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Methodology to design a bottoming Rankine cycle

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Methodology to design a bottoming Rankine cycle ( methodology-design-bottoming-rankine-cycle )

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449 [23] 450 451 [24] 452 [25] 453 [26] 454 [27] 455 456 [28] 457 458 [29] 459 460 [30] 461 [31] 462 [32] 463 464 [33] 465 466 [34] 467 468 [35] 469 470 [36] 471 [37] 472 [38] 473 474 [39] 475 [40] 476 [41] 477 478 [42] 479 480 [43] 481 482 [44] 483 484 [45] 485 [46] 486 487 [47] 488 489 [48] 490 [49] 491 Emission Standards for Model Year 2007 and Later Heavy-duty Highway Engines. U.S Environmental Protection Agency (EPA) (http://www.epa.gov/). NSDS Turbine Chart Map.[cited 2012 Jan 20]. On the Web: www.barber-nichols.com/pdf/nsds turbine chart.pdf. Japikse D, Baines NC, (1997): Introduction to Turbomachinery. ETI, Inc. and Oxford, Oxford. Saleh B. Working fluids for low-temperature organic Rankine cycles. Energy 2007;32;1210-21. Angelino G, di Paliano PC. Organic Rankine Cycles (ORCs) for energy recovery from molten carbonate fuel cells. Intersociety Energy Conversion Engineering 2000;2:1400-9. Drescher U. and Bru ̈ggemann D. Fluid selection for the Organic Rankine Cycle (ORC) in biomass power and heat plants. Applied Thermal Engineering 2007;27:223-8. Serrano JR, Arnau FJ, Dolz V, Tiseira A, Lejeune M, Auffret N. Analysis of the capabilities of a two-stage turbocharging system to fulfil the US2007 anti-pollution directive for heavy duty Diesel engines. International Journal of Automotive Technology 2008;9:277-88. Armstrong M. Basic Linear Geostatistics. Springer, Berlin ;1998. Surfer Version 8.0. Feb 11 2002. Energy and Exergy Balances for Modern Diesel and Gasoline Engines, Les recontrates scientifiques de l IFP- Advances in Hybrid Powertrains, 2008. Exergy analysis- a different perspective on energy- Part 2: rational efficiency and some examples of exergy analysis. SAE Technical Paper 904794,1990. Bourhis G, Leduc P, IFP. Energy and Exergy Balances for Modern Diesel and Gasoline Engines, Les recontrates scientifiques de l IFP- Advances in Hybrid Powertrains, 2008. Tchanche BF, Lambrinos G, Frangoudakis A, Papadakis G. Exergy analysis of micro-organic Rankine power cycles for a small scale solar driven reverse osmosis desalination system. Applied Energy 2010;87;1295-306. Badr O, Probert SD, O’Callaghan PW. Selecting a working fluid for a Rankine cycle engine. Applied Energy 1985;21:1-42. Yamamoto T, Furuhata T, Ara N, More K. Design and testing of the Organic Rankine Cycle. Energy 2001;26;239-51. Duparchy A, Leduc P, Bourhis G, Ternel C. Heat Recovery for next Generation of Hybrid Vehicles: Simulations and Design of a Rankine Cycle System. World Electric Vehicle Journal Vol 3. ISSN 2023–6653, 2009. Schuster A, Karellas S, Aumann R. Efficiency optimization potential in supercritical Organic Rankine Cycles. Energy 2010;35;1033-9. Nelson C. Exhaust Recovery Energy. In: 2008 DEER Conference, August 3rd, 2008 Schuster A, Karellas S, Kakaras E, Spliethoff H. Energetic and economic investigation of Organic Rankine Cycle applications. Applied Thermal Engineering 2009;29:1809-17. Shah RK, Sekulic ́ DP. Heat Exchanger Design Procedures, in Fundamentals of Heat Exchanger Design. John Wiley and Sons, Inc, New Yersey ;2003. Bell KJ. Delaware method for shell design, in: RK Shah, EC Subbarao, RA Mashelkar, editors. Heat Transfer Equipment Design, Washintong: Hemisphere Publishing, p.145-66. Standards of the Tubular Heat Exchanger Manufactures Association, 8th edg (Tubular Heat Exchangers Manufactures Association New York). Domingo JD. Analysis of complex assemblies of heat exchangers. Int. J Heat Mass Transfer 1969;12:537-48. Bhatti MS and. Shah RK. Turbulent and transition convective heat transfer in duct. Handbook of Single-Phase convective Heat transfer, New York:Wiley;1987. Taborek J. Ideal tube bank correlations for heat transfer and pressure drop, in: EU Schlunder, editors. Heat Exchanger Design Handbook, Washintong: Hemisphere Publishing;1983. Bromley LA. Heat transfer in stable film boiling. Chemical Engineering Programe 1950;46:221-7. Carey VP. Liquid-Vapor Phase-Change Phenomena: An Introduction to the Thermophysics of Vaporization and Condensation Process in Heat Transfer Equipment, Taylor & Francis, Bristol; 1992. 16

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