUNCT
cet-367	45	76	m	m	PROPN
cet-367	45	77	)	)	PUNCT
cet-367	45	78	.	.	PUNCT
cet-367	46	1	the	the	DET
cet-367	46	2	mass	mass	PROPN
cet-367	46	3	balance	balance	NOUN
cet-367	46	4	at	at	ADP
cet-367	46	5	point	point	NOUN
cet-367	46	6	c	c	PROPN
cet-367	46	7	and	and	CCONJ
cet-367	46	8	s	s	PROPN
cet-367	46	9	and	and	CCONJ
cet-367	46	10	the	the	DET
cet-367	46	11	energy	energy	NOUN
cet-367	46	12	balance	balance	NOUN
cet-367	46	13	at	at	ADP
cet-367	46	14	point	point	NOUN
cet-367	46	15	c	c	PROPN
cet-367	46	16	is	be	AUX
cet-367	46	17	given	give	VERB
cet-367	46	18	by	by	ADP
cet-367	46	19	eqs(1	eqs(1	NOUN
cet-367	46	20	-	-	PUNCT
cet-367	46	21	3	3	NUM
cet-367	46	22	)	)	PUNCT
cet-367	46	23	.	.	PUNCT
cet-367	47	1	fm=	fm=	VERB
cet-367	47	2	∑	∑	PUNCT
cet-367	47	3	fm',m	fm',m	ADJ
cet-367	47	4	mϵm	mϵm	NOUN
cet-367	47	5	+	+	CCONJ
cet-367	47	6	fhm.m	fhm.m	PROPN
cet-367	47	7	∀m	∀m	PROPN
cet-367	47	8	ϵ	ϵ	ADP
cet-367	47	9	m	m	PROPN
cet-367	47	10	(	(	PUNCT
cet-367	47	11	1	1	NUM
cet-367	47	12	)	)	PUNCT
cet-367	47	13	1898	1898	NUM
cet-367	47	14	figure	figure	NOUN
cet-367	47	15	2	2	NUM
cet-367	47	16	:	:	PUNCT
cet-367	47	17	generic	generic	ADJ
cet-367	47	18	superstructure	superstructure	NOUN
cet-367	47	19	model	model	NOUN
cet-367	47	20	for	for	ADP
cet-367	47	21	heating	heating	NOUN
cet-367	47	22	utility	utility	NOUN
cet-367	47	23	system	system	NOUN
cet-367	47	24	fm=	fm=	PROPN
cet-367	47	25	∑	∑	PROPN
cet-367	47	26	fm	fm	PROPN
cet-367	47	27	,	,	PUNCT
cet-367	47	28	m	m	NOUN
cet-367	47	29	'	'	PART
cet-367	47	30	mϵm	mϵm	NOUN
cet-367	47	31	+	+	ADP
cet-367	47	32	fw.m	fw.m	NOUN
cet-367	47	33	∀m	∀m	PROPN
cet-367	47	34	ϵ	ϵ	X
cet-367	47	35	m	m	PROPN
cet-367	47	36	(	(	PUNCT
cet-367	47	37	2	2	NUM
cet-367	47	38	)	)	PUNCT
cet-367	47	39	fmtin	fmtin	NOUN
cet-367	47	40	,	,	PUNCT
cet-367	47	41	m=	m=	X
cet-367	47	42	∑	∑	SYM
cet-367	47	43	fm',m	fm',m	X
cet-367	47	44	tout	tout	ADJ
cet-367	47	45	,	,	PUNCT
cet-367	47	46	m	m	PRON
cet-367	47	47	mϵm	mϵm	VERB
cet-367	47	48	+	+	CCONJ
cet-367	47	49	fhm.m	fhm.m	VERB
cet-367	47	50	thm	thm	PROPN
cet-367	47	51	∀m	∀m	PROPN
cet-367	47	52	ϵ	ϵ	X
cet-367	47	53	m	m	PROPN
cet-367	47	54	(	(	PUNCT
cet-367	47	55	3	3	NUM
cet-367	47	56	)	)	PUNCT
cet-367	47	57	where	where	SCONJ
cet-367	47	58	tin	tin	NOUN
cet-367	47	59	,	,	PUNCT
cet-367	47	60	m	m	NOUN
cet-367	47	61	and	and	CCONJ
cet-367	47	62	tout	tout	ADJ
cet-367	47	63	,	,	PUNCT
cet-367	47	64	m	m	VERB
cet-367	47	65	are	be	AUX
cet-367	47	66	the	the	DET
cet-367	47	67	inlet	inlet	NOUN
cet-367	47	68	and	and	CCONJ
cet-367	47	69	outlet	outlet	NOUN
cet-367	47	70	temperature	temperature	NOUN
cet-367	47	71	of	of	ADP
cet-367	47	72	the	the	DET
cet-367	47	73	heating	heating	NOUN
cet-367	47	74	medium	medium	NOUN
cet-367	47	75	passing	pass	VERB
cet-367	47	76	through	through	ADP
cet-367	47	77	heat	heat	NOUN
cet-367	47	78	exchanger	exchanger	NOUN
cet-367	47	79	of	of	ADP
cet-367	47	80	m	m	PROPN
cet-367	47	81	user	user	NOUN
cet-367	47	82	,	,	PUNCT
cet-367	47	83	fm	fm	PROPN
cet-367	47	84	is	be	AUX
cet-367	47	85	the	the	DET
cet-367	47	86	flowrate	flowrate	NOUN
cet-367	47	87	of	of	ADP
cet-367	47	88	the	the	DET
cet-367	47	89	heating	heating	NOUN
cet-367	47	90	medium	medium	NOUN
cet-367	47	91	into	into	ADP
cet-367	47	92	the	the	DET
cet-367	47	93	heat	heat	NOUN
cet-367	47	94	exchanger	exchanger	NOUN
cet-367	47	95	of	of	ADP
cet-367	47	96	m	m	PROPN
cet-367	47	97	user	user	NOUN
cet-367	47	98	and	and	CCONJ
cet-367	47	99	thm	thm	PROPN
cet-367	47	100	is	be	AUX
cet-367	47	101	heating	heat	VERB
cet-367	47	102	medium	medium	ADJ
cet-367	47	103	supply	supply	NOUN
cet-367	47	104	temperature	temperature	NOUN
cet-367	47	105	.	.	PUNCT
cet-367	48	1	the	the	DET
cet-367	48	2	energy	energy	NOUN
cet-367	48	3	balance	balance	NOUN
cet-367	48	4	at	at	ADP
cet-367	48	5	each	each	DET
cet-367	48	6	unit	unit	NOUN
cet-367	48	7	heat	heat	NOUN
cet-367	48	8	exchanger	exchanger	NOUN
cet-367	48	9	is	be	AUX
cet-367	48	10	calculated	calculate	VERB
cet-367	48	11	using	use	VERB
cet-367	48	12	eq.(4	eq.(4	NOUN
cet-367	48	13	)	)	PUNCT
cet-367	48	14	.	.	PUNCT
cet-367	49	1	qm	qm	PROPN
cet-367	49	2	=	=	NOUN
cet-367	49	3	fm(tin	fm(tin	PROPN
cet-367	49	4	,	,	PUNCT
cet-367	49	5	m	m	NOUN
cet-367	49	6	-	-	PUNCT
cet-367	49	7	tout	tout	ADJ
cet-367	49	8	,	,	PUNCT
cet-367	49	9	m	m	NOUN
cet-367	49	10	)	)	PUNCT
cet-367	49	11	∀m	∀m	PROPN
cet-367	49	12	ϵ	ϵ	X
cet-367	49	13	m	m	PROPN
cet-367	49	14	(	(	PUNCT
cet-367	49	15	4	4	NUM
cet-367	49	16	)	)	PUNCT
cet-367	49	17	where	where	SCONJ
cet-367	49	18	qm	qm	PROPN
cet-367	49	19	is	be	AUX
cet-367	49	20	the	the	DET
cet-367	49	21	total	total	ADJ
cet-367	49	22	enthalpy	enthalpy	NOUN
cet-367	49	23	required	require	VERB
cet-367	49	24	by	by	ADP
cet-367	49	25	the	the	DET
cet-367	49	26	individual	individual	ADJ
cet-367	49	27	user	user	NOUN
cet-367	49	28	.	.	PUNCT
cet-367	50	1	for	for	ADP
cet-367	50	2	determination	determination	NOUN
cet-367	50	3	of	of	ADP
cet-367	50	4	heating	heat	VERB
cet-367	50	5	medium	medium	ADJ
cet-367	50	6	return	return	NOUN
cet-367	50	7	temperature	temperature	NOUN
cet-367	50	8	,	,	PUNCT
cet-367	50	9	thmr	thmr	NOUN
cet-367	50	10	eqs(5	eqs(5	NOUN
cet-367	50	11	-	-	PUNCT
cet-367	50	12	6	6	NUM
cet-367	50	13	)	)	PUNCT
cet-367	50	14	are	be	AUX
cet-367	50	15	used	use	VERB
cet-367	50	16	.	.	PUNCT
cet-367	51	1	fw=	fw=	VERB
cet-367	51	2	∑	∑	PROPN
cet-367	51	3	fw	fw	PROPN
cet-367	51	4	,	,	PUNCT
cet-367	51	5	m	m	NOUN
cet-367	51	6	mϵm	mϵm	NOUN
cet-367	51	7	(	(	PUNCT
cet-367	51	8	5	5	NUM
cet-367	51	9	)	)	PUNCT
cet-367	51	10	fwthmr=	fwthmr=	NUM
cet-367	51	11	∑	∑	PROPN
cet-367	51	12	fw	fw	PROPN
cet-367	51	13	,	,	PUNCT
cet-367	51	14	m	m	VERB
cet-367	51	15	tout	tout	ADJ
cet-367	51	16	,	,	PUNCT
cet-367	51	17	m	m	VERB
cet-367	51	18	mϵm	mϵm	NOUN
cet-367	51	19	(	(	PUNCT
cet-367	51	20	6	6	NUM
cet-367	51	21	)	)	PUNCT
cet-367	51	22	the	the	DET
cet-367	51	23	limit	limit	NOUN
cet-367	51	24	for	for	ADP
cet-367	51	25	the	the	DET
cet-367	51	26	inlet	inlet	NOUN
cet-367	51	27	and	and	CCONJ
cet-367	51	28	outlet	outlet	NOUN
cet-367	51	29	temperature	temperature	NOUN
cet-367	51	30	of	of	ADP
cet-367	51	31	the	the	DET
cet-367	51	32	heating	heating	NOUN
cet-367	51	33	medium	medium	NOUN
cet-367	51	34	entering	enter	VERB
cet-367	51	35	and	and	CCONJ
cet-367	51	36	leaving	leave	VERB
cet-367	51	37	the	the	DET
cet-367	51	38	heat	heat	NOUN
cet-367	51	39	exchanger	exchanger	NOUN
cet-367	51	40	are	be	AUX
cet-367	51	41	given	give	VERB
cet-367	51	42	by	by	ADP
cet-367	51	43	eqs(7	eqs(7	NOUN
cet-367	51	44	-	-	PUNCT
cet-367	51	45	10	10	NUM
cet-367	51	46	)	)	PUNCT
cet-367	51	47	.	.	PUNCT
cet-367	52	1	tin	tin	NOUN
cet-367	52	2	,	,	PUNCT
cet-367	52	3	m≤	m≤	VERB
cet-367	52	4	thm	thm	PROPN
cet-367	52	5	∀m	∀m	PROPN
cet-367	52	6	ϵ	ϵ	X
cet-367	52	7	m	m	PROPN
cet-367	52	8	(	(	PUNCT
cet-367	52	9	7	7	NUM
cet-367	52	10	)	)	PUNCT
cet-367	52	11	tin	tin	NOUN
cet-367	52	12	,	,	PUNCT
cet-367	52	13	m≥	m≥	ADJ
cet-367	52	14	tin	tin	NOUN
cet-367	52	15	,	,	PUNCT
cet-367	52	16	m	m	PRON
cet-367	52	17	limit	limit	VERB
cet-367	52	18	∀m	∀m	PROPN
cet-367	52	19	ϵ	ϵ	X
cet-367	52	20	m	m	PROPN
cet-367	52	21	(	(	PUNCT
cet-367	52	22	8)	8)	NUM
cet-367	52	23	tout	tout	NOUN
cet-367	52	24	,	,	PUNCT
cet-367	52	25	m≥	m≥	ADJ
cet-367	52	26	tout	tout	NOUN
cet-367	52	27	,	,	PUNCT
cet-367	52	28	m	m	PRON
cet-367	52	29	limit	limit	VERB
cet-367	52	30	∀m	∀m	PROPN
cet-367	52	31	ϵ	ϵ	X
cet-367	52	32	m	m	PROPN
cet-367	52	33	(	(	PUNCT
cet-367	52	34	9	9	NUM
cet-367	52	35	)	)	PUNCT
cet-367	52	36	tout	tout	NOUN
cet-367	52	37	,	,	PUNCT
cet-367	52	38	m	m	VERB
cet-367	52	39	<	<	X
cet-367	52	40	thm	thm	PROPN
cet-367	52	41	∀m	∀m	PROPN
cet-367	52	42	ϵ	ϵ	X
cet-367	52	43	m	m	PROPN
cet-367	52	44	(	(	PUNCT
cet-367	52	45	10	10	NUM
cet-367	52	46	)	)	PUNCT
cet-367	52	47	in	in	ADP
cet-367	52	48	order	order	NOUN
cet-367	52	49	to	to	PART
cet-367	52	50	reduce	reduce	VERB
cet-367	52	51	the	the	DET
cet-367	52	52	search	search	NOUN
cet-367	52	53	scope	scope	NOUN
cet-367	52	54	when	when	SCONJ
cet-367	52	55	computing	compute	VERB
cet-367	52	56	the	the	DET
cet-367	52	57	solution	solution	NOUN
cet-367	52	58	,	,	PUNCT
cet-367	52	59	flow	flow	NOUN
cet-367	52	60	limit	limit	NOUN
cet-367	52	61	for	for	ADP
cet-367	52	62	each	each	DET
cet-367	52	63	connection	connection	NOUN
cet-367	52	64	is	be	AUX
cet-367	52	65	introduced	introduce	VERB
cet-367	52	66	using	use	VERB
cet-367	52	67	eq.(11	eq.(11	PROPN
cet-367	52	68	)	)	PUNCT
cet-367	52	69	.	.	PUNCT
cet-367	53	1	the	the	DET
cet-367	53	2	flow	flow	NOUN
cet-367	53	3	limit	limit	NOUN
cet-367	53	4	is	be	AUX
cet-367	53	5	derived	derive	VERB
cet-367	53	6	based	base	VERB
cet-367	53	7	on	on	ADP
cet-367	53	8	american	american	PROPN
cet-367	53	9	petroleum	petroleum	PROPN
cet-367	53	10	institute	institute	PROPN
cet-367	53	11	(	(	PUNCT
cet-367	53	12	api	api	NOUN
cet-367	53	13	)	)	PUNCT
cet-367	53	14	14e	14e	NOUN
cet-367	53	15	(	(	PUNCT
cet-367	53	16	1991	1991	NUM
cet-367	53	17	)	)	PUNCT
cet-367	53	18	,	,	PUNCT
cet-367	53	19	which	which	PRON
cet-367	53	20	recommends	recommend	VERB
cet-367	53	21	that	that	SCONJ
cet-367	53	22	the	the	DET
cet-367	53	23	flow	flow	NOUN
cet-367	53	24	velocity	velocity	NOUN
cet-367	53	25	should	should	AUX
cet-367	53	26	not	not	PART
cet-367	53	27	exceed	exceed	VERB
cet-367	53	28	maximum	maximum	ADJ
cet-367	53	29	velocity	velocity	NOUN
cet-367	53	30	of	of	ADP
cet-367	53	31	4.572	4.572	NUM
cet-367	53	32	m	m	NOUN
cet-367	53	33	/	/	SYM
cet-367	53	34	s	s	AUX
cet-367	53	35	to	to	PART
cet-367	53	36	minimise	minimise	AUX
cet-367	53	37	flashing	flash	VERB
cet-367	53	38	ahead	ahead	ADV
cet-367	53	39	of	of	ADP
cet-367	53	40	control	control	NOUN
cet-367	53	41	valve	valve	NOUN
cet-367	53	42	.	.	PUNCT
cet-367	54	1	while	while	SCONJ
cet-367	54	2	for	for	ADP
cet-367	54	3	the	the	DET
cet-367	54	4	minimum	minimum	ADJ
cet-367	54	5	velocity	velocity	NOUN
cet-367	54	6	,	,	PUNCT
cet-367	54	7	it	it	PRON
cet-367	54	8	is	be	AUX
cet-367	54	9	recommended	recommend	VERB
cet-367	54	10	to	to	PART
cet-367	54	11	limit	limit	VERB
cet-367	54	12	the	the	DET
cet-367	54	13	velocity	velocity	NOUN
cet-367	54	14	to	to	ADP
cet-367	54	15	0.9144	0.9144	NUM
cet-367	54	16	m	m	NOUN
cet-367	54	17	/	/	SYM
cet-367	54	18	s	s	VERB
cet-367	54	19	to	to	PART
cet-367	54	20	minimise	minimise	VERB
cet-367	54	21	deposition	deposition	NOUN
cet-367	54	22	of	of	ADP
cet-367	54	23	sand	sand	NOUN
cet-367	54	24	and	and	CCONJ
cet-367	54	25	other	other	ADJ
cet-367	54	26	solid	solid	ADJ
cet-367	54	27	.	.	PUNCT
cet-367	55	1	using	use	VERB
cet-367	55	2	this	this	DET
cet-367	55	3	information	information	NOUN
cet-367	55	4	together	together	ADV
cet-367	55	5	with	with	ADP
cet-367	55	6	the	the	DET
cet-367	55	7	assumption	assumption	NOUN
cet-367	55	8	that	that	SCONJ
cet-367	55	9	the	the	DET
cet-367	55	10	biggest	big	ADJ
cet-367	55	11	and	and	CCONJ
cet-367	55	12	smallest	small	ADJ
cet-367	55	13	pipe	pipe	NOUN
cet-367	55	14	size	size	NOUN
cet-367	55	15	that	that	PRON
cet-367	55	16	are	be	AUX
cet-367	55	17	used	use	VERB
cet-367	55	18	are	be	AUX
cet-367	55	19	6	6	NUM
cet-367	55	20	”	"	PUNCT
cet-367	55	21	and	and	CCONJ
cet-367	55	22	½	½	PROPN
cet-367	55	23	”	"	PUNCT
cet-367	55	24	,	,	PUNCT
cet-367	55	25	the	the	DET
cet-367	55	26	upper	upper	ADJ
cet-367	55	27	and	and	CCONJ
cet-367	55	28	lower	low	ADJ
cet-367	55	29	flow	flow	NOUN
cet-367	55	30	limit	limit	NOUN
cet-367	55	31	for	for	ADP
cet-367	55	32	the	the	DET
cet-367	55	33	connection	connection	NOUN
cet-367	55	34	is	be	AUX
cet-367	55	35	calculated	calculate	VERB
cet-367	55	36	to	to	PART
cet-367	55	37	be	be	AUX
cet-367	55	38	432.891	432.891	NUM
cet-367	55	39	and	and	CCONJ
cet-367	55	40	3.1408	3.1408	NUM
cet-367	55	41	kw/	kw/	VERB
cet-367	55	42	°	°	PROPN
cet-367	55	43	c	c	NOUN
cet-367	55	44	.	.	PUNCT
cet-367	56	1	3.1408i	3.1408i	NUM
cet-367	56	2	≤	≤	NUM
cet-367	56	3	fm',m	fm',m	X
cet-367	56	4	≤	≤	NUM
cet-367	56	5	432.89i	432.89i	NUM
cet-367	57	1	∀m	∀m	PROPN
cet-367	57	2	ϵ	ϵ	PROPN
cet-367	57	3	m	m	NOUN
cet-367	57	4	i[0,1	i[0,1	NOUN
cet-367	57	5	]	]	PUNCT
cet-367	57	6	(	(	PUNCT
cet-367	57	7	11	11	NUM
cet-367	57	8	)	)	PUNCT
cet-367	57	9	for	for	ADP
cet-367	57	10	hen	hen	NOUN
cet-367	57	11	area	area	NOUN
cet-367	57	12	calculation	calculation	NOUN
cet-367	57	13	,	,	PUNCT
cet-367	57	14	the	the	DET
cet-367	57	15	log	log	NOUN
cet-367	57	16	mean	mean	VERB
cet-367	57	17	temperature	temperature	NOUN
cet-367	57	18	difference	difference	NOUN
cet-367	57	19	is	be	AUX
cet-367	57	20	determined	determine	VERB
cet-367	57	21	using	use	VERB
cet-367	57	22	eq.(12	eq.(12	PROPN
cet-367	57	23	)	)	PUNCT
cet-367	57	24	.	.	PUNCT
cet-367	58	1	tlog	tlog	PROPN
cet-367	58	2	,	,	PUNCT
cet-367	58	3	m=	m=	X
cet-367	58	4	(	(	PUNCT
cet-367	58	5	tin	tin	X
cet-367	58	6	,	,	PUNCT
cet-367	58	7	m	m	NOUN
cet-367	58	8	-	-	PUNCT
cet-367	58	9	tout	tout	ADJ
cet-367	58	10	,	,	PUNCT
cet-367	58	11	m	m	VERB
cet-367	58	12	limit)-(tout	limit)-(tout	PROPN
cet-367	58	13	,	,	PUNCT
cet-367	58	14	m	m	NOUN
cet-367	58	15	-	-	PUNCT
cet-367	58	16	tin	tin	ADJ
cet-367	58	17	,	,	PUNCT
cet-367	58	18	m	m	NOUN
cet-367	58	19	limit	limit	NOUN
cet-367	58	20	)	)	PUNCT
cet-367	58	21	ln[(tin	ln[(tin	X
cet-367	58	22	,	,	PUNCT
cet-367	58	23	m	m	NOUN
cet-367	58	24	-	-	PUNCT
cet-367	58	25	tout	tout	ADJ
cet-367	58	26	,	,	PUNCT
cet-367	58	27	m	m	VERB
cet-367	58	28	limit)-(tout	limit)-(tout	PROPN
cet-367	58	29	,	,	PUNCT
cet-367	58	30	m	m	NOUN
cet-367	58	31	-	-	PUNCT
cet-367	58	32	tin	tin	ADJ
cet-367	58	33	,	,	PUNCT
cet-367	58	34	m	m	NOUN
cet-367	58	35	limit	limit	NOUN
cet-367	58	36	)	)	PUNCT
cet-367	58	37	]	]	PUNCT
cet-367	59	1	∀m	∀m	PROPN
cet-367	59	2	ϵ	ϵ	X
cet-367	59	3	m	m	PROPN
cet-367	59	4	(	(	PUNCT
cet-367	59	5	12	12	NUM
cet-367	59	6	)	)	PUNCT
cet-367	59	7	the	the	DET
cet-367	59	8	area	area	NOUN
cet-367	59	9	required	require	VERB
cet-367	59	10	for	for	ADP
cet-367	59	11	the	the	DET
cet-367	59	12	hen	hen	NOUN
cet-367	59	13	is	be	AUX
cet-367	59	14	calculated	calculate	VERB
cet-367	59	15	using	use	VERB
cet-367	59	16	eq(13	eq(13	NOUN
cet-367	59	17	)	)	PUNCT
cet-367	59	18	.	.	PUNCT
cet-367	60	1	ahen=	ahen=	NUM
cet-367	60	2	∑	∑	PROPN
cet-367	60	3	qm	qm	PROPN
cet-367	60	4	tlog	tlog	PROPN
cet-367	60	5	,	,	PUNCT
cet-367	60	6	mhm	mhm	INTJ
cet-367	60	7	mϵm	mϵm	NOUN
cet-367	60	8	(	(	PUNCT
cet-367	60	9	13	13	NUM
cet-367	60	10	)	)	PUNCT
cet-367	60	11	where	where	SCONJ
cet-367	60	12	hm	hm	PRON
cet-367	60	13	is	be	AUX
cet-367	60	14	the	the	DET
cet-367	60	15	overall	overall	ADJ
cet-367	60	16	heat	heat	NOUN
cet-367	60	17	transfer	transfer	NOUN
cet-367	60	18	coefficient	coefficient	NOUN
cet-367	60	19	for	for	ADP
cet-367	60	20	user	user	NOUN
cet-367	60	21	m.	m.	NOUN
cet-367	60	22	1899	1899	NUM
cet-367	60	23	4	4	X
cet-367	60	24	.	.	X
cet-367	60	25	sizing	sizing	NOUN
cet-367	60	26	and	and	CCONJ
cet-367	60	27	costing	costing	NOUN
cet-367	60	28	of	of	ADP
cet-367	60	29	other	other	ADJ
cet-367	60	30	equipment	equipment	NOUN
cet-367	60	31	in	in	ADP
cet-367	60	32	the	the	DET
cet-367	60	33	heating	heating	NOUN
cet-367	60	34	utility	utility	NOUN
cet-367	60	35	system	system	NOUN
cet-367	60	36	besides	besides	SCONJ
cet-367	60	37	the	the	DET
cet-367	60	38	hen	hen	NOUN
cet-367	60	39	,	,	PUNCT
cet-367	60	40	heating	heating	NOUN
cet-367	60	41	utility	utility	NOUN
cet-367	60	42	system	system	NOUN
cet-367	60	43	of	of	ADP
cet-367	60	44	the	the	DET
cet-367	60	45	offshore	offshore	ADJ
cet-367	60	46	platform	platform	NOUN
cet-367	60	47	consists	consist	VERB
cet-367	60	48	of	of	ADP
cet-367	60	49	two	two	NUM
cet-367	60	50	other	other	ADJ
cet-367	60	51	major	major	ADJ
cet-367	60	52	units	unit	NOUN
cet-367	60	53	i.e.	i.e.	X
cet-367	60	54	whru	whru	NOUN
cet-367	60	55	and	and	CCONJ
cet-367	60	56	pump	pump	NOUN
cet-367	60	57	.	.	PUNCT
cet-367	61	1	design	design	NOUN
cet-367	61	2	variables	variable	NOUN
cet-367	61	3	of	of	ADP
cet-367	61	4	these	these	DET
cet-367	61	5	units	unit	NOUN
cet-367	61	6	,	,	PUNCT
cet-367	61	7	e.g.	e.g.	ADV
cet-367	61	8	area	area	NOUN
cet-367	61	9	of	of	ADP
cet-367	61	10	whru	whru	NOUN
cet-367	61	11	and	and	CCONJ
cet-367	61	12	power	power	NOUN
cet-367	61	13	consumption	consumption	NOUN
cet-367	61	14	of	of	ADP
cet-367	61	15	the	the	DET
cet-367	61	16	pump	pump	NOUN
cet-367	61	17	are	be	AUX
cet-367	61	18	to	to	PART
cet-367	61	19	be	be	AUX
cet-367	61	20	considered	consider	VERB
cet-367	61	21	before	before	SCONJ
cet-367	61	22	the	the	DET
cet-367	61	23	cost	cost	NOUN
cet-367	61	24	optimum	optimum	ADJ
cet-367	61	25	heating	heating	NOUN
cet-367	61	26	utility	utility	NOUN
cet-367	61	27	system	system	NOUN
cet-367	61	28	design	design	NOUN
cet-367	61	29	can	can	AUX
cet-367	61	30	be	be	AUX
cet-367	61	31	determined	determine	VERB
cet-367	61	32	.	.	PUNCT
cet-367	62	1	for	for	ADP
cet-367	62	2	the	the	DET
cet-367	62	3	whru	whru	NOUN
cet-367	62	4	,	,	PUNCT
cet-367	62	5	its	its	PRON
cet-367	62	6	log	log	NOUN
cet-367	62	7	mean	mean	NOUN
cet-367	62	8	temperature	temperature	NOUN
cet-367	62	9	(	(	PUNCT
cet-367	62	10	twhru	twhru	PROPN
cet-367	62	11	)	)	PUNCT
cet-367	62	12	is	be	AUX
cet-367	62	13	calculated	calculate	VERB
cet-367	62	14	based	base	VERB
cet-367	62	15	on	on	ADP
cet-367	62	16	eq(14	eq(14	NOUN
cet-367	62	17	)	)	PUNCT
cet-367	62	18	that	that	PRON
cet-367	62	19	follows	follow	VERB
cet-367	62	20	,	,	PUNCT
cet-367	62	21	i.e.	i.e.	X
cet-367	62	22	,	,	PUNCT
cet-367	62	23	twhru=	twhru=	NUM
cet-367	62	24	(	(	PUNCT
cet-367	62	25	tin	tin	NOUN
cet-367	62	26	,	,	PUNCT
cet-367	62	27	g	g	NOUN
cet-367	62	28	-	-	PUNCT
cet-367	62	29	thm)-(tout	thm)-(tout	NOUN
cet-367	62	30	,	,	PUNCT
cet-367	62	31	g	g	NOUN
cet-367	62	32	-	-	PUNCT
cet-367	62	33	thmr	thmr	NOUN
cet-367	62	34	)	)	PUNCT
cet-367	62	35	ln[(tin	ln[(tin	X
cet-367	62	36	,	,	PUNCT
cet-367	62	37	g	g	NOUN
cet-367	62	38	-	-	PUNCT
cet-367	62	39	thm)-(tout	thm)-(tout	NOUN
cet-367	62	40	,	,	PUNCT
