Thermodynamic investigation of waste heat recovery

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Thermodynamic investigation of waste heat recovery ( thermodynamic-investigation-waste-heat-recovery )

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[5] Quoilin S, Broek MVD, Declaye S, Dewallef P, Lemort V. Techno-economic survey of Organic Rankine Cycle (ORC) systems. Renewable and Sustainable Energy Reviews. 2013;22(0):168-86. [6] Hajabdollahi Z, Hajabdollahi F, Tehrani M, Hajabdollahi H. Thermo-economic environmental optimization of Organic Rankine Cycle for diesel waste heat recovery. Energy. 2013;63(0):142-51. [7] Quoilin S, Declaye S, Tchanche BF, Lemort V. Thermo-economic optimization of waste heat recovery Organic Rankine Cycles. Applied Thermal Engineering. 2011;31(14–15):2885-93. [8] Wei D, Lu X, Lu Z, Gu J. Performance analysis and optimization of organic Rankine cycle (ORC) for waste heat recovery. Energy Conversion and Management. 2007;48(4):1113-9. [9] Dai Y, Wang J, Gao L. Parametric optimization and comparative study of organic Rankine cycle (ORC) for low grade waste heat recovery. Energy Conversion and Management. 2009;50(3):576- 82. [10] DiPippo R. Geothermal power plants: Oxford, Elsevier, 2006. [11] I. Obernberger PT, E. Reisenhofer. Description and evaluation of the new 1000 kWel organic Rankine cycle process integrated in the biomass CHP plant in Lienz Austria. Euroheat & Power. 2002;10:18-25. [12] Tchanche BF, Lambrinos G, Frangoudakis A, Papadakis G. Low-grade heat conversion into power using organic Rankine cycles – A review of various applications. Renewable and Sustainable Energy Reviews. 2011;15(8):3963-79. [13] Saleh B, Koglbauer G, Wendland M, Fischer J. Working fluids for low-temperature organic Rankine cycles. Energy. 2007;32(7):1210-21. [14] Rayegan R, Tao YX. A procedure to select working fluids for Solar Organic Rankine Cycles (ORCs). Renewable Energy. 2011;36(2):659-70. [15] Union TEPatCotE. RERGULATION (EC) No 2037/2000 OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL of 29 June 2000 on substances that deplete the ozone layer. In: European Parliament CoEU, editor.2000. [16] Nations U. Kyoto Protocol. In: Nations U, editor. Kyoto, Japan1997. [17] Union E. REGULATION (EC) No 842/2006 OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL of 17 May 2006 on certain fluorinated greenhouse gases. In: union E, editor. Official Journal of the European Union2006. [18] Commission CdotE. Official website of the European Union-Climate Action. 2014. [19] Schuster A, Karellas S, Aumann R. Efficiency optimization potential in supercritical Organic Rankine Cycles. Energy. 2010;35(2):1033-9. [20] Vetter C, Wiemer H-J, Kuhn D. Comparison of sub- and supercritical Organic Rankine Cycles for power generation from low-temperature/low-enthalpy geothermal wells, considering specific net power output and efficiency. Applied Thermal Engineering. 2013;51(1–2):871-9. [21] Mikielewicz D, Mikielewicz J. A thermodynamic criterion for selection of working fluid for subcritical and supercritical domestic micro CHP. Applied Thermal Engineering. 2010;30(16):2357-62. [22] Karellas S, Schuster A, Leontaritis A-D. Influence of supercritical ORC parameters on plate heat exchanger design. Applied Thermal Engineering. 2012;33–34(0):70-6. [23] Heberle F, Preißinger M, Brüggemann D. Zeotropic mixtures as working fluids in Organic Rankine Cycles for low-enthalpy geothermal resources. Renewable Energy. 2012;37(1):364-70. [24] Liu Q, Duan Y, Yang Z. Effect of condensation temperature glide on the performance of organic Rankine cycles with zeotropic mixture working fluids. Applied Energy. 2014;115(0):394- 404. [25] Chys M, van den Broek M, Vanslambrouck B, De Paepe M. Potential of zeotropic mixtures as working fluids in organic Rankine cycles. Energy. 2012;44(1):623-32. [26] Preißinger M, Heberle F, Brüggemann D. Advanced Organic Rankine Cycle for geothermal application. International Journal of Low-Carbon Technologies. 2013(8):62-8. [27] AspenTech. AspenPlus. 25

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