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Energy Systems for Multigeneration Purposes

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Energy Systems for Multigeneration Purposes ( energy-systems-multigeneration-purposes )

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19. Bianchi M, De Pascale A, Melino F: Performance analysis of an integrated CHP system with thermal and Electric Energy Storage for residential application. Applied Energy 2013. 20. Mıguez J, Murillo S, Porteiro J, Lopez L: Feasibility of a new domestic CHP trigeneration with heat pump: I. Design and development. Applied thermal engineering 2004, 24:1409-1419. 21. Porteiro J, Mıguez J, Murillo S, Lopez L: Feasibility of a new domestic CHP trigeneration with heat pump: II. Availability analysis. Applied thermal engineering 2004, 24:1421-1429. 22. Cihan A, Hacıhafızoglu O, Kahveci K: Energy–exergy analysis and modernization suggestions for a combined‐cycle power plant. International journal of energy research 2006, 30:115-126. 23. Barelli L, Bidini G, Gallorini F, Ottaviano A: An energetic–exergetic analysis of a residential CHP system based on PEM fuel cell. Applied Energy 2011, 88:4334-4342. 24. Bingöl E, Kılkış B, Eralp C: Exergy based performance analysis of high efficiency poly- generation systems for sustainable building applications. Energy and Buildings 2011, 43:3074-3081. 25. El-Emam RS, Dincer I: Energy and exergy analyses of a combined molten carbonate fuel cell–Gas turbine system. International Journal of Hydrogen Energy 2011, 36:8927-8935. 26. Akkaya AV, Sahin B, Huseyin Erdem H: An analysis of SOFC/GT CHP system based on exergetic performance criteria. International Journal of Hydrogen Energy 2008, 33:2566- 2577. 27. Al-Sulaiman FA, Dincer I, Hamdullahpur F: Energy analysis of a trigeneration plant based on solid oxide fuel cell and organic Rankine cycle. International Journal of Hydrogen Energy 2010, 35:5104-5113. 28. Rosen MA, Dincer I: Exergoeconomic analysis of power plants operating on various fuels. Applied Thermal Engineering 2003, 23:643-658. 29. Ameri M, Ahmadi P, Hamidi A: Energy, exergy and exergoeconomic analysis of a steam power plant: A case study. International Journal of Energy Research 2009, 33:499-512. 30. Balli O, Aras H, Hepbasli A: Exergetic performance evaluation of a combined heat and power (CHP) system in Turkey. International journal of energy research 2007, 31:849- 866. 31. Balli O, Aras H, Hepbasli A: Exergoeconomic analysis of a combined heat and power (CHP) system. International Journal of Energy Research 2008, 32:273-289. 32. Kwak HY, Byun GT, Kwon YH, Yang H: Cost structure of CGAM cogeneration system. International journal of energy research 2004, 28:1145-1158. 33. Pospisil J, Fiedler J, Skala Z, Baksa M: Comparison of cogeneration and trigeneration technology for energy supply of tertiary buildings. WSEAS Transactions on Heat and Mass Transfer 2006, 1:262-267. 34. Al-Sulaiman FA, Hamdullahpur F, Dincer I: Performance comparison of three trigeneration systems using organic rankine cycles. Energy 2011, 36:5741-5754. 35. Martins L, Fábrega F, d’Angelo J: Thermodynamic Performance Investigation of a Trigeneration Cycle Considering the Influence of Operational Variables. Procedia Engineering 2012, 42:2061-2070. 36. Calva ET, Núnez MP, Toral M: Thermal integration of trigeneration systems. Applied Thermal Engineering 2005, 25:973-984. 223

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