Modeling of a Low Temperature Rankine Cycle for Small Scale Cogen

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Modeling of a Low Temperature Rankine Cycle for Small Scale Cogen ( modeling-low-temperature-rankine-cycle-small-scale-cogen )

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Sylvain Quoilin Bibliography 8 Bibliography 1. S. Bonnet, M. Alaphilippe, P. Stouffs, Energy, exergy and cost analysis of a micro­ cogeneration system based on an Ericsson engine, International Journal of Thermal Sciences 44 1161–1168, PAU, 2005. 2. L. Borel, D. Favrat, Thermodynamique et énergétique, de l'énergie à l'exergie, pressses polytechniques et universitaires romandes, 2005 3. J. M. Calm, Comparative efficiencies and implications for greenhouse gas emissions of chiller refrigerants, International Journal of Refrigeration, Issue 5, Pages 833­841, 2006 4. J.M. Calm, G.C. Hourahan, Refrigerant Data Summary, Engineered Systems, November 2001 5. S. Canada, G. Cohen, R. Cable, D. Brosseau, and H. Price, Parabolic Trough Organic Rankine Cycle Solar Power Plant, DOE Solar Energy Technologies Program Review Meeting, Denver, 2004 6. Y.A. Cengel, M.A. Boles, Thermodynamics, An Engineering Approach, McGraw­Hill Higher Education, 2006 7. R. Chammas, D. Clodic, Combined Cycle for Hybrid Vehicles, SAE International, 2005 8. Yu Chen, Nils P. Halm, Eckhard A. Groll and James E. Braun, Mathematical modeling of scroll compressors—part I: compression process modeling, International Journal of Refrigeration, Volume 25, Issue 6, Pages 731­750, September 2002. 9. T.C. Hung, T.Y. Shai, S.K. Wang, A review of organic Rankine cycles for the recovery of low­ grade waste heat, Kaohsiung Polytechnic Institute, Taiwan, 1996 10. M. Jonsson, J. Yan, Ammonia–water bottoming cycles: a comparison between gas engines and gas diesel engines as prime movers, Energy 26 (2001) 31–44, Department of Chemical Engineering and Technology, Stockholm, Sweden, 2000 11. D. Kadikoff, Refrigerant index and retrofit guidelines, HVAC Mechanic.com, http://www.hvacmechanic.com/refrigerants/refrigerants.htm, November 2003 114

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