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Working Fluid selection and performance comparison of subcritical and supercritical organic Rankine cycle (ORC) for low temperature waste heat recovery

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Working Fluid selection and performance comparison of subcritical and supercritical organic Rankine cycle (ORC) for low temperature waste heat recovery ( working-fluid-selection-and-performance-comparison-subcritic )

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4. UNDERTAKING HIGH IMPACT ACTIONS: TECHNOLOGY AND ... 4-086-12 JUMEL ET AL in, i: Inlet out, o: Outlet sub: Subcritical super: Supercritical 0: Dead state (reference state) t: Turbine p: Pump P: Pressure h: higher or hot fluid b: boiling point crit: critical tot: total c: cold fluid References Algieri, A. and P. Morrone (2012). “Comparative energetic analysis of high-temperature subcritical and transcritical Organic Rankine Cycle (ORC). A biomass application in the Sibari district.” Applied Thermal Engineering 36: 236-244. Calm, J. M. and G. C. Hourahan (2011). Physical, Safety, and Environmental Data for Current and Alternative Regrigerants. The 23rd International Congress of Refrigera- tion Prague, Czech Republic, International Institute of Refrigeration (IIR/IIF). Chen, H., D. Y. Goswami, et al. (2011). “A supercritical Ran- kine cycle using zeotropic mixture working fluids for the conversion of low-grade heat into power.” Energy 36(1): 549-555. Chen, H., D. Y. Goswami, et al. (2010). “A review of thermo- dynamic cycles and working fluids for the conversion of low-grade heat.” Renewable and Sustainable Energy Reviews 14(9): 3059–3067. Chen, H., D. Y. Goswami, et al. (2011). “Energetic and exergetic analysis of CO2- and R32-based transcritical Rankine cycles for low-grade heat conversion.” Applied Energy 88(8): 2802–2808. EPA (1998). Climate wise. Wise Rules for Industrial Ef- ficiency: A Tool Kit for Estimation Energy Savings and Greenhouse Gas Emissions Reductions: 18. Eric, W. L. (2012). “NIST Standard Reference Database 23.” from http://www.nist.gov/srd/nist23.cfm. EU (2011). EU transport in figures, European Union. Government, A. (2011, 07/04). “Australia and the Montreal Protocol on Substances that Deplete the Ozone Layer.” from http://www.environment.gov.au/atmosphere/ozone/ legislation/montp.html. IEA (2011). Key World Energy Statistics: 37. IEA (2011). World Energy Outlook 2011, International Energy Agency. Klein, S. A. (2012). “EES: Engineering Equation Solver | F- Chart Software : Engineering Software.” from http://www. fchart.com/ees/. Lakew, A. A. and O. Bolland (2010). “Working fluids for low- temperature heat source.” Applied Thermal Engineering 30(10): 1262–1268. Liu, B.-T., K.-H. Chien, et al. (2004). “Effect of working fluids on organic Rankine cycle for waste heat recovery.” Energy 29(8): 1207–1217. Pan, L., H. Wang, et al. (2012). “Performance analysis in near-critical conditions of organic Rankine cycle.” Energy 37(1): 281–286. Pellegrino, J. L., N. Margolis, et al. (2004). Energy Use, Loss and Opportunities Analysis: U.S. Manufacturing & Min- ing: 17. Poling, B. E., J. M. Prausnitz, et al. (2000). The Properties of Gases and Liquids, McGraw-Hill Professional. Quoilin, S. (2012). “Labothap – EES Fluidprop Interface.” from http://www.labothap.ulg.ac.be/cmsms/index. php?page=ees-fluidprop-interface. Schuster, A., S. Karellas, et al. (2010). “Efficiency optimization potential in supercritical Organic Rankine Cycles.” Energy 35(2): 1033–1039. Schuster, S. K. a. A. (2008). “Supercritical fluid parameters in organic rankine cycle applications.” International Journal of Thermodynamics 11(3): 101–108. Tchanche, B. F., G. Lambrinos, et al. (2011). “Low-grade heat conversion into power using organic Rankine cycles – A review of various applications.” Renewable and Sustainable Energy Reviews 15(8): 3963–3979. Tettig, A., M. Lagler, et al. (2011). Application of Organic Rankine Cycles (ORC). World Engineers’ Convention. Geneva, Sweden. Towne, P. (1991). “The Naphtha Engine.” 2012, from http:// gasengine.farmcollector.com/Gas-Engines/The-Naphtha- Engine.aspx. Acknowledgements The work reported in this paper is funded by the French Na- tional Research Agency. ECEEE 2012 SUMMER STUDY on EnERgY EffiCiEnCY in inDUSTRY 569

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