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Low-Grade Heat Conversion into Power Using Small Scale Organic Rankine Cycles

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Low-Grade Heat Conversion into Power Using Small Scale Organic Rankine Cycles ( low-grade-heat-conversion-into-power-using-small-scale-organ )

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Quoilin S., Lemort V., 2009. Technological and economical survey of organic Rankine cycle systems, in: Proceedings of the fifth European Conference on Economics and Management of Energy in Industry, April 14-17, Algarve-Portugal. Quoilin S., 2007. Experimental study and modeling of a low temperature rankine cycle for small scale cogeneration, MSc Thesis, University of Liege. Quoilin S., Lemort V., Lebrun J., 2010. Experimental study and modeling of an organic Rankine cycle using scroll expander, Applied Energy 87:1260-1268. Saleh B., Koglbauer G., Wendland M., Fischer J., 2007. Working fluids for low- temperature organic Rankine cycles, Energy 32: 1210-1221. Sandrameli S.M., Goswami D.Y., 2007. Optimum operating conditions for a combined power and cooling thermodynamic cycle, Applied Thermal engineering 84, 254-265 Schuster A., Karl J., Karellas S., 2007. Simulation of an innovative stand-alone solar desalination system using an organic Rankine cycle, International Journal of Thermodynamics 10:155-163. Schuster A., Karellas S., Karakas E., Spliethoff H., 2009. Energetic and economic investigation of organic Rankine cycle applications, Applied Thermal Engineering 29:1809-1817. Schuster A., Karellas S., Aumann R., 2009. Efficiency optimization potential in supercritical organic Rankine cycles, Energy 2:1-7. Sciubba E., Wall G., 2007. A brief commented history of exergy from the beginnings to 2004, International Journal of Thermodynamics 10:1-26. Short W., Packey D.J., Holt T., 1995. A manual for the Economic Evaluation of Energy Efficiency and Renewable Energy Technologies, NREL. Sims R.E.H., 2004. Renewable energy: a response to climate change, Solar Energy 76: 9- 17. Singh N., Kaushik S.C., Misra R.D., 2000. Exergetic analysis of a solar thermal power system, Renewable Energy 19:135-143. Smith I.K., Stosic N., 2001a. Prospects for energy conversion efficiency improvements by the use of twin screw two-phase expanders, in Proc. of the 2nd International Heat Powered Cycles Conference, Paris-France, September 2001. Smith I.K., Stosic N., Kovacevic A., 2001b. Power recovery from low cost two-phase expanders, GRC Annual Meeting, San Diego. Smith I.K., Stosic N., Kovacevic A., 2005. Screw expanders increase output and decrease the cost of geothermal binary power plant systems, in Proc. Of the Geothermal Resources Council Annual Meeting, Reno, Nevada-USA, September 25-28. Srinivas T., Gupta AVSSKS, Reddy B.V., 2007. Generalized thermodynamic analysis of steam power cycles with ̳n‘ number of feedwater heaters, International Journal of Thermodynamics 10:177-185. Stine W.B., Geyer M., 2001. Power cycles for electricity generation: in, Power from the sun, at http//www .powerfromthesun.net/chapter12/chapter12nwe.htm, [last checked March 2009]. Suzuki A., 1988. General theory of exergy-balance analysis and applications to solar collectors, Energy; 13:153-160. Takahashi P.K., Trenka A., 1992. Ocean thermal energy conversion: its promise as a total resource system, Energy 17:657-668. Tamm G.O., 2003. Experimental investigation of an ammonia-based combined power and cooling cycle, PhD Thesis, University of Florida. Tchanche B.F., Papadakis G., Lambrinos G., Frangoudakis A., 2008a. Criteria for working fluids selection in low-temperature solar organic Rankine cycles, in: Proc. Page | 195

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