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Energies 2020, 13, 6586 23 of 26 4. Zhang, J.; Zhao, L.; Dong, H. Review of Research on Industrial Waste Heat Recovery Based on Organic Rankine Cycle. In Proceedings of the 10th National Energy and Thermal Engineering Academic Annual Conference, Hangzhou, Zhejiang Province, China, 14 August 2019; pp. 392–396. 5. Dibazar, S.Y.; Salehi, G.; Davarpanah, A. Comparison of Exergy and Advanced Exergy Analysis in Three Different Organic Rankine Cycles. Processes 2020, 8, 586. [CrossRef] 6. Feng, Y.-Q.; Wang, X.; Niaz, H.; Hung, T.-C.; He, Z.-X.; Zeb, A.J.; Xi, H. Experimental comparison of the performance of basic and regenerative organic Rankine cycles. Energy Convers. Manag. 2020, 223, 113459. [CrossRef] 7. Ehyaei, M.A.; Ahmadi, A.; Rosen, M.A.; Davarpanah, A. Thermodynamic Optimization of a Geothermal Power Plant with a Genetic Algorithm in Two Stages. Processes 2020, 8, 1277. [CrossRef] 8. Alizadeh, S.M.; Ghazanfari, A.; Ehyaei, M.A.; Ahmadi, A.; Jamali, D.H.; Nedaei, N.; Davarpanah, A. Investigation the Integration of Heliostat Solar Receiver to Gas and Combined Cycles by Energy, Exergy, and Economic Point of Views. Appl. Sci. 2020, 10, 5307. [CrossRef] 9. Di Cairano, L.; Nader, W.B.; Nemer, M. Assessing fuel consumption reduction in Revercycle, a reversible mobile air conditioning/organic Rankine cycle system. Energy 2020, 118588. [CrossRef] 10. Usman, M.; Imran, M.; Haglind, F.; Pesyridis, A.; Park, B.-S. Experimental analysis of a micro-scale organic Rankine cycle system retrofitted to operate in grid-connected mode. Appl. Eng. 2020, 180, 115889. [CrossRef] 11. Jingwen, Y.; Kefeng, Y.; Jia, H.; Ganghui, L.; Hongbin, G. Research progress and application status of organic Rankine cycle expanders. Therm. Power Gener. 2019, 48, 10–18. 12. Yajing, S. Flow Field Analysis and Dynamic Performance Study of Twin Screw Expander. Ph.D. Thesis, Yangzhou University, Yangzhou, China, April 2019. 13. Yuan, T. Application of screw expander in waste heat power generation project. Energy Res. Util. 2018, 3, 54–55. 14. Fong, Z.; Huang, F.; Fang, H. Evaluating the inter-lobe clearance of twin-screw compressor by the iso-clearance contour diagram (ICCD). Mech. Mach. Theory 2001, 36, 725–742. [CrossRef] 15. Prins, J.; Ferreira, C.A.I. Leakage Experiments on a Running Twin Screw Compressor. Arzneim. Forsch. 2002, 25, 975–976. 16. Tian, Y.; Lu, J.; Shen, J.; Wu, H.; Xing, Z. Optimization on shaft seals for a twin-screw steam compressor based on a novel uniform property region (UPR) model on discharge end-face. Int. J. Refrig. 2018, 91, 167–176. [CrossRef] 17. Xing, Z.; Fu, P. Study of Leakage Characteristics in Twin Screw Compressor with Refrigerant R134a. Refrig. J. 2000, 04, 23–28. 18. Qi, Y.; Yu, Y. Numerical simulation and analysis of leakage process in twin screw expander. J. Shanghai Jiaotong Univ. 2016, 504, 496–501. 19. Papes, I.; Degroote, J.; Vierendeels, J. 3D CFD Analysis of an Oil Injected Twin Screw Expander. In Proceedings of the ASME 2013 International Mechanical Engineering Congress and Exposition, San Diego, CA, USA, 15–21 November 2013. 20. Hesse, J.; Spillekohoff, A.; Shorbagy, A.E. CFD simulation of a screw compressor including leakage flows and rotor heating. In Proceedings of the 9th International Conference on Compressors and Their Systems, London, UK, 7–9 September 2015. 21. Li, H.; Jin, G.; Wu, Z. Leakage analysis and calculation of oil injection single screw compressor. Fluid Mach. 1993, 8, 14–18. 22. Wang, Z.; Liu, Z.; Wu, W.; Feng, Q. Research of leakage characteristics of single screw refrigeration compressors with the Multicolumn Envelope Meshing Pair. Int. J. Refrig. 2015, 49, 1–10. [CrossRef] 23. Bein, T.W.; Hamilton, J.F. Computer Modeling of an Oil Flooded Single Screw Air Compressor. 1982. Available online: https://docs.lib.purdue.edu/cgi/viewcontent.cgi?article=1382&context=icec (accessed on 11 December 2020). 24. Jiang, S.G. Study on the Positive and Negative Configurations of Twin Screw Rotor Profile Based on NURBS. Ph.D. Thesis, Jiangnan University, Wuxi, China, June 2018. 25. Hui, L. Research and Simulation of MWorks Based Screw Compression Machine Line. Ph.D. Thesis, Huazhong University of Technology, Wuhan, China, January 2013. 26. Zaytsev, D.; Ferreira, C.A.I. Profile generation method for twin screw compressor rotors based on the meshing line. Int. J. Refrig. 2005, 28, 744–755. [CrossRef]PDF Image | Development and Application of the Twin Screw Expander
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