Please use this identifier to cite or link to this item: http://hdl.handle.net/11452/28167
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dc.date.accessioned2022-08-11T06:12:03Z-
dc.date.available2022-08-11T06:12:03Z-
dc.date.issued2007-08-
dc.identifier.citationKılıç, M. ve Kaynaklı, O. (2007). "Second law-based thermodynamic analysis of water-lithium bromide absorption refrigeration system". Energy,32(8), 1505-1512.tr_TR
dc.identifier.issn0360-5442-
dc.identifier.urihttps://doi.org/10.1016/j.energy.2006.09.003-
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0360544206002532-
dc.identifier.urihttp://hdl.handle.net/11452/28167-
dc.description.abstractIn this study, the first and the second law of thermodynamics are used to analyze the performance of a single-stage water-lithium bromide absorption refrigeration system (ARS) when some working parameters are varied. A mathematical model based on the exergy method is introduced to evaluate the system performance, exergy loss of each component and total exergy loss of all the system components. Parameters connected with performance of the cycle-circulation ratio (CR), coefficient of performance (COP), Carnot coefficient of performance (COPc), exergetic efficiency (xi) and efficiency ratio (tau)-are calculated from the thermodynamic properties of the working fluids at various operating conditions. Using the developed model, the effect of main system temperatures on the performance parameters of the system, irreversibilities in the thermal process and non-dimensional exergy loss of each component are analyzed in detail. The results show that the performance of the ARS increases with increasing generator and evaporator temperatures, but decreases with increasing condenser and absorber temperatures. Exergy losses in the expansion valves, pump and heat exchangers, especially refrigerant heat exchanger, are small compared to other components. The highest exergy loss occurs in the generator regardless of operating conditions, which therefore makes the generator the most important component of the cycle.tr_TR
dc.language.isoentr_TR
dc.publisherPergamon-Elsevier Sciencetr_TR
dc.rightsinfo:eu-repo/semantics/closedAccesstr_TR
dc.subjectAbsorption refrigeration systemtr_TR
dc.subjectEnergytr_TR
dc.subjectExergytr_TR
dc.subjectPerformancetr_TR
dc.subjectOptimizationtr_TR
dc.subjectEvaporatorstr_TR
dc.subjectAbsorptiontr_TR
dc.subjectRefrigerationtr_TR
dc.subjectExergytr_TR
dc.subjectHeat exchangerstr_TR
dc.subjectMathematical modelstr_TR
dc.subjectParameter estimationtr_TR
dc.subjectBromidetr_TR
dc.subjectCoolingtr_TR
dc.subjectLithiumtr_TR
dc.subjectPerformance assessmenttr_TR
dc.subjectThermodynamicstr_TR
dc.subjectWatertr_TR
dc.subjectCoefficient of performance (COP)tr_TR
dc.subjectHeat exchangerstr_TR
dc.subjectEfficiency ratiotr_TR
dc.subjectThermodynamicstr_TR
dc.subjectEnergy & fuelstr_TR
dc.titleSecond law-based thermodynamic analysis of water-lithium bromide absorption refrigeration systemtr_TR
dc.typeArticletr_TR
dc.identifier.wos000247662200022tr_TR
dc.identifier.scopus2-s2.0-34247170368tr_TR
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergitr_TR
dc.contributor.departmentUludağ Üniversitesi/Mühendislik Fakültesi/Makina Mühendisliği Bölümü.tr_TR
dc.contributor.orcid0000-0003-2113-4510tr_TR
dc.identifier.startpage1505tr_TR
dc.identifier.endpage1512tr_TR
dc.identifier.volume32tr_TR
dc.identifier.issue8tr_TR
dc.relation.journalEnergytr_TR
dc.contributor.buuauthorKılıç, Muhsin-
dc.contributor.buuauthorKaynaklı, Ömer-
dc.contributor.researcheridO-2253-2015tr_TR
dc.subject.wosThermodynamicstr_TR
dc.subject.wosEnergy & fuelstr_TR
dc.indexed.wosSCIEtr_TR
dc.indexed.scopusScopustr_TR
dc.wos.quartileQ2tr_TR
dc.contributor.scopusid57202677637tr_TR
dc.contributor.scopusid8387145900tr_TR
dc.subject.scopusAbsorption Refrigeration; Solar Cooling; Cooling Systemstr_TR
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