cet-367	62	41	g	g	NOUN
cet-367	62	42	-	-	PUNCT
cet-367	62	43	thmr	thmr	NOUN
cet-367	62	44	)	)	PUNCT
cet-367	62	45	]	]	PUNCT
cet-367	63	1	(	(	PUNCT
cet-367	63	2	14	14	NUM
cet-367	63	3	)	)	PUNCT
cet-367	63	4	where	where	SCONJ
cet-367	63	5	tin	tin	NOUN
cet-367	63	6	,	,	PUNCT
cet-367	63	7	g	g	PROPN
cet-367	63	8	is	be	AUX
cet-367	63	9	the	the	DET
cet-367	63	10	gas	gas	NOUN
cet-367	63	11	turbine	turbine	NOUN
cet-367	63	12	generator	generator	NOUN
cet-367	63	13	and/or	and/or	CCONJ
cet-367	63	14	gas	gas	NOUN
cet-367	63	15	turbine	turbine	NOUN
cet-367	63	16	compressor	compressor	NOUN
cet-367	63	17	exhaust	exhaust	NOUN
cet-367	63	18	gas	gas	NOUN
cet-367	63	19	temperature	temperature	NOUN
cet-367	63	20	to	to	ADP
cet-367	63	21	the	the	DET
cet-367	63	22	whru	whru	NOUN
cet-367	63	23	while	while	SCONJ
cet-367	63	24	tout	tout	ADV
cet-367	63	25	,	,	PUNCT
cet-367	63	26	g	g	PROPN
cet-367	63	27	is	be	AUX
cet-367	63	28	the	the	DET
cet-367	63	29	exhaust	exhaust	ADJ
cet-367	63	30	gas	gas	NOUN
cet-367	63	31	temperature	temperature	NOUN
cet-367	63	32	leaving	leave	VERB
cet-367	63	33	whru	whru	NOUN
cet-367	63	34	after	after	ADP
cet-367	63	35	heat	heat	NOUN
cet-367	63	36	transfer	transfer	NOUN
cet-367	63	37	with	with	ADP
cet-367	63	38	the	the	DET
cet-367	63	39	heating	heating	NOUN
cet-367	63	40	medium	medium	NOUN
cet-367	63	41	.	.	PUNCT
cet-367	64	1	next	next	ADV
cet-367	64	2	,	,	PUNCT
cet-367	64	3	the	the	DET
cet-367	64	4	area	area	NOUN
cet-367	64	5	of	of	ADP
cet-367	64	6	whru	whru	NOUN
cet-367	64	7	(	(	PUNCT
cet-367	64	8	awhru	awhru	NOUN
cet-367	64	9	)	)	PUNCT
cet-367	64	10	is	be	AUX
cet-367	64	11	calculated	calculate	VERB
cet-367	64	12	using	use	VERB
cet-367	64	13	eq(15	eq(15	NOUN
cet-367	64	14	)	)	PUNCT
cet-367	64	15	,	,	PUNCT
cet-367	64	16	awhru=	awhru=	NOUN
cet-367	64	17	q	q	NOUN
cet-367	64	18	uetwhru	uetwhru	NOUN
cet-367	64	19	(	(	PUNCT
cet-367	64	20	15	15	NUM
cet-367	64	21	)	)	PUNCT
cet-367	64	22	where	where	SCONJ
cet-367	64	23	q	q	NOUN
cet-367	64	24	is	be	AUX
cet-367	64	25	the	the	DET
cet-367	64	26	total	total	ADJ
cet-367	64	27	heat	heat	NOUN
cet-367	64	28	load	load	NOUN
cet-367	64	29	required	require	VERB
cet-367	64	30	to	to	PART
cet-367	64	31	be	be	AUX
cet-367	64	32	transferred	transfer	VERB
cet-367	64	33	from	from	ADP
cet-367	64	34	the	the	DET
cet-367	64	35	exhaust	exhaust	NOUN
cet-367	64	36	gas	gas	NOUN
cet-367	64	37	to	to	ADP
cet-367	64	38	the	the	DET
cet-367	64	39	heating	heating	NOUN
cet-367	64	40	medium	medium	NOUN
cet-367	64	41	and	and	CCONJ
cet-367	64	42	ue	ue	PROPN
cet-367	64	43	is	be	AUX
cet-367	64	44	the	the	DET
cet-367	64	45	enhanced	enhanced	ADJ
cet-367	64	46	overall	overall	ADJ
cet-367	64	47	heat	heat	NOUN
cet-367	64	48	transfer	transfer	NOUN
cet-367	64	49	coefficient	coefficient	NOUN
cet-367	64	50	.	.	PUNCT
cet-367	65	1	for	for	ADP
cet-367	65	2	brevity	brevity	NOUN
cet-367	65	3	,	,	PUNCT
cet-367	65	4	the	the	DET
cet-367	65	5	steps	step	NOUN
cet-367	65	6	involved	involve	VERB
cet-367	65	7	in	in	ADP
cet-367	65	8	calculating	calculate	VERB
cet-367	65	9	these	these	DET
cet-367	65	10	enhanced	enhance	VERB
cet-367	65	11	overall	overall	ADJ
cet-367	65	12	heat	heat	NOUN
cet-367	65	13	transfer	transfer	NOUN
cet-367	65	14	is	be	AUX
cet-367	65	15	excluded	exclude	VERB
cet-367	65	16	from	from	ADP
cet-367	65	17	this	this	DET
cet-367	65	18	paper	paper	NOUN
cet-367	65	19	,	,	PUNCT
cet-367	65	20	however	however	ADV
cet-367	65	21	readers	reader	NOUN
cet-367	65	22	can	can	AUX
cet-367	65	23	refer	refer	VERB
cet-367	65	24	to	to	ADP
cet-367	65	25	the	the	DET
cet-367	65	26	detailed	detailed	ADJ
cet-367	65	27	steps	step	NOUN
cet-367	65	28	found	find	VERB
cet-367	65	29	in	in	ADP
cet-367	65	30	nitsche	nitsche	NOUN
cet-367	65	31	and	and	CCONJ
cet-367	65	32	gbadamosi	gbadamosi	NOUN
cet-367	65	33	(	(	PUNCT
cet-367	65	34	2016	2016	NUM
cet-367	65	35	)	)	PUNCT
cet-367	65	36	.	.	PUNCT
cet-367	66	1	the	the	DET
cet-367	66	2	shaft	shaft	NOUN
cet-367	66	3	power	power	NOUN
cet-367	66	4	required	require	VERB
cet-367	66	5	by	by	ADP
cet-367	66	6	the	the	DET
cet-367	66	7	pump	pump	NOUN
cet-367	66	8	(	(	PUNCT
cet-367	66	9	ps	ps	NOUN
cet-367	66	10	)	)	PUNCT
cet-367	66	11	to	to	PART
cet-367	66	12	circulate	circulate	VERB
cet-367	66	13	the	the	DET
cet-367	66	14	heating	heating	NOUN
cet-367	66	15	medium	medium	NOUN
cet-367	66	16	in	in	ADP
cet-367	66	17	the	the	DET
cet-367	66	18	close	close	ADJ
cet-367	66	19	loop	loop	NOUN
cet-367	66	20	system	system	NOUN
cet-367	66	21	is	be	AUX
cet-367	66	22	calculated	calculate	VERB
cet-367	66	23	using	use	VERB
cet-367	66	24	eq(16	eq(16	PROPN
cet-367	66	25	)	)	PUNCT
cet-367	66	26	,	,	PUNCT
cet-367	66	27	ps=	ps=	PROPN
cet-367	66	28	1.1fmingd	1.1fmingd	NUM
cet-367	66	29	1×10	1×10	NUM
cet-367	66	30	3	3	NUM
cet-367	66	31	cphmη	cphmη	NOUN
cet-367	66	32	(	(	PUNCT
cet-367	66	33	16	16	NUM
cet-367	66	34	)	)	PUNCT
cet-367	66	35	where	where	SCONJ
cet-367	66	36	g	g	PROPN
cet-367	66	37	is	be	AUX
cet-367	66	38	the	the	DET
cet-367	66	39	gravitational	gravitational	ADJ
cet-367	66	40	force	force	NOUN
cet-367	66	41	,	,	PUNCT
cet-367	66	42	d	d	X
cet-367	66	43	is	be	AUX
cet-367	66	44	the	the	DET
cet-367	66	45	net	net	ADJ
cet-367	66	46	differential	differential	ADJ
cet-367	66	47	head	head	NOUN
cet-367	66	48	required	require	VERB
cet-367	66	49	to	to	PART
cet-367	66	50	transfer	transfer	VERB
cet-367	66	51	the	the	DET
cet-367	66	52	heating	heating	NOUN
cet-367	66	53	medium	medium	NOUN
cet-367	66	54	to	to	ADP
cet-367	66	55	its	its	PRON
cet-367	66	56	required	required	ADJ
cet-367	66	57	users	user	NOUN
cet-367	66	58	,	,	PUNCT
cet-367	66	59	cphm	cphm	NOUN
cet-367	66	60	is	be	AUX
cet-367	66	61	the	the	DET
cet-367	66	62	specific	specific	ADJ
cet-367	66	63	heat	heat	NOUN
cet-367	66	64	capacity	capacity	NOUN
cet-367	66	65	of	of	ADP
cet-367	66	66	heating	heating	NOUN
cet-367	66	67	medium	medium	NOUN
cet-367	66	68	and	and	CCONJ
cet-367	66	69	η	η	PROPN
cet-367	66	70	is	be	AUX
cet-367	66	71	the	the	DET
cet-367	66	72	pump	pump	NOUN
cet-367	66	73	efficiency	efficiency	NOUN
cet-367	66	74	.	.	PUNCT
cet-367	67	1	a	a	DET
cet-367	67	2	design	design	NOUN
cet-367	67	3	margin	margin	NOUN
cet-367	67	4	of	of	ADP
cet-367	67	5	10	10	NUM
cet-367	67	6	%	%	NOUN
cet-367	67	7	is	be	AUX
cet-367	67	8	included	include	VERB
cet-367	67	9	in	in	ADP
cet-367	67	10	the	the	DET
cet-367	67	11	heating	heating	NOUN
cet-367	67	12	medium	medium	ADJ
cet-367	67	13	flowrate	flowrate	NOUN
cet-367	67	14	for	for	ADP
cet-367	67	15	pump	pump	NOUN
cet-367	67	16	design	design	NOUN
cet-367	67	17	purpose	purpose	NOUN
cet-367	67	18	.	.	PUNCT
cet-367	68	1	the	the	DET
cet-367	68	2	capital	capital	NOUN
cet-367	68	3	cost	cost	NOUN
cet-367	68	4	of	of	ADP
cet-367	68	5	the	the	DET
cet-367	68	6	equipment	equipment	NOUN
cet-367	68	7	is	be	AUX
cet-367	68	8	annualised	annualise	VERB
cet-367	68	9	based	base	VERB
cet-367	68	10	on	on	ADP
cet-367	68	11	the	the	DET
cet-367	68	12	lifespan	lifespan	NOUN
cet-367	68	13	of	of	ADP
cet-367	68	14	the	the	DET
cet-367	68	15	offshore	offshore	ADJ
cet-367	68	16	platform	platform	NOUN
cet-367	68	17	which	which	PRON
cet-367	68	18	is	be	AUX
cet-367	68	19	typically	typically	ADV
cet-367	68	20	between	between	ADP
cet-367	68	21	a	a	DET
cet-367	68	22	period	period	NOUN
cet-367	68	23	of	of	ADP
cet-367	68	24	20	20	NUM
cet-367	68	25	-	-	SYM
cet-367	68	26	30	30	NUM
cet-367	68	27	y	y	NOUN
cet-367	68	28	using	use	VERB
cet-367	68	29	eq.(17	eq.(17	NOUN
cet-367	68	30	)	)	PUNCT
cet-367	68	31	.	.	PUNCT
cet-367	69	1	af=	af=	PROPN
cet-367	69	2	i(1+i	i(1+i	PROPN
cet-367	69	3	)	)	PUNCT
cet-367	69	4	n	n	CCONJ
cet-367	69	5	(	(	PUNCT
cet-367	69	6	1+i	1+i	NUM
cet-367	69	7	)	)	PUNCT
cet-367	69	8	n	n	NOUN
cet-367	69	9	-1	-1	X
cet-367	69	10	(	(	PUNCT
cet-367	69	11	17	17	NUM
cet-367	69	12	)	)	PUNCT
cet-367	69	13	where	where	SCONJ
cet-367	69	14	i	i	PRON
cet-367	69	15	and	and	CCONJ
cet-367	69	16	n	n	CCONJ
cet-367	69	17	represent	represent	VERB
cet-367	69	18	the	the	DET
cet-367	69	19	interest	interest	NOUN
cet-367	69	20	rate	rate	NOUN
cet-367	69	21	and	and	CCONJ
cet-367	69	22	number	number	NOUN
cet-367	69	23	of	of	ADP
cet-367	69	24	years	year	NOUN
cet-367	69	25	respectively	respectively	ADV
cet-367	69	26	.	.	PUNCT
cet-367	70	1	the	the	DET
cet-367	70	2	annualised	annualise	VERB
cet-367	70	3	capital	capital	NOUN
cet-367	70	4	cost	cost	NOUN
cet-367	70	5	of	of	ADP
cet-367	70	6	hen	hen	NOUN
cet-367	70	7	,	,	PUNCT
cet-367	70	8	whru	whru	NOUN
cet-367	70	9	and	and	CCONJ
cet-367	70	10	the	the	DET
cet-367	70	11	pump	pump	NOUN
cet-367	70	12	are	be	AUX
cet-367	70	13	calculated	calculate	VERB
cet-367	70	14	based	base	VERB
cet-367	70	15	on	on	ADP
cet-367	70	16	the	the	DET
cet-367	70	17	correlations	correlation	NOUN
cet-367	70	18	in	in	ADP
cet-367	70	19	eqs(18	eqs(18	NOUN
cet-367	70	20	-	-	PUNCT
cet-367	70	21	20	20	NUM
cet-367	70	22	)	)	PUNCT
cet-367	70	23	(	(	PUNCT
