Waste heat recovery Organic Rankine cycles in sustainable energy conversion: A state-of-the-art review

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Waste heat recovery Organic Rankine cycles in sustainable energy conversion: A state-of-the-art review ( waste-heat-recovery-organic-rankine-cycles-sustainable-energ )

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Bahram Saadatfar, Reza Fakhrai and Torsten Fransson, JMES Vol 1 Issue 1 2013 [38] Wang ZQ, Zhou NJ, Guo J, Wang XY. Fluid selection and parametric optimization of organic Rankine cycle using low temperature waste heat. Energy 2012;40:107–15. [39] Mago PJ, Chamra LM, Somayaji C. Performance analysis of different working fluids for use in organic Rankine cycles. Proc Inst Mech Eng Part A J Power Energy 2007;221. [40] Aljundi IH. Effect of dry hydrocarbons and critical point temperature on the efficiencies of organic Rankine cycle. Renew Energy 2011;36:1196–202. [41] Angelino G, Paliano PC di. Organic Rankine cycles (ORCs) for energy recovery from molten carbonate fuel cells. Collect Tech Pap 35th Intersoc Energy Convers Eng Conf Exhib (Cat No00CH37022) 2000;2. [42] B.E. Poling, J.M. Prausnitz JPO. The Properties of Gases and Liquids. McGraw-Hill; 2001. [43] Mejía A, Quinteros-Lama H, Segura H, Garrido JM, Wisniak J. A rigorous approach for predicting the slope and curvature of the temperature–entropy saturation boundary of pure fluids. Energy 2012;45:888–99. [44] Quoilin S. Sustainable energy conversion throughthe use of organic Rankine cycles for waste heat recovery and solar applications. University of Liege, 2011. [45] Quoilin S, Lemort V. Technological and Economical Survey of Organic Rankine Cycle Systems n.d. [46] Macchi E, Perdichizzi A. Efficiency Prediction for Axial-Flow Turbines Operating with Nonconventional Fluids. ASME 1981;103. [47] G. Angelino, C. Invernizzi EM. Organic Working Fluid Optimization for Space Power Cycles. New York: Springer; 1991. [48] Hung TC, Wang SK, Kuo CH, Pei BS, Tsai KF. A study of organic working fluids on system efficiency of an ORC using low-grade energy sources. Energy 2010;35:1403–11. [49] Chisholm, D., Wanniarachchi AS. Layout of plate heat exchangers. 3rd ASME/JSME Therm. Eng. Jt. Conf., 1991, p. 433–8. [50] U.S. Environmental Protection Agency Class I Ozone- Depleting Substances. n.d. [51] Ginosar DM, Petkovic LM, Guillen DP. Thermal Stability of Cyclopentane as an Organic Rankine Cycle Working Fluid. Energy & Fuels 2011;25:4138–44. [52] Antolín G, Martín MC, Quijano A, Vélez F, Segovia JJ, Chejne F. A technical, economical and market review of organic Rankine cycles for the conversion of low-grade heat for power generation. Renew Sustain Energy Rev 2012;16:4175–89. [53] Datla BV, Brasz J. Organic Rankine Cycle System Analysis for Low GWP Working Fluids. Int. Refrig. Air Cond. Conf., Purdue University; 2012, p. 2399–1 – 2399–7. [54] Saleh Bahaa Koglbauer Gerald Wendland Martin FJ. Working fluids for low-temperature organic Rankine cycles.pdf. Energy 2007;32:1210–21. [55] Lambrinos G, Frangoudakis A, Papadakis G, Tchanche BF. Fluid selection for a low-temperature solar organic Rankine cycle. Appl Therm Eng 2009;29:2468–76. [56] Qiu G. Selection of working fluids for micro-CHP systems with ORC. Renew Energy 2012;48:565– 70. [57] Riffat SB, Nguyen VM, Doherty PS. Development of a prototype low-temperature Rankine cycle electricity generation system. Appl Therm Eng 2001;21:169–81. [58] Quoilin S, Orosz M, Lemort V, Hemond H. Performance and design optimization of a low-cost solar organic Rankine cycle for remote power generation. Sol Energy 2011;85:955–66. [59] Madhawa Hettiarachchi HD, Golubovic M, Worek WM, Ikegami Y. Optimum design criteria for an Organic Rankine cycle using low-temperature geothermal heat sources. Energy 2007;32:1698–706. [60] Chang K-C, Baik Y-J, Lee Y-S, Yoon H-K, Kim M. Power enhancement potential of a mixture transcritical cycle for a low-temperature geothermal power generation. Energy 2012;47:70–6. 181

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