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The Organic Rankine Cycle

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The Organic Rankine Cycle ( the-organic-rankine-cycle )

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MECHANICAL ENGINEERING – The Organic Rankine Cycle: Thermodynamics, Applications and Optimization – Sylvain Quoilin and Vincent Lemort Persson J.-G. (1990). Performance mapping vs design parameters for screw compressors and other displacement compressor types, VDI Berichte, nr. 859, Düsseldorf. [A very complete study on the use and the limitations of positive-displacement compressors, which can be extended to the positive-displacement expander technology]. Probert S. D., H.M., O'Callaghan P.W., Bala E. (1983). Design Optimisation of a Solar-Energy Harnessing System for Stimulating an Irrigation Pump, Applied Energy 15. [Theoretical and economical study of a solar ORC used in remote areas for irrigation applications]. Quoilin, S., & Lemort, V. (2009). Technological and Economical Survey of Organic Rankine Cycle Systems. [A survey of the ORC technology describing the current market and state of the art, and the optimization of such systems]. Quoilin, S., Aumann, R., Grill, A., Schuster, A., Lemort, V., Spliethoff, H. (2011). Dynamic modeling and optimal control strategy of waste heat recovery Organic Rankine Cycles, Applied Energy In Press, Corrected Proof. [A methodology for optimizing the working conditions of a waste heat recovery Organic Rankine Cycle in transient conditions]. Rentizelas, A., S. Karellas, E. Kakaras, and I. Tatsiopoulos. (2008). Comparative techno-economic analysis of ORC and gasification for bioenergy applications. Energy Conversion and Management, 2008. [Comparison of two concurrent technology for power generation with a biomass fuel: the Organic Rankine Cycle and the gasification]. Saleh, B., Koglbauer, G., Wendland, M., Fischer, J. (2007). Working fluids for low-temperature organic Rankine cycles, Energy 32, 1210-1221. [Another working fluid study for low-temperature power generation using Organic Rankine Cycles]. Steinhagen, H.M. (2004). Concentrating solar power, a review of the technology, Ingenia 18. [Comprehensive review of the concentrating solar power technologies]. Tchanche B.F., Papadakis G., Lambrinos G., Frangoudakis A. (2009). Fluid selection for a low- temperature solar organic Rankine cycle, Applied Thermal Engineering 29, 2468-2476 [Another working fluid study for low-temperature power generation using Organic Rankine Cycles]. Wang, J. F., Y. P. Dai, et al. (2009). Exergy analyses and parametric optimizations for different cogeneration power plants in cement industry. Applied Energy 86:6, 941-948. [Second law analysis of the waste heat recovery potential in the cement industry using different thermodynamic cycles: the single flash steam cycle, the dual-pressure steam cycle, the Organic Rankine Cycle (ORC) and the Kalina cycle]. Zanelli R., Favrat D. (1994). Experimental Investigation of a Hermetic Scroll Expander-Generator, Proceedings 12th International Compressor Engineering Conference at Purdue 459-464. [First experimental study demonstrating the feasibility of turning a scroll compressor into an expander with a good efficiency]. Biographical Sketches Vincent Lemort is Assistant Professor at the Thermodynamics Laboratory of the University of Liège. His research activities are dealing with the modeling, the testing and the optimization of energy systems and more especially refrigeration, heating and air-conditioning systems as well as small-scale Organic Rankine Cycles. He has published more than 50 journal and conference papers on these topics. He has a strong background in working in collaboration with Industry but also in the frame of international research projects (among which projects supported by the International Energy Agency). In the field of ORC systems, he is supervising 4 Ph.D. students and several Master Thesis students per year. Sylvain Quoilin obtained a Master in Mechanical/Energy Engineering at the University of Liege in 2007. He is also the holder of a PhD in the field of small-scale Organic Rankine Cycles applied to solar and waste heat recovery applications. His research focuses more specifically on the following aspects: Fluid selection, components static modeling, optimization, dynamic modeling and regulation of the system, experimental studies. He gained a strong international experience by spending 2 months in the US (Massachusetts Institutes of Technology), 6 months in Germany (TU München), And one month in South Africa (Solar Turbine Group, NGO), visiting research groups working on the same topic. He is the author ©Encyclopedia of Life Support Systems (EOLSS) UNESCO – EOLSS SAMPLE CHAPTERS

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