cet-367	70	24	smith	smith	PROPN
cet-367	70	25	,	,	PUNCT
cet-367	70	26	2005	2005	NUM
cet-367	70	27	)	)	PUNCT
cet-367	70	28	,	,	PUNCT
cet-367	70	29	chen	chen	PROPN
cet-367	70	30	=	=	PROPN
cet-367	70	31	n	n	PROPN
cet-367	70	32	af	af	VERB
cet-367	71	1	[	[	X
cet-367	71	2	a+b	a+b	X
cet-367	71	3	(	(	PUNCT
cet-367	71	4	ahen	ahen	ADV
cet-367	71	5	n	n	PROPN
cet-367	71	6	⁄	⁄	PROPN
cet-367	71	7	)	)	PUNCT
cet-367	71	8	c	c	NOUN
cet-367	71	9	]	]	X
cet-367	71	10	(	(	PUNCT
cet-367	71	11	18	18	NUM
cet-367	71	12	)	)	PUNCT
cet-367	71	13	where	where	SCONJ
cet-367	71	14	n	n	NOUN
cet-367	71	15	=	=	SYM
cet-367	71	16	number	number	NOUN
cet-367	71	17	of	of	ADP
cet-367	71	18	units	unit	NOUN
cet-367	71	19	/	/	SYM
cet-367	71	20	shells	shell	NOUN
cet-367	71	21	,	,	PUNCT
cet-367	71	22	whichever	whichever	PRON
cet-367	71	23	is	be	AUX
cet-367	71	24	appropriate	appropriate	ADJ
cet-367	71	25	,	,	PUNCT
cet-367	71	26	a	a	DET
cet-367	71	27	=	=	NOUN
cet-367	71	28	installation	installation	NOUN
cet-367	71	29	cost	cost	NOUN
cet-367	71	30	,	,	PUNCT
cet-367	71	31	b	b	X
cet-367	71	32	=	=	NOUN
cet-367	71	33	area	area	NOUN
cet-367	71	34	cost	cost	NOUN
cet-367	71	35	,	,	PUNCT
cet-367	71	36	c	c	NOUN
cet-367	71	37	=	=	SYM
cet-367	71	38	constant	constant	ADJ
cet-367	71	39	.	.	PUNCT
cet-367	72	1	cwhru	cwhru	PROPN
cet-367	72	2	=	=	PROPN
cet-367	72	3	cbaf	cbaf	PROPN
cet-367	72	4	(	(	PUNCT
cet-367	72	5	awhru	awhru	PROPN
cet-367	72	6	db	db	PROPN
cet-367	72	7	)	)	PUNCT
cet-367	72	8	m	m	VERB
cet-367	72	9	(	(	PUNCT
cet-367	72	10	19	19	NUM
cet-367	72	11	)	)	PUNCT
cet-367	72	12	where	where	SCONJ
cet-367	72	13	cwhru	cwhru	NOUN
cet-367	72	14	=	=	SYM
cet-367	72	15	whru	whru	NOUN
cet-367	72	16	cost	cost	NOUN
cet-367	72	17	with	with	ADP
cet-367	72	18	capacity	capacity	NOUN
cet-367	72	19	awhru	awhru	NOUN
cet-367	72	20	,	,	PUNCT
cet-367	72	21	cb	cb	PROPN
cet-367	72	22	=	=	PUNCT
cet-367	72	23	known	know	VERB
cet-367	72	24	base	base	NOUN
cet-367	72	25	cost	cost	NOUN
cet-367	72	26	of	of	ADP
cet-367	72	27	equipment	equipment	NOUN
cet-367	72	28	with	with	ADP
cet-367	72	29	capacity	capacity	NOUN
cet-367	72	30	db	db	PROPN
cet-367	72	31	,	,	PUNCT
cet-367	72	32	m	m	VERB
cet-367	72	33	=	=	NOUN
cet-367	72	34	constant	constant	ADJ
cet-367	72	35	depending	depend	VERB
cet-367	72	36	on	on	ADP
cet-367	72	37	equipment	equipment	NOUN
cet-367	72	38	type	type	NOUN
cet-367	72	39	cp	cp	NOUN
cet-367	72	40	=	=	NOUN
cet-367	72	41	cbaf	cbaf	NOUN
cet-367	72	42	(	(	PUNCT
cet-367	72	43	ps	ps	NOUN
cet-367	72	44	db	db	PROPN
cet-367	72	45	)	)	PUNCT
cet-367	73	1	m	m	VERB
cet-367	73	2	(	(	PUNCT
cet-367	73	3	20	20	NUM
cet-367	73	4	)	)	PUNCT
cet-367	73	5	where	where	SCONJ
cet-367	73	6	cp	cp	NOUN
cet-367	73	7	=	=	NOUN
cet-367	73	8	pump	pump	VERB
cet-367	73	9	cost	cost	NOUN
cet-367	73	10	with	with	ADP
cet-367	73	11	capacity	capacity	NOUN
cet-367	73	12	ps	ps	PROPN
cet-367	73	13	,	,	PUNCT
cet-367	73	14	cb	cb	PROPN
cet-367	73	15	=	=	PUNCT
cet-367	73	16	known	know	VERB
cet-367	73	17	base	base	NOUN
cet-367	73	18	cost	cost	NOUN
cet-367	73	19	of	of	ADP
cet-367	73	20	equipment	equipment	NOUN
cet-367	73	21	with	with	ADP
cet-367	73	22	capacity	capacity	NOUN
cet-367	73	23	db	db	PROPN
cet-367	73	24	,	,	PUNCT
cet-367	73	25	m	m	VERB
cet-367	73	26	=	=	NOUN
cet-367	73	27	constant	constant	ADJ
cet-367	73	28	depending	depend	VERB
cet-367	73	29	on	on	ADP
cet-367	73	30	equipment	equipment	NOUN
cet-367	73	31	type	type	NOUN
cet-367	73	32	note	note	NOUN
cet-367	73	33	that	that	SCONJ
cet-367	73	34	the	the	DET
cet-367	73	35	capital	capital	NOUN
cet-367	73	36	cost	cost	NOUN
cet-367	73	37	correlation	correlation	NOUN
cet-367	73	38	for	for	ADP
cet-367	73	39	whru	whru	NOUN
cet-367	73	40	is	be	AUX
cet-367	73	41	based	base	VERB
cet-367	73	42	on	on	ADP
cet-367	73	43	that	that	PRON
cet-367	73	44	for	for	ADP
cet-367	73	45	air	air	NOUN
cet-367	73	46	cooled	cool	VERB
cet-367	73	47	heat	heat	NOUN
cet-367	73	48	exchanger	exchanger	NOUN
cet-367	73	49	.	.	PUNCT
cet-367	74	1	the	the	DET
cet-367	74	2	operating	operate	VERB
cet-367	74	3	cost	cost	NOUN
cet-367	74	4	of	of	ADP
cet-367	74	5	the	the	DET
cet-367	74	6	heating	heating	NOUN
cet-367	74	7	medium	medium	NOUN
cet-367	74	8	system	system	NOUN
cet-367	74	9	(	(	PUNCT
cet-367	74	10	cu	cu	NOUN
cet-367	74	11	)	)	PUNCT
cet-367	74	12	based	base	VERB
cet-367	74	13	on	on	ADP
cet-367	74	14	the	the	DET
cet-367	74	15	power	power	NOUN
cet-367	74	16	consumption	consumption	NOUN
cet-367	74	17	of	of	ADP
cet-367	74	18	the	the	DET
cet-367	74	19	circulation	circulation	NOUN
cet-367	74	20	pump	pump	NOUN
cet-367	74	21	is	be	AUX
cet-367	74	22	determined	determine	VERB
cet-367	74	23	using	use	VERB
cet-367	74	24	eq.(21	eq.(21	NOUN
cet-367	74	25	)	)	PUNCT
cet-367	74	26	.	.	PUNCT
cet-367	75	1	cu	cu	PROPN
cet-367	76	1	=	=	PROPN
cet-367	76	2	p	p	PROPN
cet-367	76	3	s	s	X
cet-367	76	4	wg	wg	NOUN
cet-367	76	5	(	(	PUNCT
cet-367	76	6	21	21	NUM
cet-367	76	7	)	)	PUNCT
cet-367	76	8	where	where	SCONJ
cet-367	76	9	ps	ps	PROPN
cet-367	76	10	is	be	AUX
cet-367	76	11	the	the	DET
cet-367	76	12	pump	pump	NOUN
cet-367	76	13	power	power	NOUN
cet-367	76	14	,	,	PUNCT
cet-367	76	15	w	w	PROPN
cet-367	76	16	is	be	AUX
cet-367	76	17	the	the	DET
cet-367	76	18	duration	duration	NOUN
cet-367	76	19	of	of	ADP
cet-367	76	20	usage	usage	NOUN
cet-367	76	21	and	and	CCONJ
cet-367	76	22	g	g	NOUN
cet-367	76	23	is	be	AUX
cet-367	76	24	the	the	DET
cet-367	76	25	electricity	electricity	NOUN
cet-367	76	26	tariff	tariff	NOUN
cet-367	76	27	.	.	PUNCT
cet-367	77	1	the	the	DET
cet-367	77	2	optimisation	optimisation	NOUN
cet-367	77	3	equation	equation	NOUN
cet-367	77	4	is	be	AUX
cet-367	77	5	set	set	VERB
cet-367	77	6	to	to	PART
cet-367	77	7	minimise	minimise	VERB
cet-367	77	8	the	the	DET
cet-367	77	9	total	total	ADJ
cet-367	77	10	annualised	annualise	VERB
cet-367	77	11	cost	cost	NOUN
cet-367	77	12	(	(	PUNCT
cet-367	77	13	tac	tac	NOUN
cet-367	77	14	)	)	PUNCT
cet-367	77	15	of	of	ADP
cet-367	77	16	the	the	DET
cet-367	77	17	heating	heating	NOUN
cet-367	77	18	medium	medium	NOUN
cet-367	77	19	system	system	NOUN
cet-367	77	20	,	,	PUNCT
cet-367	77	21	given	give	VERB
cet-367	77	22	by	by	ADP
cet-367	77	23	eq	eq	PROPN
cet-367	77	24	.	.	PROPN
cet-367	77	25	22	22	NUM
cet-367	77	26	.	.	PUNCT
cet-367	78	1	the	the	DET
cet-367	78	2	model	model	NOUN
cet-367	78	3	will	will	AUX
cet-367	78	4	also	also	ADV
cet-367	78	5	determine	determine	VERB
cet-367	78	6	the	the	DET
cet-367	78	7	optimum	optimum	ADJ
cet-367	78	8	network	network	NOUN
cet-367	78	9	configuration	configuration	NOUN
cet-367	78	10	for	for	ADP
cet-367	78	11	the	the	DET
cet-367	78	12	system	system	NOUN
cet-367	78	13	.	.	PUNCT
cet-367	79	1	to	to	PART
cet-367	79	2	elucidate	elucidate	VERB
cet-367	79	3	the	the	DET
cet-367	79	4	proposed	propose	VERB
cet-367	79	5	superstructure	superstructure	NOUN
cet-367	79	6	model	model	NOUN
cet-367	79	7	,	,	PUNCT
cet-367	79	8	an	an	DET
cet-367	79	9	industrial	industrial	ADJ
cet-367	79	10	case	case	NOUN
cet-367	79	11	study	study	NOUN
cet-367	79	12	is	be	AUX
cet-367	79	13	presented	present	VERB
cet-367	79	14	in	in	ADP
cet-367	79	15	the	the	DET
cet-367	79	16	following	follow	VERB
cet-367	79	17	section	section	NOUN
cet-367	79	18	.	.	PUNCT
cet-367	80	1	1900	1900	NUM
cet-367	80	2	tac	tac	X
cet-367	80	3	=	=	SYM
cet-367	80	4	chen+cwhru+cp+cu	chen+cwhru+cp+cu	X
cet-367	80	5	(	(	PUNCT
cet-367	80	6	22	22	NUM
cet-367	80	7	)	)	PUNCT
cet-367	80	8	5	5	NUM
cet-367	80	9	.	.	PUNCT
cet-367	80	10	case	case	NOUN
cet-367	80	11	study	study	NOUN
cet-367	80	12	in	in	ADP
cet-367	80	13	this	this	DET
cet-367	80	14	section	section	NOUN
cet-367	80	15	,	,	PUNCT
cet-367	80	16	an	an	DET
cet-367	80	17	industrial	industrial	ADJ
cet-367	80	18	case	case	NOUN
cet-367	80	19	study	study	NOUN
cet-367	80	20	is	be	AUX
cet-367	80	21	used	use	VERB
cet-367	80	22	to	to	PART
cet-367	80	23	demonstrate	demonstrate	VERB
cet-367	80	24	the	the	DET
cet-367	80	25	use	use	NOUN
cet-367	80	26	of	of	ADP
cet-367	80	27	the	the	DET
cet-367	80	28	proposed	propose	VERB
cet-367	80	29	superstructure	superstructure	NOUN
cet-367	80	30	approach	approach	NOUN
cet-367	80	31	to	to	PART
cet-367	80	32	design	design	VERB
cet-367	80	33	a	a	DET
cet-367	80	34	cost	cost	NOUN
cet-367	80	35	-	-	PUNCT
cet-367	80	36	optimum	optimum	NOUN
cet-367	80	37	heating	heating	NOUN
cet-367	80	38	utility	utility	NOUN
cet-367	80	39	system	system	NOUN
cet-367	80	40	.	.	PUNCT
cet-367	81	1	an	an	DET
cet-367	81	2	offshore	offshore	ADJ
cet-367	81	3	floating	float	VERB
cet-367	81	4	production	production	NOUN
cet-367	81	5	storage	storage	NOUN
cet-367	81	6	offloading	offload	VERB
cet-367	81	7	(	(	PUNCT
cet-367	81	8	fpso	fpso	NOUN
cet-367	81	9	)	)	PUNCT
cet-367	81	10	platform	platform	NOUN
cet-367	81	11	is	be	AUX
cet-367	81	12	to	to	PART
cet-367	81	13	be	be	AUX
cet-367	81	14	installed	instal	VERB
cet-367	81	15	at	at	ADP
cet-367	81	16	angola	angola	PROPN
