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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 [61] Brüggemann D, Heberle F, Preißinger M. Zeotropic mixtures as working fluids in Organic Rankine Cycles for low-enthalpy geothermal resources. Renew Energy 2012;37:364–70. [62] COLONNADIPALIANO P, ANGELINO G. Multicomponent Working Fluids For Organic Rankine Cycles (ORCs). Energy 1998;23:449–63. [63] Yang K, Zhang H, Wang Z, Zhang J, Yang F, Wang E, et al. Study of zeotropic mixtures of ORC (organic Rankine cycle) under engine various operating conditions. Energy 2013. [64] Feng X, Yu LJ, Xu J, Li W. Effects of evaporating temperature and internal heat exchanger on organic Rankine cycle. Appl Therm Eng 2011;31:4014–23. [65] Wang XD, Zhao L. Analysis of zeotropic mixtures used in low-temperature solar Rankine cycles for power generation. Sol Energy 2009;83:605–13. [66] De Ruyck J, Bram S, Delattin F. Co-utilization of biomass and natural gas in combined cycles through primary steam reforming of the natural gas. Energy 2007;32:371–7. [67] Rentizelas A, Tatsiopoulos I, Kakaras E, Karellas S. Comparative techno-economic analysis of ORC and gasification for bioenergy applications. Energy Convers Manag 2009;50:674–81. [68] Báscones E. Small scale biomass combustion plant for power generation: From waste wood to profit. 19th Eur. Biomass Conf. Exhib., 2011, p. 1188–92. [69] Clean energy ahead Turboden A Pratt & Whitney Power Systems n.d. [70] Sin A, Royo J, Maraver D, Sebastián F. Assessment of CCHP systems based on biomass combustion for small-scale applications through a review of the technology and analysis of energy efficiency parameters. Appl Energy 2012. [71] Saadatfar B. , Fakhrai R., Franson T. Exergoeconomic Analysis of a nano fluid ORC cogeneration of low-grade waste. 12th Int. Conf. Sustain. Energy Technol., Hong Kong: 2013. [72] Drescher U, Bruggemann D. Fluid selection for the Organic Rankine Cycle (ORC) in biomass power and heat plants. Appl Therm Eng 2007;27:223–8. [73] Obernberger I, Thonhofer P, Reisenhofer E. Description and evaluation of the new 1000 kW el Organic Rankine Cycle process integrated in the biomass CHP plant in Lienz , Austria. 2002. [74] Liu H, Dong L, Riffat S. Development of small-scale and micro-scale biomass-fuelled CHP systems – A literature review. Appl Therm Eng 2009;29:2119–26. [75] Li J, Riffat S. B, Shao Y, Qiu G, Liu H. Experimental investigation of a biomass-fired ORC-based micro-CHP for domestic applications. Fuel 2012;96:374–82. [76] Liu H, Shao Y. A biomass-fired micro-scale CHP system with organic Rankine cycle (ORC)- Thermodynamic modelling studies. Biomass and Bioenergy 2011;35:3985–94. [77] Quoilin S, Lemort V, Tchanche BF, Declaye S. Thermo-economic optimization of waste heat recovery Organic Rankine Cycles. Appl Therm Eng 2011;31:2885–93. [78] Wang EH, Zhang HG, Fan BY, Ouyang MG, Zhao Y, Mu QH. Study of working fluid selection of organic Rankine cycle (ORC) for engine waste heat recovery. Energy 2011;36:3406–18. [79] Siemens AG ES. Concentrated solar power technology for sustainable power generation. Nuremberg: 2010. [80] Muller-Steinhagen hans. Concentrating solar power: A review of the technology. Stutgart: 2004. [81] Martin C, Goswami DY. Effectiveness of cooling production with a combined power and cooling thermodynamic cycle. Appl Therm Eng 2006;26:576–82. [82] Saadatfar B. , Fakhrai R., Franson T. Conceptual modeling of nano fluid ORC for solar thermal polygeneration (presented in ISES2013). Energy Procedia 2013. [83] Kane M. Small hybrid solar power system. Energy 2003;28:1427–43. [84] Wang XD, Zhao L, Wang JL, Zhang WZ, Zhao XZ, Wu W. Performance evaluation of a low- temperature solar Rankine cycle system utilizing R245fa. Sol Energy 2010;84:353–64. 182

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