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Thermodynamic Analysis ORC Hydrofluoroethers working fluid

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Thermodynamic Analysis ORC Hydrofluoroethers working fluid ( thermodynamic-analysis-orc-hydrofluoroethers-working-fluid )

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1894 Hanzhi Wang et al. / Energy Procedia 105 (2017) 1889 – 1894 [6] Chen H, Goswami DY, Rahman MM, Stefanakos EK. A supercritical Rankine cycle using zeotropic mixture working fluids for the conversion of low-grade heat into power. Energy 2011; 36: 549-55. [7] Wang XD, Zhao L. Analysis of zeotropic mixtures used in low-temperature solar Rankine cycles for power generation. Solar Energy 2009; 83: 605-13. [8] Venkatarathnam G, Murthy SS, Refrigerants for vapour compression refrigeration systems. Resonance 2012; 17: 139-62. [9] Husband WW, Beyene A. Low-grade heat-driven Rankine cycle, a feasibility study. Int J Energy Res 2008; 32: 1373-82. [10] Tsai WT. Environmental risk assessment of hydrofluoroethers (HFEs). J Hazard Mater 2005; A119: 69-78. [11] Qiu G. Selection of working fluids for micro-CHP systems with ORC. Renew Energy 2012; 48: 565-70. [12] Liu H, Shao Y, Li J. A biomass-fired micro-scale CHP system with organic Rankine cycle (ORC) - Thermodynamic modelling studies. Biomass Bioenergy 2011; 35: 3985-94. [13] Qiu G, Shao Y, Li J, Liu H, Riffat SB. Experimental investigation of a biomass-fired ORC-based micro-CHP for domestic applications. Fuel 2012; 96: 374-82. [14] Lakew AA, Bolland O. Working fluids for low-temperature heat source. Appl Therm Eng 2010; 30: 1262-68. [15] Hung TC. Waste heat recovery of organic Rankine cycle using dry fluids. Energy Convers Manage 2001; 42:539-553. [16] Chen H, Goswami DY, Stefanakos EK. A review of thermodynamic cycles and working fluids for the conversion of low-grade heat. Renew Sust Energy Rev 2010;14: 3059-67. [17]Baik YJ, Kim M, Chang KC, Lee YS, Yoon HK. A comparative study of power optimization in low-temperature geothermal heat source driven R125 transcritical cycle and hfc organic rankine cycles. Renew Energy 2013; 54:78-84. [18] Liu C, He C, Gao H, Xie H, Xu JL. The optimal evaporation temperature of subcritical ORC based on second law efficiency for waste heat recovery. Entropy 2012; 14: 491-504. Biography Xianbiao Bu, born in 1979, is currently an associate professor of Thermal Engineering in Guangzhou Institute of Energy Conversion at Chinese Academy of Sciences. His research interests mainly include renewable and sustainable energy, low-temperature thermal power generation systems and thermal driven refrigeration technologies, etc.

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