cet-367	81	17	(	(	PUNCT
cet-367	81	18	africa	africa	PROPN
cet-367	81	19	)	)	PUNCT
cet-367	81	20	.	.	PUNCT
cet-367	82	1	its	its	PRON
cet-367	82	2	pfd	pfd	PROPN
cet-367	82	3	is	be	AUX
cet-367	82	4	similar	similar	ADJ
cet-367	82	5	to	to	ADP
cet-367	82	6	that	that	PRON
cet-367	82	7	in	in	ADP
cet-367	82	8	figure	figure	NOUN
cet-367	82	9	1	1	NUM
cet-367	82	10	,	,	PUNCT
cet-367	82	11	with	with	ADP
cet-367	82	12	its	its	PRON
cet-367	82	13	limiting	limit	VERB
cet-367	82	14	data	datum	NOUN
cet-367	82	15	for	for	ADP
cet-367	82	16	the	the	DET
cet-367	82	17	cold	cold	ADJ
cet-367	82	18	streams	stream	NOUN
cet-367	82	19	shown	show	VERB
cet-367	82	20	in	in	ADP
cet-367	82	21	table	table	NOUN
cet-367	82	22	1	1	NUM
cet-367	82	23	.	.	PUNCT
cet-367	83	1	the	the	DET
cet-367	83	2	flue	flue	NOUN
cet-367	83	3	gas	gas	NOUN
cet-367	83	4	inlet	inlet	NOUN
cet-367	83	5	(	(	PUNCT
cet-367	83	6	tin	tin	NOUN
cet-367	83	7	,	,	PUNCT
cet-367	83	8	g	g	NOUN
cet-367	83	9	)	)	PUNCT
cet-367	83	10	and	and	CCONJ
cet-367	83	11	outlet	outlet	NOUN
cet-367	83	12	temperature	temperature	NOUN
cet-367	83	13	(	(	PUNCT
cet-367	83	14	tout	tout	ADJ
cet-367	83	15	,	,	PUNCT
cet-367	83	16	g	g	NOUN
cet-367	83	17	)	)	PUNCT
cet-367	83	18	are	be	AUX
cet-367	83	19	433	433	NUM
cet-367	83	20	°	°	NOUN
cet-367	83	21	c	c	NOUN
cet-367	83	22	and	and	CCONJ
cet-367	83	23	130	130	NUM
cet-367	83	24	°	°	NOUN
cet-367	83	25	c	c	NOUN
cet-367	83	26	.	.	PUNCT
cet-367	84	1	while	while	SCONJ
cet-367	84	2	the	the	DET
cet-367	84	3	heating	heating	NOUN
cet-367	84	4	medium	medium	ADJ
cet-367	84	5	temperature	temperature	NOUN
cet-367	84	6	(	(	PUNCT
cet-367	84	7	thm	thm	PROPN
cet-367	84	8	)	)	PUNCT
cet-367	84	9	is	be	AUX
cet-367	84	10	set	set	VERB
cet-367	84	11	at	at	ADP
cet-367	84	12	130	130	NUM
cet-367	84	13	°	°	NOUN
cet-367	84	14	c	c	NOUN
cet-367	84	15	.	.	PUNCT
cet-367	85	1	data	datum	NOUN
cet-367	85	2	for	for	ADP
cet-367	85	3	the	the	DET
cet-367	85	4	design	design	NOUN
cet-367	85	5	of	of	ADP
cet-367	85	6	whru	whru	NOUN
cet-367	85	7	and	and	CCONJ
cet-367	85	8	pump	pump	NOUN
cet-367	85	9	are	be	AUX
cet-367	85	10	as	as	ADV
cet-367	85	11	follow	follow	VERB
cet-367	85	12	:	:	PUNCT
cet-367	85	13	overall	overall	ADJ
cet-367	85	14	heat	heat	NOUN
cet-367	85	15	transfer	transfer	NOUN
cet-367	85	16	,	,	PUNCT
cet-367	85	17	ue	ue	PROPN
cet-367	85	18	(	(	PUNCT
cet-367	85	19	326.5	326.5	NUM
cet-367	85	20	kwm-2	kwm-2	NOUN
cet-367	85	21	°	°	NOUN
cet-367	85	22	c-1	c-1	NOUN
cet-367	85	23	)	)	PUNCT
cet-367	85	24	,	,	PUNCT
cet-367	85	25	height	height	NOUN
cet-367	85	26	,	,	PUNCT
cet-367	85	27	d	d	X
cet-367	85	28	(	(	PUNCT
cet-367	85	29	51.8	51.8	NUM
cet-367	85	30	m	m	NOUN
cet-367	85	31	)	)	PUNCT
cet-367	85	32	,	,	PUNCT
cet-367	85	33	efficiency	efficiency	NOUN
cet-367	85	34	,	,	PUNCT
cet-367	85	35	η	η	PROPN
cet-367	85	36	(	(	PUNCT
cet-367	85	37	60	60	NUM
cet-367	85	38	%	%	NOUN
cet-367	85	39	)	)	PUNCT
cet-367	85	40	,	,	PUNCT
cet-367	85	41	heating	heat	VERB
cet-367	85	42	medium	medium	ADJ
cet-367	85	43	average	average	ADJ
cet-367	85	44	specific	specific	ADJ
cet-367	85	45	heat	heat	NOUN
cet-367	85	46	capacity	capacity	NOUN
cet-367	85	47	,	,	PUNCT
cet-367	85	48	cphm	cphm	NOUN
cet-367	85	49	(	(	PUNCT
cet-367	85	50	4.326	4.326	NUM
cet-367	85	51	kwm-2	kwm-2	NOUN
cet-367	85	52	°	°	NOUN
cet-367	85	53	c-1	c-1	NOUN
cet-367	85	54	)	)	PUNCT
cet-367	85	55	.	.	PUNCT
cet-367	86	1	table	table	NOUN
cet-367	86	2	1	1	NUM
cet-367	86	3	:	:	PUNCT
cet-367	86	4	limiting	limit	VERB
cet-367	86	5	cold	cold	ADJ
cet-367	86	6	streams	stream	NOUN
cet-367	86	7	data	datum	NOUN
cet-367	86	8	for	for	ADP
cet-367	86	9	industrial	industrial	ADJ
cet-367	86	10	case	case	NOUN
cet-367	86	11	study	study	NOUN
cet-367	86	12	unit	unit	NOUN
cet-367	86	13	,	,	PUNCT
cet-367	86	14	m	m	VERB
cet-367	86	15	inlet	inlet	VERB
cet-367	86	16	temperature	temperature	NOUN
cet-367	86	17	,	,	PUNCT
cet-367	86	18	tin	tin	NOUN
cet-367	86	19	,	,	PUNCT
cet-367	86	20	m	m	PROPN
cet-367	86	21	(	(	PUNCT
cet-367	86	22	°	°	ADP
cet-367	86	23	c	c	NOUN
cet-367	86	24	)	)	PUNCT
cet-367	86	25	outlet	outlet	NOUN
cet-367	86	26	temperature	temperature	NOUN
cet-367	86	27	,	,	PUNCT
cet-367	86	28	tout	tout	ADJ
cet-367	86	29	,	,	PUNCT
cet-367	86	30	m	m	VERB
cet-367	86	31	(	(	PUNCT
cet-367	86	32	°	°	ADP
cet-367	86	33	c	c	NOUN
cet-367	86	34	)	)	PUNCT
cet-367	86	35	cold	cold	ADJ
cet-367	86	36	streams	stream	NOUN
cet-367	86	37	overall	overall	ADJ
cet-367	86	38	heat	heat	NOUN
cet-367	86	39	transfer	transfer	NOUN
cet-367	86	40	coefficient	coefficient	NOUN
cet-367	86	41	,	,	PUNCT
cet-367	86	42	hm	hm	INTJ
cet-367	86	43	(	(	PUNCT
cet-367	86	44	kwm-2	kwm-2	NOUN
cet-367	86	45	°	°	NOUN
cet-367	86	46	c-1	c-1	NOUN
cet-367	86	47	)	)	PUNCT
cet-367	86	48	load	load	NOUN
cet-367	86	49	,	,	PUNCT
cet-367	86	50	qm	qm	PROPN
cet-367	86	51	(	(	PUNCT
cet-367	86	52	kw	kw	NOUN
cet-367	86	53	)	)	PUNCT
cet-367	86	54	limiting	limit	VERB
cet-367	86	55	heat	heat	NOUN
cet-367	86	56	capacity	capacity	NOUN
cet-367	86	57	flowrate	flowrate	ADJ
cet-367	86	58	,	,	PUNCT
cet-367	86	59	fm(kw	fm(kw	NOUN
cet-367	86	60	°	°	NOUN
cet-367	86	61	c-1	c-1	NOUN
cet-367	86	62	)	)	PUNCT
cet-367	86	63	1	1	NUM
cet-367	86	64	30	30	NUM
cet-367	86	65	65	65	NUM
cet-367	86	66	2	2	NUM
cet-367	86	67	3,630	3,630	NUM
cet-367	86	68	103.71	103.71	NUM
cet-367	86	69	2	2	NUM
cet-367	86	70	39	39	NUM
cet-367	86	71	65	65	NUM
cet-367	86	72	1	1	NUM
cet-367	86	73	9,174	9,174	NUM
cet-367	86	74	352.85	352.85	NUM
cet-367	86	75	3	3	NUM
cet-367	86	76	57	57	NUM
cet-367	86	77	90	90	NUM
cet-367	86	78	1.5	1.5	NUM
cet-367	86	79	6,689	6,689	NUM
cet-367	86	80	202.70	202.70	NUM
cet-367	86	81	total	total	NOUN
cet-367	86	82	19,493	19,493	NUM
cet-367	86	83	659.26	659.26	NUM
cet-367	86	84	table	table	NOUN
cet-367	86	85	2	2	NUM
cet-367	86	86	:	:	PUNCT
cet-367	86	87	data	datum	NOUN
cet-367	86	88	for	for	ADP
cet-367	86	89	costing	cost	VERB
cet-367	86	90	calculation	calculation	NOUN
cet-367	86	91	.	.	PUNCT
cet-367	87	1	*	*	PUNCT
cet-367	87	2	data	datum	NOUN
cet-367	87	3	from	from	ADP
cet-367	87	4	smith	smith	PROPN
cet-367	87	5	(	(	PUNCT
cet-367	87	6	2005	2005	NUM
cet-367	87	7	)	)	PUNCT
cet-367	87	8	.	.	PUNCT
cet-367	88	1	*	*	PUNCT
cet-367	88	2	*	*	PUNCT
cet-367	88	3	data	datum	NOUN
cet-367	88	4	adjusted	adjust	VERB
cet-367	88	5	based	base	VERB
cet-367	88	6	on	on	ADP
cet-367	88	7	ce	ce	PROPN
cet-367	88	8	index	index	NOUN
cet-367	88	9	of	of	ADP
cet-367	88	10	october	october	PROPN
cet-367	88	11	2014	2014	NUM
cet-367	88	12	(	(	PUNCT
cet-367	88	13	chemical	chemical	NOUN
cet-367	88	14	engineering	engineering	NOUN
cet-367	88	15	,	,	PUNCT
cet-367	88	16	2015	2015	NUM
cet-367	88	17	)	)	PUNCT
cet-367	88	18	.	.	PUNCT
cet-367	89	1	parameters	parameter	NOUN
cet-367	89	2	value	value	NOUN
cet-367	89	3	parameters	parameter	NOUN
cet-367	89	4	value	value	VERB
cet-367	89	5	i	i	PRON
cet-367	89	6	10	10	NUM
cet-367	89	7	%	%	NOUN
cet-367	89	8	whru	whru	NOUN
cet-367	89	9	*	*	SYM
cet-367	89	10	,	,	PUNCT
cet-367	89	11	m	m	PROPN
cet-367	89	12	0.89	0.89	NUM
cet-367	89	13	n	n	PRON
cet-367	89	14	25	25	NUM
cet-367	89	15	y	y	PROPN
cet-367	89	16	pump	pump	PROPN
cet-367	89	17	*	*	NOUN
cet-367	89	18	,	,	PUNCT
cet-367	89	19	cb	cb	PROPN
cet-367	89	20	$	$	SYM
cet-367	89	21	9.2594x104	9.2594x104	NUM
cet-367	89	22	*	*	PUNCT
cet-367	89	23	*	*	PUNCT
cet-367	89	24	a	a	PRON
cet-367	89	25	*	*	PUNCT
cet-367	89	26	260,800	260,800	NUM
cet-367	89	27	*	*	PUNCT
cet-367	89	28	*	*	PUNCT
cet-367	89	29	pump	pump	NOUN
cet-367	89	30	*	*	NOUN
cet-367	89	31	,	,	PUNCT
cet-367	89	32	db	db	PROPN
cet-367	89	33	4	4	NUM
cet-367	89	34	kw	kw	NOUN
cet-367	89	35	b	b	PROPN
cet-367	89	36	*	*	PROPN
cet-367	89	37	3260	3260	NUM
cet-367	89	38	*	*	PUNCT
cet-367	89	39	*	*	PUNCT
cet-367	89	40	pump	pump	NOUN
cet-367	89	41	*	*	NOUN
cet-367	89	42	,	,	PUNCT
cet-367	89	43	m	m	VERB
cet-367	89	44	0.55	0.55	NUM
cet-367	89	45	c	c	NOUN
cet-367	89	46	*	*	SYM
cet-367	89	47	1	1	NUM
cet-367	89	48	duration	duration	NOUN
cet-367	89	49	,	,	PUNCT
cet-367	89	50	w	w	PROPN
cet-367	89	51	8,760	8,760	NUM
cet-367	89	52	h	h	NOUN
cet-367	89	53	whru	whru	NOUN
cet-367	89	54	*	*	PUNCT
cet-367	89	55	,	,	PUNCT
cet-367	89	56	cb	cb	PROPN
cet-367	89	57	$	$	SYM
cet-367	89	58	1.0171x106	1.0171x106	PROPN
cet-367	89	59	*	*	PUNCT
cet-367	89	60	*	*	PUNCT
cet-367	89	61	electrical	electrical	ADJ
cet-367	89	62	tariff	tariff	NOUN
cet-367	89	63	,	,	PUNCT
cet-367	89	64	g	g	PROPN
cet-367	89	65	0.12	0.12	NUM
cet-367	89	66	$	$	SYM
cet-367	89	67	/h	/h	NOUN
cet-367	89	68	whru	whru	NOUN
cet-367	89	69	*	*	PUNCT
cet-367	89	70	,	,	PUNCT
cet-367	89	71	db	db	PROPN
cet-367	89	72	200	200	NUM
cet-367	89	73	m2	m2	PROPN
cet-367	89	74	figure	figure	NOUN
cet-367	89	75	3	3	NUM
cet-367	89	76	:	:	PUNCT
cet-367	89	77	final	final	ADJ
cet-367	89	78	configuration	configuration	NOUN
cet-367	89	79	of	of	ADP
cet-367	89	80	heating	heating	NOUN
cet-367	89	81	utility	utility	NOUN
