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Waste Heat Recovery from Diesel Engine Exhaust ORC

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Waste Heat Recovery from Diesel Engine Exhaust ORC ( waste-heat-recovery-from-diesel-engine-exhaust-orc )

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Energies 2020, 13, 5914 14 of 15 3. Domingues, A.; Santos, H.; Costa, M. Analysis of vehicle exhaust waste heat recovery potential using a Rankine cycle. Energy 2013, 49, 71–85. [CrossRef] 4. Yu, C.; Chau, K.T. Thermoelectric automotive waste heat energy recovery using maximum power point tracking. Energy Convers. Manag. 2009, 50, 1506–1512. [CrossRef] 5. Wang, E.H.; Zhang, H.G.; Fan, B.Y.; Ouyang, M.G.; Zhao, Y.; Mu, Q.H. Study of working fluid selection of organic Rankine cycle (ORC) for engine waste heat recovery. Energy 2011, 36, 3406–3418. [CrossRef] 6. Wang, S.; Yuan, Z.A. Hot water split-flow dual-pressure strategy to improve system performance for Organic Rankine Cycle. Energies 2020, 13, 3345. [CrossRef] 7. Imran, M.; Haglind, F.; Lemort, V.; Meroni, A. Optimization of organic Rankine cycle power systems for waste heat recovery on heavy-duty vehicles considering the performance, cost, mass and volume of the system. Energy 2019, 180, 229–241. [CrossRef] 8. Horst, T.A.; Tegethoff, W.; Eilts, P.; Koehler, J. Prediction of dynamic Rankine Cycle waste heat recovery performance and fuel saving potential in passenger car applications considering interactions with vehicles’ energy management. Energy Convers. Manag. 2014, 78, 438–451. [CrossRef] 9. Zhang, Y.-Q.; Wu, Y.-T.; Xia, G.-D.; Ma, C.-F.; Ji, W.-N.; Liu, S.-W.; Yang, K.; Yang, F.-B. Development and experimental study on organic Rankine cycle system with single-screw expander for waste heat recovery from exhaust of diesel engine. Energy 2014, 77, 499–508. [CrossRef] 10. Shi, L.; Shu, G.; Tian, H.; Deng, S. A review of modified Organic Rankine cycles (ORCs) for internal combustion engine waste heat recovery (ICE-WHR). Renew. Sustain. