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

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Bahram Saadatfar, Reza Fakhrai and Torsten Fransson, JMES Vol 1 Issue 1 2013 [85] Wang J, Wang M, Zhao P, Zhao Y, Dai Y. Thermodynamic analysis and optimization of a solar- driven regenerative organic Rankine cycle (ORC) based on flat-plate solar collectors. Appl Therm Eng 2013;50:816–25. [86] Jing L, Gang P, Jie J. Optimization of low temperature solar thermal electric generation with Organic Rankine Cycle in different areas. Appl Energy 2010;87:3355–65. [87] Rodríguez CEC, Palacio JCE, Venturini OJ, Lora EES, Cobas VM, Santos DM dos, et al. Exergetic and economic comparison of ORC and Kalina cycle for low temperature enhanced geothermal system in Brazil. Appl Therm Eng 2013;52:109–19. [88] DiPippo R. Geothermal Power Plants: Principles, Applications, Case Studies and Enviromental Impact. Butterworth-Heinemann; 2008. [89] Spliethoff H, Karellas S, Schuster A, Kakaras E. Energetic and economic investigation of Organic Rankine Cycle applications. Appl Therm Eng 2009;29:1809–17. [90] Kanoglu M, Bolatturk A. Performance and parametric investigation of a binary geothermal power plant by exergy. Renew Energy 2008;33:2366–74. [91] Nowak W, Borsukiewicz-Gozdur A. Maximising the working fluid flow as a way of increasing power output of geothermal power plant. Appl Therm Eng 2007;27:2074–8. [92] García-Rodríguez L, Delgado-Torres AM. Design recommendations for solar organic Rankine cycle (ORC)–powered reverse osmosis (RO) desalination. Renew Sustain Energy Rev 2012;16:44–53. [93] Papadakis G, Kosmadakis G, Manolakos D, Kyritsis S. On site experimental evaluation of a low- temperature solar organic Rankine cycle system for RO desalination. Sol Energy 2009;83:646–56. [94] Kosmadakis G, Papadakis G, Kyritsis S, Manolakos D. Economic assessment of a two-stage solar organic Rankine cycle for reverse osmosis desalination. Renew Energy 2009;34:1579–86. [95] Papadakis G, Kyritsis S, Manolakos D, Kosmadakis G. Identification of behaviour and evaluation of performance of small scale, low-temperature Organic Rankine Cycle system coupled with a RO desalination unit. Energy 2009;34:767–74. [96] García-Rodríguez L, Delgado-Torres AM. Solar-powered Rankine cycles for fresh water production. Desalination 2007;212:319–27. [97] S. Karellas, D. Leontaritis, G. Panousis, E. Bellos EK. Energetic and exergetic analysis of waste heat recovery systems in the cement industry. Energy 2013;58:147–56. [98] Ari V. Energetic and exergetic assessments of a cement rotary kiln system. Sci Res Essays 2011;6:1428–38. [99] F. Campanaa, M. Bianchia, L. Branchinia, A. De Pascalea, A. Perettoa, M. Baresib AF. ORC waste heat recovery in European energy intensive industries: Energy and GHG savings. Energy Convers Manag 2013;76:244–52. [100] Johnson L.A. WED. Ormat: low-temperature geothermal power generation. 2010. [101] Opcon. Commissioning and testing of first reference installation of Opcon technology for ships , www.opcon.se n.d. [102] Zhao P, Wang J, Gao L, Dai Y. Parametric analysis of a hybrid power system using organic Rankine cycle to recover waste heat from proton exchange membrane fuel cell. Int J Hydrogen Energy 2012;37:3382–91. [103] Al-sulaiman FA, Dincer I, Hamdullahpur F. Energy analysis of a trigeneration plant based on solid oxide fuel cell and organic Rankine cycle. Int J Hydrogen Energy 2010;35. [104] Rokni M. Thermodynamic analysis of an integrated solid oxide fuel cell cycle with a rankine cycle. Energy Convers Manag 2010;51:2724–32. [105] Taljan G, Verbic G, Pantos M, Sakulin M, Fickert L. Optimal Sizing of Biomass-Fired Organic Rankine Cycle CHP System with Heat Storage. 2011 Int Conf Clean Electr Power 2011:668–75. 183

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