cet-367	89	82	network	network	NOUN
cet-367	89	83	for	for	ADP
cet-367	89	84	case	case	NOUN
cet-367	89	85	study	study	NOUN
cet-367	89	86	(	(	PUNCT
cet-367	89	87	heat	heat	NOUN
cet-367	89	88	capacity	capacity	NOUN
cet-367	89	89	flowrate	flowrate	ADJ
cet-367	89	90	in	in	ADP
cet-367	89	91	kw/	kw/	PROPN
cet-367	89	92	°	°	PROPN
cet-367	89	93	c	c	NOUN
cet-367	89	94	,	,	PUNCT
cet-367	89	95	temperature	temperature	NOUN
cet-367	89	96	in	in	ADP
cet-367	89	97	°	°	NOUN
cet-367	89	98	c	c	NOUN
cet-367	89	99	,	,	PUNCT
cet-367	89	100	given	give	VERB
cet-367	89	101	in	in	ADP
cet-367	89	102	parenthesis	parenthesis	NOUN
cet-367	89	103	)	)	PUNCT
cet-367	89	104	.	.	PUNCT
cet-367	90	1	solving	solve	VERB
cet-367	90	2	the	the	DET
cet-367	90	3	objective	objective	ADJ
cet-367	90	4	function	function	NOUN
cet-367	90	5	in	in	ADP
cet-367	90	6	eq(22	eq(22	PROPN
cet-367	90	7	)	)	PUNCT
cet-367	90	8	subject	subject	ADJ
cet-367	90	9	to	to	ADP
cet-367	90	10	the	the	DET
cet-367	90	11	constraints	constraint	NOUN
cet-367	90	12	in	in	ADP
cet-367	90	13	eqs(1	eqs(1	NOUN
cet-367	90	14	-	-	PUNCT
cet-367	90	15	21	21	NUM
cet-367	90	16	)	)	PUNCT
cet-367	90	17	yields	yield	VERB
cet-367	90	18	the	the	DET
cet-367	90	19	minimum	minimum	ADJ
cet-367	90	20	total	total	ADJ
cet-367	90	21	annualised	annualise	VERB
cet-367	90	22	cost	cost	NOUN
cet-367	90	23	of	of	ADP
cet-367	90	24	the	the	DET
cet-367	90	25	heating	heating	NOUN
cet-367	90	26	medium	medium	NOUN
cet-367	90	27	as	as	ADP
cet-367	90	28	$	$	SYM
cet-367	90	29	632,679	632,679	NUM
cet-367	90	30	.	.	PUNCT
cet-367	91	1	the	the	DET
cet-367	91	2	optimum	optimum	ADJ
cet-367	91	3	hen	hen	NOUN
cet-367	91	4	design	design	NOUN
cet-367	91	5	obtained	obtain	VERB
cet-367	91	6	from	from	ADP
cet-367	91	7	the	the	DET
cet-367	91	8	superstructure	superstructure	NOUN
cet-367	91	9	solution	solution	NOUN
cet-367	91	10	is	be	AUX
cet-367	91	11	shown	show	VERB
cet-367	91	12	in	in	ADP
cet-367	91	13	figure	figure	NOUN
cet-367	91	14	3	3	NUM
cet-367	91	15	.	.	PUNCT
cet-367	92	1	the	the	DET
cet-367	92	2	design	design	NOUN
cet-367	92	3	encompasses	encompass	VERB
cet-367	92	4	a	a	DET
cet-367	92	5	series	series	NOUN
cet-367	92	6	design	design	NOUN
cet-367	92	7	of	of	ADP
cet-367	92	8	the	the	DET
cet-367	92	9	hen	hen	NOUN
cet-367	92	10	.	.	PUNCT
cet-367	93	1	table	table	NOUN
cet-367	93	2	3	3	NUM
cet-367	93	3	shows	show	VERB
cet-367	93	4	the	the	DET
cet-367	93	5	comparison	comparison	NOUN
cet-367	93	6	between	between	ADP
cet-367	93	7	the	the	DET
cet-367	93	8	result	result	NOUN
cet-367	93	9	obtained	obtain	VERB
cet-367	93	10	from	from	ADP
cet-367	93	11	the	the	DET
cet-367	93	12	superstructure	superstructure	NOUN
cet-367	93	13	approach	approach	NOUN
cet-367	93	14	against	against	ADP
cet-367	93	15	the	the	DET
cet-367	93	16	conventional	conventional	ADJ
cet-367	93	17	design	design	NOUN
cet-367	93	18	(	(	PUNCT
cet-367	93	19	see	see	VERB
cet-367	93	20	figure	figure	NOUN
cet-367	93	21	1	1	NUM
cet-367	93	22	)	)	PUNCT
cet-367	93	23	,	,	PUNCT
cet-367	93	24	where	where	SCONJ
cet-367	93	25	the	the	DET
cet-367	93	26	heating	heating	NOUN
cet-367	93	27	medium	medium	NOUN
cet-367	93	28	is	be	AUX
cet-367	93	29	fed	feed	VERB
cet-367	93	30	to	to	ADP
cet-367	93	31	all	all	DET
cet-367	93	32	heat	heat	NOUN
cet-367	93	33	exchangers	exchanger	NOUN
cet-367	93	34	at	at	ADP
cet-367	93	35	130	130	NUM
cet-367	93	36	°	°	ADP
cet-367	93	37	c	c	NOUN
cet-367	93	38	and	and	CCONJ
cet-367	93	39	returns	return	NOUN
cet-367	93	40	at	at	ADP
cet-367	93	41	90	90	NUM
cet-367	93	42	°	°	NOUN
cet-367	93	43	c	c	NOUN
cet-367	93	44	.	.	PUNCT
cet-367	94	1	unit	unit	NOUN
cet-367	94	2	3	3	NUM
cet-367	94	3	6689	6689	NUM
cet-367	94	4	kw	kw	NOUN
cet-367	94	5	unit	unit	NOUN
cet-367	94	6	2	2	NUM
cet-367	94	7	9174	9174	NUM
cet-367	94	8	kw	kw	NOUN
cet-367	94	9	unit	unit	NOUN
cet-367	94	10	1	1	NUM
cet-367	94	11	3630	3630	NUM
cet-367	94	12	kw	kw	INTJ
cet-367	94	13	hot	hot	ADJ
cet-367	94	14	oil	oil	NOUN
cet-367	94	15	supply	supply	NOUN
cet-367	94	16	355.00	355.00	NUM
cet-367	94	17	(	(	PUNCT
cet-367	94	18	130	130	NUM
cet-367	94	19	)	)	PUNCT
cet-367	94	20	355.00	355.00	NUM
cet-367	94	21	(	(	PUNCT
cet-367	94	22	85.32	85.32	NUM
cet-367	94	23	)	)	PUNCT
cet-367	94	24	355.00	355.00	NUM
cet-367	94	25	(	(	PUNCT
cet-367	94	26	75.09	75.09	NUM
cet-367	94	27	)	)	PUNCT
cet-367	94	28	hot	hot	ADJ
cet-367	94	29	oil	oil	NOUN
cet-367	94	30	return	return	NOUN
cet-367	94	31	waste	waste	NOUN
cet-367	94	32	heat	heat	NOUN
cet-367	94	33	recovery	recovery	NOUN
cet-367	94	34	unit	unit	NOUN
cet-367	94	35	355.00	355.00	NUM
cet-367	94	36	(	(	PUNCT
cet-367	94	37	111.16	111.16	NUM
cet-367	94	38	)	)	PUNCT
cet-367	94	39	1901	1901	NUM
cet-367	94	40	the	the	DET
cet-367	94	41	conventional	conventional	ADJ
cet-367	94	42	design	design	NOUN
cet-367	94	43	tac	tac	PROPN
cet-367	94	44	is	be	AUX
cet-367	94	45	determined	determine	VERB
cet-367	94	46	as	as	ADP
cet-367	94	47	$	$	SYM
cet-367	94	48	664,880	664,880	NUM
cet-367	94	49	,	,	PUNCT
cet-367	94	50	thus	thus	ADV
cet-367	94	51	an	an	DET
cet-367	94	52	annual	annual	ADJ
cet-367	94	53	saving	saving	NOUN
cet-367	94	54	of	of	ADP
cet-367	94	55	$	$	SYM
cet-367	94	56	32,201	32,201	NUM
cet-367	94	57	(	(	PUNCT
cet-367	94	58	corresponds	correspond	VERB
cet-367	94	59	to	to	ADP
cet-367	94	60	4.8	4.8	NUM
cet-367	94	61	%	%	NOUN
cet-367	94	62	reduction	reduction	NOUN
cet-367	94	63	)	)	PUNCT
cet-367	95	1	can	can	AUX
cet-367	95	2	be	be	AUX
cet-367	95	3	achieved	achieve	VERB
cet-367	95	4	through	through	ADP
cet-367	95	5	the	the	DET
cet-367	95	6	series	series	NOUN
cet-367	95	7	design	design	NOUN
cet-367	95	8	shown	show	VERB
cet-367	95	9	in	in	ADP
cet-367	95	10	figure	figure	NOUN
cet-367	95	11	3	3	NUM
cet-367	95	12	.	.	PUNCT
cet-367	95	13	table	table	NOUN
cet-367	95	14	3	3	NUM
cet-367	95	15	:	:	PUNCT
cet-367	95	16	comparison	comparison	NOUN
cet-367	95	17	of	of	ADP
cet-367	95	18	cost	cost	NOUN
cet-367	95	19	between	between	ADP
cet-367	95	20	optimum	optimum	ADJ
cet-367	95	21	design	design	NOUN
cet-367	95	22	from	from	ADP
cet-367	95	23	superstructure	superstructure	NOUN
cet-367	95	24	approach	approach	NOUN
cet-367	95	25	and	and	CCONJ
cet-367	95	26	conventional	conventional	ADJ
cet-367	95	27	design	design	NOUN
cet-367	95	28	.	.	PUNCT
cet-367	96	1	elements	element	NOUN
cet-367	96	2	this	this	DET
cet-367	96	3	work	work	NOUN
cet-367	96	4	conventional	conventional	ADJ
cet-367	96	5	design	design	NOUN
cet-367	96	6	annualised	annualise	VERB
cet-367	96	7	capital	capital	NOUN
cet-367	96	8	cost	cost	NOUN
cet-367	96	9	hen	hen	NOUN
cet-367	96	10	(	(	PUNCT
cet-367	96	11	$	$	SYM
cet-367	96	12	/y	/y	SYM
cet-367	96	13	)	)	PUNCT
cet-367	96	14	295,053	295,053	NUM
cet-367	96	15	259,974	259,974	NUM
cet-367	96	16	whru	whru	NOUN
cet-367	96	17	(	(	PUNCT
cet-367	96	18	$	$	SYM
cet-367	96	19	/y	/y	NOUN
cet-367	96	20	)	)	PUNCT
cet-367	96	21	205,596	205,596	NUM
cet-367	96	22	212,642	212,642	NUM
cet-367	96	23	pump	pump	NOUN
cet-367	96	24	(	(	PUNCT
cet-367	96	25	$	$	SYM
cet-367	96	26	/y	/y	PRON
cet-367	96	27	)	)	PUNCT
cet-367	96	28	51,680	51,680	NUM
cet-367	96	29	66,206	66,206	NUM
cet-367	96	30	total	total	ADJ
cet-367	96	31	annualised	annualise	VERB
cet-367	96	32	capital	capital	NOUN
cet-367	96	33	cost	cost	NOUN
cet-367	96	34	(	(	PUNCT
cet-367	96	35	$	$	SYM
cet-367	96	36	/y	/y	NOUN
cet-367	96	37	)	)	PUNCT
cet-367	96	38	552,329	552,329	NUM
cet-367	96	39	538,822	538,822	NUM
cet-367	96	40	total	total	ADJ
cet-367	96	41	utility	utility	NOUN
cet-367	96	42	cost	cost	NOUN
cet-367	96	43	(	(	PUNCT
cet-367	96	44	$	$	SYM
cet-367	96	45	/y	/y	SYM
cet-367	96	46	)	)	PUNCT
cet-367	96	47	80,350	80,350	NUM
cet-367	96	48	126,059	126,059	NUM
cet-367	96	49	tac	tac	NOUN
cet-367	96	50	(	(	PUNCT
cet-367	96	51	$	$	SYM
cet-367	96	52	/y	/y	SYM
cet-367	96	53	)	)	PUNCT
cet-367	96	54	632,679	632,679	NUM
cet-367	96	55	664,880	664,880	NUM
cet-367	96	56	6	6	NUM
cet-367	96	57	.	.	PUNCT
cet-367	97	1	conclusions	conclusion	NOUN
cet-367	97	2	this	this	DET
cet-367	97	3	work	work	NOUN
cet-367	97	4	proposes	propose	VERB
cet-367	97	5	a	a	DET
cet-367	97	6	novel	novel	ADJ
cet-367	97	7	superstructure	superstructure	NOUN
cet-367	97	8	approach	approach	NOUN
cet-367	97	9	for	for	ADP
cet-367	97	10	the	the	DET
cet-367	97	11	design	design	NOUN
cet-367	97	12	of	of	ADP
cet-367	97	13	heating	heating	NOUN
cet-367	97	14	utility	utility	NOUN
cet-367	97	15	system	system	NOUN
cet-367	97	16	,	,	PUNCT
cet-367	97	17	which	which	PRON
cet-367	97	18	is	be	AUX
cet-367	97	19	not	not	PART
cet-367	97	20	covered	cover	VERB
cet-367	97	21	in	in	ADP
cet-367	97	22	conventional	conventional	ADJ
cet-367	97	23	hen	hen	NOUN
cet-367	97	24	design	design	NOUN
cet-367	97	25	.	.	PUNCT
cet-367	98	1	the	the	DET
cet-367	98	2	proposed	propose	VERB
cet-367	98	3	method	method	NOUN
cet-367	98	4	allows	allow	VERB
cet-367	98	5	the	the	DET
cet-367	98	6	lowest	low	ADJ
cet-367	98	7	total	total	ADJ
