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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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37. Huang Y, Wang Y, Rezvani S, McIlveen-Wright D, Anderson M, Hewitt N: Biomass fuelled trigeneration system in selected buildings. Energy Conversion and Management 2011, 52:2448-2454. 38. Rocha M, Andreos R, Simões-Moreira J: Performance tests of two small trigeneration pilot plants. Applied Thermal Engineering 2012, 41:84-91. 39. Huicochea A, Rivera W, Gutiérrez-Urueta G, Bruno JC, Coronas A: Thermodynamic analysis of a trigeneration system consisting of a micro gas turbine and a double effect absorption chiller. Applied Thermal Engineering 2011, 31:3347-3353. 40. Chicco G, Mancarella P: Planning aspects and performance indicators for small-scale trigeneration plants. In Future Power Systems, 2005 International Conference on. IEEE; 2005: 6 pp.-6. 41. Chicco G, Mancarella P: Planning evaluation and economic assessment of the electricity production from small-scale trigeneration plants. WSEAS Transactions on Power Systems 2006, 1:393-400. 42. Aghahosseini S, Dincer I, Naterer G: Integrated gasification and Cu–Cl cycle for trigeneration of hydrogen, steam and electricity. International Journal of Hydrogen Energy 2011, 36:2845-2854. 43. Minciuc E, Le Corre O, Athanasovici V, Tazerout M, Bitir I: Thermodynamic analysis of tri-generation with absorption chilling machine. Applied thermal engineering 2003, 23:1391-1405. 44. Moya M, Bruno J, Eguia P, Torres E, Zamora I, Coronas A: Performance analysis of a trigeneration system based on a micro gas turbine and an air-cooled, indirect fired, ammonia–water absorption chiller. Applied Energy 2011, 88:4424-4440. 45. Velumani S, Enrique Guzmán C, Peniche R, Vega R: Proposal of a hybrid CHP system: SOFC/microturbine/absorption chiller. International Journal of Energy Research 2010, 34:1088-1095. 46. Buck R, Friedmann S: Solar-assisted small solar tower trigeneration systems. TRANSACTIONS-AMERICAN SOCIETY OF MECHANICAL ENGINEERS JOURNAL OF SOLAR ENERGY ENGINEERING 2007, 129:349. 47. Dincer I, Rosen MA: Exergy: energy, environment and sustainable development. Elsevier Science; 2012. 48. Santo D: Energy and exergy efficiency of a building internal combustion engine trigeneration system under two different operational strategies. Energy and Buildings 2012. 49. Ebrahimi M, Keshavarz A, Jamali A: Energy and exergy analyses of a micro-steam CCHP cycle for a residential building. Energy and Buildings 2012, 45:202-210. 50. Khaliq A: Exergy analysis of gas turbine trigeneration system for combined production of power heat and refrigeration. International Journal of Refrigeration 2009, 32:534-545. 51. Kong X, Wang R, Huang X: Energy efficiency and economic feasibility of CCHP driven by stirling engine. Energy Conversion and Management 2004, 45:1433-1442. 52. Ziher D, Poredos A: Economics of a trigeneration system in a hospital. Applied Thermal Engineering 2006, 26:680-687. 53. Temir G, Bilge D: Thermoeconomic analysis of a trigeneration system. applied thermal engineering 2004, 24:2689-2699. 224

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