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New Concepts FOR Organic Rankine Cycle Power Systems

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New Concepts FOR Organic Rankine Cycle Power Systems ( new-concepts-for-organic-rankine-cycle-power-systems )

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Thermal Energy Storage for Solar Powered ORC Engines ysis of a solar enhanced energy storage concept based on thermodynamic cycles. Energy, 45(1):358–365, 2012. [34] A. Bejan. Entropy Generation Trough Heat and Fluid Flow. John Wiley, 1982. [35] R.J. Krane. A second law analysis of the optimum design and operation of thermal energy storage systems. International Journal of Heat and Mass Transfer, 30(1):43–57, 1987. [36] A. M. Kandari. Thermal stratification in hot storage-tanks. Applied Energy, 35(4):299 – 315, 1990. [37] D. Brosseau, J.W. Kelton, D. Ray, M. Edgar, K. Chrisman, and B. Emms. Testing of thermo- cline filler materials and molten-salt heat transfer fluids for thermal energy storage systems in parabolic trough power plants. Journal Solar Energy Engineering, 127:109–116, 2005. [38] A. Gil, M. Medrano, I. Martorell, A. Lzaro, P. Dolado, B. Zalba, and L.F. Cabeza. State of the art on high temperature thermal energy storage for power generation. part 1-concepts, materials and modellization. Renewable and Sustainable Energy Reviews, 14(1):31–55, 2010. [39] W. Goldstern. Steam Storage Installation. Pergamon Press, Oxford, 1970. [40] R. Dipippo. Geothermal Power Plants: Principles, Applications, Case Studies and Environ- mental Impact. Butterworth Heinemann, 2nd edition, 2008. [41] P.V. Gilli and G. Beckam. Design and economy of solar plants with integrated thermal en- ergy storage. In World Meteorological Organization, editor, Proceedings of the Unesco/WMO Symposium on Solar Energy, September 1976 1977. [42] D.G. Elliott. Theory and tests of two-phase turbines. Technical report, Jet Propulsion Labo- ratory, California Institute of Technology, Pasadena, CA, 1982. [43] EU.FinaltechnicalprogressreportoftheEuropeanprojectNNE5-1999-356:Ps10–10MW solar thermal power plant for Southern Spain. Technical report, European Union, 2006. [44] W.-D. Steinmann and M. Eck. Buffer storage for direct steam generation. Solar Energy, 80(10):1277–1282, 2006. [45] B. Li, S. Peuker, P.S. Hrnjak, and A.G. Alleyne. Refrigerant mass migration modeling and simulation for air conditioning systems. Applied Thermal Engineering, 31(10):1770–1779, 2011. [46] E. Casati, P. Colonna, and N. R. Nannan. Supercritical ORC turbogenerators coupled with linear solar collectors. In Proceedings of the 30th ISES Biennial Solar World Congress 2011, volume 5, pages 4056–4067, Kassel, 28 Aug.-2 Sept. 2011. [47] E. Casati, A. Desideri, F. Casella, and P. Colonna. Preliminary assessment of a novel small CSP plant based on linear collectors, ORC and direct thermal storage. In Proceedings of the 18th SolarPACES conference, 2012. [48] A. Ferna ́ndez-Garc ́ıa, E. Zarza, L. Valenzuela, and M. Pe ́rez. Parabolic-trough solar collectors and their applications. Renewable and Sustainable Energy Reviews, 14(7):1695–1721, 2010. [49] F. Burkholder and C. Kutscher. Heat loss testing of schott’s 2008 PTR70 parabolic trough receiver. Technical Report NREL/TP-550-45633, National Renewable Energy Laboratory, 2009. [50] F. P. Incropera, D. P. DeWitt, T. L. Bergman, and A. S. Lavine. Fundamentals of Heat and Mass Transfer. John Wiley & Sons, Inc., 6 edition, 2007. [51] Aspen Technology Inc. Exchanger Design and Rating, ver. 7.2. 2007. www.aspentech.com. [52] J.M. Cabello, J.M. Cejudo, M. Luque, F. Ruiz, K. Deb, and R. Tewari. Optimization of the size of a solar thermal electricity plant by means of genetic algorithms. Renewable Energy, 36(11):3146 – 3153, 2011. [53] T. Ho, S. Mao, and R. Greif. Comparison of the organic flash cycle (OFC) to other advanced vapor cycles for intermediate and high temperature waste heat reclamation and solar thermal 117

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