cet-367	98	8	annualised	annualise	VERB
cet-367	98	9	cost	cost	NOUN
cet-367	98	10	of	of	ADP
cet-367	98	11	the	the	DET
cet-367	98	12	system	system	NOUN
cet-367	98	13	to	to	PART
cet-367	98	14	be	be	AUX
cet-367	98	15	determined	determine	VERB
cet-367	98	16	by	by	ADP
cet-367	98	17	weighing	weigh	VERB
cet-367	98	18	the	the	DET
cet-367	98	19	best	good	ADJ
cet-367	98	20	trade	trade	NOUN
cet-367	98	21	-	-	PUNCT
cet-367	98	22	off	off	NOUN
cet-367	98	23	between	between	ADP
cet-367	98	24	capital	capital	NOUN
cet-367	98	25	and	and	CCONJ
cet-367	98	26	operating	operating	NOUN
cet-367	98	27	cost	cost	NOUN
cet-367	98	28	of	of	ADP
cet-367	98	29	the	the	DET
cet-367	98	30	system	system	NOUN
cet-367	98	31	.	.	PUNCT
cet-367	99	1	the	the	DET
cet-367	99	2	main	main	ADJ
cet-367	99	3	advantage	advantage	NOUN
cet-367	99	4	of	of	ADP
cet-367	99	5	this	this	DET
cet-367	99	6	approach	approach	NOUN
cet-367	99	7	as	as	ADP
cet-367	99	8	compared	compare	VERB
cet-367	99	9	to	to	ADP
cet-367	99	10	other	other	ADJ
cet-367	99	11	techniques	technique	NOUN
cet-367	99	12	that	that	PRON
cet-367	99	13	has	have	AUX
cet-367	99	14	been	be	AUX
cet-367	99	15	published	publish	VERB
cet-367	99	16	for	for	ADP
cet-367	99	17	central	central	ADJ
cet-367	99	18	utility	utility	NOUN
cet-367	99	19	design	design	NOUN
cet-367	99	20	is	be	AUX
cet-367	99	21	that	that	SCONJ
cet-367	99	22	it	it	PRON
cet-367	99	23	allows	allow	VERB
cet-367	99	24	global	global	ADJ
cet-367	99	25	optimum	optimum	ADJ
cet-367	99	26	solution	solution	NOUN
cet-367	99	27	to	to	PART
cet-367	99	28	be	be	AUX
cet-367	99	29	obtained	obtain	VERB
cet-367	99	30	.	.	PUNCT
cet-367	100	1	besides	besides	SCONJ
cet-367	100	2	,	,	PUNCT
cet-367	100	3	the	the	DET
cet-367	100	4	proposed	propose	VERB
cet-367	100	5	superstructure	superstructure	NOUN
cet-367	100	6	approach	approach	NOUN
cet-367	100	7	provides	provide	VERB
cet-367	100	8	the	the	DET
cet-367	100	9	solution	solution	NOUN
cet-367	100	10	for	for	ADP
cet-367	100	11	optimum	optimum	ADJ
cet-367	100	12	hen	hen	NOUN
cet-367	100	13	which	which	PRON
cet-367	100	14	produces	produce	VERB
cet-367	100	15	the	the	DET
cet-367	100	16	minimum	minimum	PROPN
cet-367	100	17	tac	tac	PROPN
cet-367	100	18	.	.	PUNCT
cet-367	101	1	an	an	DET
cet-367	101	2	industrial	industrial	ADJ
cet-367	101	3	case	case	NOUN
cet-367	101	4	study	study	NOUN
cet-367	101	5	was	be	AUX
cet-367	101	6	used	use	VERB
cet-367	101	7	for	for	ADP
cet-367	101	8	demonstration	demonstration	NOUN
cet-367	101	9	;	;	PUNCT
cet-367	101	10	it	it	PRON
cet-367	101	11	proves	prove	VERB
cet-367	101	12	that	that	SCONJ
cet-367	101	13	the	the	DET
cet-367	101	14	total	total	ADJ
cet-367	101	15	annualised	annualise	VERB
cet-367	101	16	cost	cost	NOUN
cet-367	101	17	of	of	ADP
cet-367	101	18	the	the	DET
cet-367	101	19	system	system	NOUN
cet-367	101	20	is	be	AUX
cet-367	101	21	reduced	reduce	VERB
cet-367	101	22	by	by	ADP
cet-367	101	23	4.8	4.8	NUM
cet-367	101	24	%	%	NOUN
cet-367	101	25	by	by	ADP
cet-367	101	26	changing	change	VERB
cet-367	101	27	the	the	DET
cet-367	101	28	existing	exist	VERB
cet-367	101	29	hen	hen	NOUN
cet-367	101	30	from	from	ADP
cet-367	101	31	parallel	parallel	NOUN
cet-367	101	32	to	to	ADP
cet-367	101	33	series	series	NOUN
cet-367	101	34	design	design	PROPN
cet-367	101	35	.	.	PUNCT
cet-367	102	1	references	reference	NOUN
cet-367	102	2	api	api	NOUN
cet-367	102	3	recommended	recommend	VERB
cet-367	102	4	practice	practice	NOUN
cet-367	102	5	14e	14e	NOUN
cet-367	102	6	(	(	PUNCT
cet-367	102	7	rp	rp	NOUN
cet-367	102	8	14	14	NUM
cet-367	102	9	e	e	NOUN
cet-367	102	10	)	)	PUNCT
cet-367	102	11	,	,	PUNCT
cet-367	102	12	1991	1991	NUM
cet-367	102	13	.	.	PUNCT
cet-367	103	1	recommended	recommend	VERB
cet-367	103	2	practice	practice	NOUN
cet-367	103	3	for	for	ADP
cet-367	103	4	design	design	NOUN
cet-367	103	5	and	and	CCONJ
cet-367	103	6	installation	installation	NOUN
cet-367	103	7	of	of	ADP
cet-367	103	8	offshore	offshore	ADJ
cet-367	103	9	production	production	NOUN
cet-367	103	10	platform	platform	NOUN
cet-367	103	11	piping	piping	NOUN
cet-367	103	12	systems	system	NOUN
cet-367	103	13	(	(	PUNCT
cet-367	103	14	5th	5th	ADJ
cet-367	103	15	ed	ed	NOUN
cet-367	103	16	.	.	PUNCT
cet-367	103	17	)	)	PUNCT
cet-367	104	1	,	,	PUNCT
cet-367	104	2	washington	washington	PROPN
cet-367	104	3	,	,	PUNCT
cet-367	104	4	usa	usa	PROPN
cet-367	104	5	.	.	PROPN
cet-367	104	6	ataei	ataei	PROPN
cet-367	104	7	a.	a.	PROPN
cet-367	104	8	,	,	PUNCT
cet-367	104	9	tahouni	tahouni	PROPN
cet-367	104	10	n.	n.	PROPN
cet-367	104	11	,	,	PUNCT
cet-367	104	12	seyedi	seyedi	VERB
cet-367	104	13	s.m.h	s.m.h	ADP
cet-367	104	14	.	.	PUNCT
cet-367	104	15	,	,	PUNCT
cet-367	104	16	hashemian	hashemian	PROPN
cet-367	104	17	s.m	s.m	PROPN
cet-367	104	18	.	.	PROPN
cet-367	104	19	,	,	PUNCT
cet-367	104	20	yoo	yoo	PROPN
cet-367	105	1	c.k	c.k	PROPN
cet-367	105	2	.	.	PROPN
cet-367	105	3	,	,	PUNCT
cet-367	105	4	panjeshahi	panjeshahi	PROPN
cet-367	105	5	m.h	m.h	PROPN
cet-367	105	6	.	.	PROPN
cet-367	105	7	,	,	PUNCT
cet-367	105	8	2014	2014	NUM
cet-367	105	9	,	,	PUNCT
cet-367	105	10	a	a	DET
cet-367	105	11	novel	novel	ADJ
cet-367	105	12	approach	approach	NOUN
cet-367	105	13	to	to	ADP
cet-367	105	14	hot	hot	ADJ
cet-367	105	15	oil	oil	NOUN
cet-367	105	16	system	system	NOUN
cet-367	105	17	design	design	NOUN
cet-367	105	18	for	for	ADP
cet-367	105	19	energy	energy	NOUN
cet-367	105	20	conservation	conservation	NOUN
cet-367	105	21	,	,	PUNCT
cet-367	105	22	applied	apply	VERB
cet-367	105	23	thermal	thermal	ADJ
cet-367	105	24	engineering	engineering	NOUN
cet-367	105	25	,	,	PUNCT
cet-367	105	26	66	66	NUM
cet-367	105	27	,	,	PUNCT
cet-367	105	28	423	423	NUM
cet-367	105	29	-	-	SYM
cet-367	105	30	434	434	NUM
cet-367	105	31	.	.	PUNCT
cet-367	106	1	bade	bade	PROPN
cet-367	106	2	m.h	m.h	PROPN
cet-367	106	3	.	.	PROPN
cet-367	106	4	,	,	PUNCT
cet-367	106	5	bandyopadhyay	bandyopadhyay	PROPN
cet-367	106	6	s.	s.	PROPN
cet-367	106	7	,	,	PUNCT
cet-367	106	8	2014	2014	NUM
cet-367	106	9	,	,	PUNCT
cet-367	106	10	thermal	thermal	ADJ
cet-367	106	11	integration	integration	NOUN
cet-367	106	12	of	of	ADP
cet-367	106	13	heat	heat	NOUN
cet-367	106	14	transfer	transfer	NOUN
cet-367	106	15	fluid	fluid	NOUN
cet-367	106	16	systems	system	NOUN
cet-367	106	17	,	,	PUNCT
cet-367	106	18	asia	asia	PROPN
cet-367	106	19	-	-	PUNCT
cet-367	106	20	pac	pac	PROPN
cet-367	106	21	.	.	PUNCT
cet-367	107	1	j.	j.	PROPN
cet-367	107	2	chem	chem	PROPN
cet-367	107	3	.	.	PUNCT
cet-367	108	1	eng	eng	PROPN
cet-367	108	2	,	,	PUNCT
cet-367	108	3	9	9	NUM
cet-367	108	4	,	,	PUNCT
cet-367	108	5	1	1	NUM
cet-367	108	6	-	-	SYM
cet-367	108	7	15	15	NUM
cet-367	108	8	.	.	PUNCT
cet-367	109	1	chemical	chemical	NOUN
cet-367	109	2	engineering	engineering	NOUN
cet-367	109	3	,	,	PUNCT
cet-367	109	4	2015	2015	NUM
cet-367	109	5	,	,	PUNCT
cet-367	109	6	economic	economic	ADJ
cet-367	109	7	indicators	indicator	NOUN
cet-367	109	8	,	,	PUNCT
cet-367	109	9	<	<	X
cet-367	109	10	www.isr.umd.edu/~adomaiti/	www.isr.umd.edu/~adomaiti/	PROPN
cet-367	109	11	chbe446	chbe446	PROPN
cet-367	109	12	/	/	SYM
cet-367	109	13	literature/	literature/	NUM
cet-367	109	14	checostindexjan2015.pdf	checostindexjan2015.pdf	NOUN
cet-367	109	15	>	>	PUNCT
cet-367	109	16	,	,	PUNCT
cet-367	109	17	accessed	access	VERB
cet-367	109	18	5/05/2017	5/05/2017	NUM
cet-367	109	19	.	.	PUNCT
cet-367	109	20	de	de	PROPN
cet-367	109	21	oliveira	oliveira	PROPN
cet-367	109	22	jr	jr	PROPN
cet-367	109	23	.	.	PUNCT
cet-367	110	1	s.	s.	PROPN
cet-367	110	2	,	,	PUNCT
cet-367	110	3	van	van	PROPN
cet-367	110	4	hombeeck	hombeeck	PROPN
cet-367	110	5	m.	m.	NOUN
cet-367	110	6	,	,	PUNCT
cet-367	110	7	1997	1997	NUM
cet-367	110	8	,	,	PUNCT
cet-367	110	9	exergy	exergy	NOUN
cet-367	110	10	analysis	analysis	NOUN
cet-367	110	11	of	of	ADP
cet-367	110	12	petroleum	petroleum	NOUN
cet-367	110	13	separation	separation	NOUN
cet-367	110	14	processes	process	NOUN
cet-367	110	15	in	in	ADP
cet-367	110	16	offshore	offshore	ADJ
cet-367	110	17	platforms	platform	NOUN
cet-367	110	18	,	,	PUNCT
cet-367	110	19	energy	energy	NOUN
cet-367	110	20	convers	conver	NOUN
cet-367	110	21	manage	manage	VERB
cet-367	110	22	,	,	PUNCT
cet-367	110	23	38(15–17),1577–1584	38(15–17),1577–1584	NUM
cet-367	110	24	.	.	PUNCT
cet-367	111	1	foo	foo	PROPN
cet-367	111	2	d.	d.	PROPN
cet-367	111	3	c.	c.	PROPN
cet-367	111	4	y.	y.	PROPN
cet-367	111	5	,	,	PUNCT
cet-367	111	6	ng	ng	PROPN
cet-367	111	7	d.	d.	PROPN
cet-367	111	8	k.	k.	PROPN
cet-367	111	9	s.	s.	PROPN
cet-367	111	10	,	,	PUNCT
cet-367	111	11	leong	leong	PROPN
cet-367	111	12	m.	m.	PROPN
cet-367	111	13	k.	k.	PROPN
cet-367	111	14	y.	y.	PROPN
cet-367	111	15	,	,	PUNCT
cet-367	111	16	chew	chew	VERB
cet-367	111	17	i.	i.	PROPN
cet-367	111	18	m.	m.	PROPN
cet-367	111	19	l.	l.	PROPN
cet-367	111	20	,	,	PUNCT
cet-367	111	21	subramaniam	subramaniam	PROPN
cet-367	111	22	m.	m.	PROPN
cet-367	111	23	,	,	PUNCT
