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Original Articles

Modelling of organic Rankine cycle system and heat exchanger components

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Pages 704-721 | Received 27 May 2012, Accepted 22 Jan 2013, Published online: 18 Apr 2013

References

  • Augustine, C., R. Fielid, R. Dipippo, and G. Gigliucci. 2009. “Modeling and Analysis of Sub- and Supercritical Binary Rankinee Cycles for Low- to Mid-Temperature Geothermal Resources.” GRC Transactions 33: 689–693.
  • Cayer, E., N. Galanis, M. Desilets, H. Nesreddine, and P. Roy. 2009. “Analysis of a Carbon Dioxide Transcritical Power Cycle Using a Low Temperature Source.” Applied Energy 86: 1055–1063. doi: 10.1016/j.apenergy.2008.09.018
  • Dai, Y., J. Wang, and L. Gao. 2009. “Parametric Optimization and Comparative Study of Organic Rankinee Cycle (ORC) for Low Grade Waste Heat Recovery.” Energy Conversion and Management 50: 576–582. doi: 10.1016/j.enconman.2008.10.018
  • Didi, M. B. O., N. Kattan, and J. R. Thome. 2002. “Prediction of Two-Phase Pressure Gradients of Refrigerants in Horizontal Tubes.” International Journal of Refrgieration 25: 935–947. doi: 10.1016/S0140-7007(01)00099-8
  • Dobson, M. K., and J. C. Chato. 1998. “Condensation in Smooth Horizontal Tubes.” ASME Journal of Heat Transfer 120: 193–213. doi: 10.1115/1.2830043
  • Franco, A., and M. Villani. 2009. “Optimal Design of Binary Cycle Power Plants for Water-Dominated, Medium-Temperature Geothermal Fields.” Geothermics 38: 379–391. doi: 10.1016/j.geothermics.2009.08.001
  • Gnielinski, V. 1976. “New Equations for Heat and Mass Transfer in Turbulent Pipe and Channel Flow.” International Chemical Engineering 16: 359–368.
  • Guo, T., H. Wang, and S. Zhang. 2010. “Comparative Analysis of Natural and Conventional Working Fluids for Use in Transcritical Rankinee Cycle Using Low-Temperature Geothermal Source.” International Journal of Energy Research 35: 530–544. doi: 10.1002/er.1710
  • Guo, T., H. X. Wang, and S. J. Zhang. 2011. “Fluids and Parameters Optimization for a Novel Cogeneration System Driven by Low-Temperature Geothermal Sources.” Energy 36: 2639–2649. doi: 10.1016/j.energy.2011.02.005
  • Hettiarachchia, H. D. M., M. Golubovica, W. M. Woreka, and Y. Ikegami. 2007. “Optimum Design Criteria for an Organic Rankinee Cycle Using Low-Temperature Geothermal Heat Sources.” Energy 32: 1698–1706. doi: 10.1016/j.energy.2007.01.005
  • Hewitt, G. F. 1998. Heat Exchanger Design Handbook. New York: Begell House.
  • Hung, T.-C. 2001. “Waste Heat Recovery of Organic Rankinee Cycle Using Dry Fluids.” Energy Conversion and Management 42: 539–553. doi: 10.1016/S0196-8904(00)00081-9
  • Incropera, F. P., and P. D. Dewitt. 2002. Fundamentals of Heat and Mass Transfer. New York: John Wiley & Sons.
  • Invernizzi, C., P. Iora, and P. Silva. 2007. “Bottoming Micro-Rankinee Cycles for Micro-Gas Turbines.” Applied Thermal Engineering 27: 100–110. doi: 10.1016/j.applthermaleng.2006.05.003
  • Kaka, S., R. K. Shah, and W. Aung. 1987. Handbook of Single-phase Convective Heat Transfer. New York: Wiley-Interscience.
  • Klein, S. A., and F. L. Alvarado. 2009. Engineering Equation Solver (V8.861). F-Chart Software.
  • Kuoa, C.-R., S.-W. Hsua, K.-H. Changb, and C.-C. Wang. 2011. “Analysis of a 50 kW Organic Rankinee Cycle System.” Energy 36: 5877–5885. doi: 10.1016/j.energy.2011.08.035
  • Li, W., X. Feng, L. J. Yu, and J. Xu. 2011. “Effects of Evaporating Temperature and Internal Heat Exchanger on Organic Rankinee Cycle.” Applied Thermal Engineering 31: 4014–4023. doi: 10.1016/j.applthermaleng.2011.08.003
  • Liu, B.-T., K.-H. Chien, and C.-C. Wang. 2004. “Effect of Working Fluids on Organic Rankinee Cycle for Waste Heat Recovery.” Energy 29: 1207–1217. doi: 10.1016/j.energy.2004.01.004
  • Mathias, J. A., J. R. Johnston, J. J. Cao, D. K. Priedeman, and R. N. Christensen. 2009. “Experimental Testing of Gerotor and Scroll Expanders Used in, and Energetic and Exergetic Modeling of, an Organic Rankinee Cycle.” Journal of Energy Resources Technology 131: 1–9. doi: 10.1115/1.3066345
  • Muller-Steinhagen, H., and K. Heck. 1986. “A Simple Friction Pressure Drop Correlation for Two-Phase Flow in Pipes.” Chemical Engineering Process 20: 297–308. doi: 10.1016/0255-2701(86)80008-3
  • Nakaoka, T., and H. Uehara. 1988. “Performance Test of a Shell-and-Plate-Type Condenser for OTEC.” Experimental Thermal and Fluid Science 1: 275–281. doi: 10.1016/0894-1777(88)90007-6
  • Nellis, G. F., and S. A. Klein. 2009. Heat Transfer. New York: Cambridge University Press.
  • Palm, B., and J. Claesson. 2006. “Plate Heat Exchangers: Calculation Methods for Single and Two-Phase Flow.” Heat Transfer Engineering 27: 88–98. doi: 10.1080/01457630500523949
  • Petukhov, B. S. 1970. Advances in Heat Transfer. 6 vols. New York: Academic Press.
  • Rayegan, R., and Y. X. Tao. 2011. “A Procedure to Select Working Fluids for Solar Organic Rankinee Cycles (ORCs).” Renewable Energy 36: 659–670. doi: 10.1016/j.renene.2010.07.010
  • Saleh, B., G. Koglbauer, M. Wendland, and J. Fischer. 2007. “Working Fluids for Low-Temperature Organic Rankinee Cycles.” Energy 32: 1210–1221. doi: 10.1016/j.energy.2006.07.001
  • Shah, M. M. 1982. “Chart Correlation for Saturated Boiling Heat Transfer: Equations and Further Study.” ASHRAE Transactions 88: 185–186.
  • Wang, E. H., H. G. Zhang, B. Y. Fan, M. G. Ouyang, Y. Zhao, and Q. H. Mu. 2011. “Study of Working Fluid Selection of Organic Rankinee Cycle (ORC) for Engine Waste Heat Recovery.” Energy 36: 3406–3418. doi: 10.1016/j.energy.2011.03.041

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