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Automotive Radial Turbine Expander Design WHR

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Automotive Radial Turbine Expander Design WHR ( automotive-radial-turbine-expander-design-whr )

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232 [111] [112] [113] [114] [115] [116] [117] [118] [119] [120] [121] [122] [123] [124] H. Teng, J. Klaver, T. Park, G. L. Hunter, and B. van der Velde, “A Rankine Cycle System for Recovering Waste Heat from HD Diesel Engines - WHR System Development,” SAE Int., vol. 1, pp. 1–11, 2011. P. Garg, G. M. Karthik, P. Kumar, and P. Kumar, “Development of a generic tool to design scroll expanders for ,ORC- applications,” Appl. Therm. Eng., vol. 109, Part , pp. 878–888, 2016. I. Papes, J. Degroote, and J. Vierendeels, “Development of a thermodynamic low order model for a twin screw expander with emphasis on pulsations in the inlet pipe,” Appl. Therm. Eng., vol. 103, no. Supplement C, pp. 909–919, 2016. L. Zhao, M. Li, Y. Ma, Z. Liu, and Z. Zhang, “Simulation analysis of a two-rolling piston expander replacing a throttling valve in a refrigeration and heat pump system,” Appl. Therm. Eng., vol. 66, no. 1, pp. 383–394, 2014. B. Yang, X. Peng, Z. He, B. Guo, and Z. Xing, “Experimental investigation on the internal working process of a CO2 rotary vane expander,” Appl. Therm. Eng., vol. 29, no. 11, pp. 2289–2296, 2009. A. Reid, “Low Temperature Power Generation Using HFE-7000 in a Rankine Cycle,” Master Thesis, San Diego State University, 2012. S. Quoilin, M. Van Den Broek, S. Declaye, P. Dewallef, and V. Lemort, “Techno-economic survey of Organic Rankine Cycle (ORC) systems,” Renew. Sustain. Energy Rev., vol. 22, pp. 168–186, 2013. L. Zhao, M. Li, and Z. Liu, “Simulation analysis of a two rolling piston expander replacing throttling valve in conventional refrigerant heat pump system,” in International Compressor Engineering Conference, Purdue University USA, 2012. M. Badami and M. Mura, “Preliminary design and controlling strategies of a small-scale wood waste Rankine Cycle (RC) with a reciprocating steam engine (SE),” Energy, vol. 34, no. 9, pp. 1315–1324, 2009. N. Paltrinieri, “A Mean-Line Model to Predict the Deaign Performance of Radial Inflow Turbines in Organic Rankine Cycles,” Master Thesis, University of Padua, 2014. O. Badr, S. Naik, P. W. O’Callaghan, and S. D. Probert, “Expansion machine for a low power- output steam Rankine-cycle engine,” Appl. Energy, vol. 39, no. 2, pp. 93–116, 1991. O. Badr, S. Naik, P. W. O’Callaghan, and S. D. Probert, “Rotary Wankel engines as expansion devices in steam Rankine-cycle engines,” Appl. Energy, vol. 39, no. 1, pp. 59–76, 1991. M. Antonelli, A. Baccioli, M. Francesconi, U. Desideri, and L. Martorano, “Operating maps of a rotary engine used as an expander for micro-generation with various working fluids,” Appl. Energy, vol. 113, pp. 742–750, 2014. O. Badr, P. W. O’Callaghan, M. Hussein, and S. D. Probert, “Multi-vane expanders as prime movers for low-grade energy organic Rankine-cycle engines,” Appl. Energy, vol. 16, pp. 129–146,

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