cet-367	111	24	aziz	aziz	PROPN
cet-367	111	25	r.	r.	PROPN
cet-367	111	26	,	,	PUNCT
cet-367	111	27	lee	lee	PROPN
cet-367	111	28	j.	j.	PROPN
cet-367	111	29	y.	y.	PROPN
cet-367	111	30	,	,	PUNCT
cet-367	111	31	2014	2014	NUM
cet-367	111	32	,	,	PUNCT
cet-367	111	33	targeting	targeting	NOUN
cet-367	111	34	and	and	CCONJ
cet-367	111	35	design	design	NOUN
cet-367	111	36	of	of	ADP
cet-367	111	37	chilled	chill	VERB
cet-367	111	38	water	water	NOUN
cet-367	111	39	network	network	NOUN
cet-367	111	40	,	,	PUNCT
cet-367	111	41	applied	apply	VERB
cet-367	111	42	energy	energy	NOUN
cet-367	111	43	,	,	PUNCT
cet-367	111	44	134	134	NUM
cet-367	111	45	,	,	PUNCT
cet-367	111	46	589	589	NUM
cet-367	111	47	-	-	SYM
cet-367	111	48	599	599	NUM
cet-367	111	49	.	.	PUNCT
cet-367	112	1	kim	kim	PROPN
cet-367	112	2	j	j	PROPN
cet-367	112	3	-	-	PROPN
cet-367	112	4	k.	k.	PROPN
cet-367	112	5	,	,	PUNCT
cet-367	112	6	smith	smith	PROPN
cet-367	112	7	r.	r.	PROPN
cet-367	112	8	,	,	PUNCT
cet-367	112	9	2001	2001	NUM
cet-367	112	10	,	,	PUNCT
cet-367	112	11	cooling	cool	VERB
cet-367	112	12	water	water	NOUN
cet-367	112	13	system	system	NOUN
cet-367	112	14	design	design	NOUN
cet-367	112	15	,	,	PUNCT
cet-367	112	16	chem.eng	chem.eng	X
cet-367	112	17	science	science	NOUN
cet-367	112	18	,	,	PUNCT
cet-367	112	19	56	56	NUM
cet-367	112	20	,	,	PUNCT
cet-367	112	21	3641	3641	NUM
cet-367	112	22	-	-	SYM
cet-367	112	23	3658	3658	NUM
cet-367	112	24	.	.	PUNCT
cet-367	113	1	macro	macro	ADJ
cet-367	113	2	trends	trend	NOUN
cet-367	113	3	,	,	PUNCT
cet-367	113	4	2017	2017	NUM
cet-367	113	5	.	.	PUNCT
cet-367	114	1	crude	crude	ADJ
cet-367	114	2	oil	oil	NOUN
cet-367	114	3	price	price	NOUN
cet-367	114	4	history	history	NOUN
cet-367	114	5	chart	chart	NOUN
cet-367	114	6	.	.	PUNCT
cet-367	115	1	macrotrends	macrotrend	NOUN
cet-367	115	2	,	,	PUNCT
cet-367	115	3	n.d	n.d	PROPN
cet-367	115	4	.	.	PROPN
cet-367	115	5	,	,	PUNCT
cet-367	115	6	<	<	X
cet-367	115	7	www.macrotrends.net/1369/crude-oilprice-history-chart	www.macrotrends.net/1369/crude-oilprice-history-chart	PROPN
cet-367	115	8	>	>	X
cet-367	115	9	,	,	PUNCT
cet-367	115	10	accessed	access	VERB
cet-367	115	11	17/02/2017	17/02/2017	NUM
cet-367	115	12	.	.	PUNCT
cet-367	116	1	nitsche	nitsche	PROPN
cet-367	116	2	m.	m.	PROPN
cet-367	116	3	,	,	PUNCT
cet-367	116	4	gbadamosi	gbadamosi	PROPN
cet-367	116	5	r.o	r.o	PROPN
cet-367	116	6	.	.	PROPN
cet-367	116	7	,	,	PUNCT
cet-367	116	8	2016	2016	NUM
cet-367	116	9	.	.	PUNCT
cet-367	117	1	heat	heat	NOUN
cet-367	117	2	exchanger	exchanger	NOUN
cet-367	117	3	design	design	NOUN
cet-367	117	4	guide	guide	NOUN
cet-367	117	5	;	;	PUNCT
cet-367	117	6	a	a	DET
cet-367	117	7	practical	practical	ADJ
cet-367	117	8	guide	guide	NOUN
cet-367	117	9	for	for	ADP
cet-367	117	10	planning	planning	NOUN
cet-367	117	11	,	,	PUNCT
cet-367	117	12	selecting	select	VERB
cet-367	117	13	and	and	CCONJ
cet-367	117	14	designing	design	VERB
cet-367	117	15	shell	shell	NOUN
cet-367	117	16	and	and	CCONJ
cet-367	117	17	tube	tube	NOUN
cet-367	117	18	heat	heat	NOUN
cet-367	117	19	exchangers	exchanger	NOUN
cet-367	117	20	,	,	PUNCT
cet-367	117	21	elsevier	elsevier	PROPN
cet-367	117	22	inc	inc	PROPN
cet-367	117	23	,	,	PUNCT
cet-367	117	24	oxford	oxford	PROPN
cet-367	117	25	,	,	PUNCT
cet-367	117	26	uk	uk	PROPN
cet-367	117	27	,	,	PUNCT
cet-367	117	28	isbn	isbn	ADJ
cet-367	117	29	:	:	PUNCT
cet-367	117	30	978	978	NUM
cet-367	117	31	-	-	SYM
cet-367	117	32	0	0	NUM
cet-367	117	33	-	-	PUNCT
cet-367	117	34	128	128	NUM
cet-367	117	35	-	-	PUNCT
cet-367	117	36	03822	03822	NUM
cet-367	117	37	-	-	PUNCT
cet-367	117	38	2	2	NUM
cet-367	117	39	.	.	PUNCT
cet-367	118	1	nguyen	nguyen	PROPN
cet-367	118	2	t.v	t.v	PROPN
cet-367	118	3	.	.	PROPN
cet-367	118	4	,	,	PUNCT
cet-367	118	5	voldsund	voldsund	ADJ
cet-367	118	6	m.	m.	NOUN
cet-367	118	7	,	,	PUNCT
cet-367	118	8	breuhaus	breuhaus	PROPN
cet-367	118	9	p.	p.	PROPN
cet-367	118	10	,	,	PUNCT
cet-367	118	11	elmegaard	elmegaard	PROPN
cet-367	118	12	b.	b.	PROPN
cet-367	118	13	,	,	PUNCT
cet-367	118	14	2016a	2016a	NUM
cet-367	118	15	,	,	PUNCT
cet-367	118	16	energy	energy	NOUN
cet-367	118	17	efficiency	efficiency	NOUN
cet-367	118	18	measures	measure	NOUN
cet-367	118	19	for	for	ADP
cet-367	118	20	offshore	offshore	ADJ
cet-367	118	21	oil	oil	NOUN
cet-367	118	22	and	and	CCONJ
cet-367	118	23	gas	gas	NOUN
cet-367	118	24	platforms	platform	NOUN
cet-367	118	25	,	,	PUNCT
cet-367	118	26	energy	energy	NOUN
cet-367	118	27	,	,	PUNCT
cet-367	118	28	117	117	NUM
cet-367	118	29	,	,	PUNCT
cet-367	118	30	325	325	NUM
cet-367	118	31	-	-	SYM
cet-367	118	32	340	340	NUM
cet-367	118	33	.	.	PUNCT
cet-367	119	1	nguyen	nguyen	PROPN
cet-367	119	2	t.v	t.v	PROPN
cet-367	119	3	.	.	PROPN
cet-367	119	4	,	,	PUNCT
cet-367	119	5	fullop	fullop	PROPN
cet-367	119	6	t.g	t.g	PROPN
cet-367	119	7	.	.	PROPN
cet-367	119	8	,	,	PUNCT
cet-367	119	9	breuhaus	breuhaus	PROPN
cet-367	119	10	p.	p.	PROPN
cet-367	119	11	,	,	PUNCT
cet-367	119	12	elmegaard	elmegaard	PROPN
cet-367	119	13	b.	b.	PROPN
cet-367	119	14	,	,	PUNCT
cet-367	119	15	2016b	2016b	NUM
cet-367	119	16	,	,	PUNCT
cet-367	119	17	life	life	NOUN
cet-367	119	18	performance	performance	NOUN
cet-367	119	19	of	of	ADP
cet-367	119	20	oil	oil	NOUN
cet-367	119	21	and	and	CCONJ
cet-367	119	22	gas	gas	NOUN
cet-367	119	23	platforms	platform	NOUN
cet-367	119	24	:	:	PUNCT
cet-367	119	25	site	site	NOUN
cet-367	119	26	integration	integration	NOUN
cet-367	119	27	and	and	CCONJ
cet-367	119	28	thermodynamic	thermodynamic	ADJ
cet-367	119	29	evaluation	evaluation	NOUN
cet-367	119	30	,	,	PUNCT
cet-367	119	31	energy	energy	NOUN
cet-367	119	32	,	,	PUNCT
cet-367	119	33	73	73	NUM
cet-367	119	34	,	,	PUNCT
cet-367	119	35	282	282	NUM
cet-367	119	36	-	-	SYM
cet-367	119	37	301	301	NUM
cet-367	119	38	.	.	PUNCT
cet-367	120	1	nguyen	nguyen	PROPN
cet-367	120	2	t.v	t.v	PROPN
cet-367	120	3	.	.	PROPN
cet-367	120	4	,	,	PUNCT
cet-367	120	5	tock	tock	PROPN
cet-367	120	6	l.	l.	PROPN
cet-367	120	7	,	,	PUNCT
cet-367	120	8	maréchal	maréchal	PROPN
cet-367	120	9	f.	f.	PROPN
cet-367	120	10	,	,	PUNCT
cet-367	120	11	elmegaard	elmegaard	PROPN
cet-367	120	12	b.	b.	PROPN
cet-367	120	13	,	,	PUNCT
cet-367	120	14	2014	2014	NUM
cet-367	120	15	,	,	PUNCT
cet-367	120	16	oil	oil	NOUN
cet-367	120	17	and	and	CCONJ
cet-367	120	18	gas	gas	NOUN
cet-367	120	19	platforms	platform	NOUN
cet-367	120	20	with	with	ADP
cet-367	120	21	steam	steam	NOUN
cet-367	120	22	bottoming	bottom	VERB
cet-367	120	23	cycles	cycle	NOUN
cet-367	120	24	:	:	PUNCT
cet-367	120	25	retrofit	retrofit	NOUN
cet-367	120	26	integration	integration	NOUN
cet-367	120	27	and	and	CCONJ
cet-367	120	28	thermo	thermo	NOUN
cet-367	120	29	-	-	PUNCT
cet-367	120	30	environomic	environomic	ADJ
cet-367	120	31	evaluation	evaluation	NOUN
cet-367	120	32	,	,	PUNCT
cet-367	120	33	applied	apply	VERB
cet-367	120	34	energy	energy	NOUN
cet-367	120	35	,	,	PUNCT
cet-367	120	36	131	131	NUM
cet-367	120	37	,	,	PUNCT
cet-367	120	38	222–237	222–237	NUM
cet-367	120	39	.	.	PUNCT
cet-367	121	1	pierobon	pierobon	PROPN
cet-367	121	2	l.	l.	PROPN
cet-367	121	3	,	,	PUNCT
cet-367	121	4	benato	benato	PROPN
cet-367	121	5	a.	a.	PROPN
cet-367	121	6	,	,	PUNCT
cet-367	121	7	scolari	scolari	PROPN
cet-367	121	8	e.	e.	PROPN
cet-367	121	9	,	,	PUNCT
cet-367	121	10	haglind	haglind	PROPN
cet-367	121	11	f.	f.	PROPN
cet-367	121	12	,	,	PUNCT
cet-367	121	13	stoppato	stoppato	PROPN
cet-367	121	14	a.	a.	NOUN
cet-367	121	15	,	,	PUNCT
cet-367	121	16	2014	2014	NUM
cet-367	121	17	,	,	PUNCT
cet-367	121	18	waste	waste	NOUN
cet-367	121	19	heat	heat	NOUN
cet-367	121	20	recovery	recovery	NOUN
cet-367	121	21	technologies	technology	NOUN
cet-367	121	22	for	for	ADP
cet-367	121	23	offshore	offshore	ADJ
cet-367	121	24	platforms	platform	NOUN
cet-367	121	25	,	,	PUNCT
cet-367	121	26	appl	appl	PROPN
cet-367	121	27	energy,136:228–241	energy,136:228–241	PROPN
cet-367	121	28	.	.	PUNCT
cet-367	122	1	smith	smith	PROPN
cet-367	122	2	r.	r.	PROPN
cet-367	122	3	,	,	PUNCT
cet-367	122	4	2005	2005	NUM
cet-367	122	5	.	.	PUNCT
cet-367	123	1	chemical	chemical	NOUN
cet-367	123	2	process	process	NOUN
cet-367	123	3	design	design	NOUN
cet-367	123	4	and	and	CCONJ
cet-367	123	5	integration	integration	NOUN
cet-367	123	6	,	,	PUNCT
cet-367	123	7	john	john	PROPN
cet-367	123	8	wiley	wiley	PROPN
cet-367	123	9	&	&	CCONJ
cet-367	123	10	sons	sons	PROPN
cet-367	123	11	ltd	ltd	PROPN
cet-367	123	12	:	:	PUNCT
cet-367	123	13	west	west	PROPN
cet-367	123	14	sussex	sussex	PROPN
cet-367	123	15	,	,	PUNCT
cet-367	123	16	uk	uk	PROPN
cet-367	123	17	.	.	PROPN
cet-367	123	18	isbn	isbn	PROPN
cet-367	123	19	:	:	PUNCT
cet-367	123	20	978	978	NUM
cet-367	123	21	-	-	SYM
cet-367	123	22	1	1	NUM
cet-367	123	23	-	-	NUM
cet-367	123	24	119	119	NUM
cet-367	123	25	-	-	PUNCT
cet-367	123	26	09441	09441	NUM
cet-367	123	27	-	-	PUNCT
cet-367	123	28	8	8	NUM
cet-367	123	29	.	.	PUNCT
cet-367	123	30	1902	1902	NUM
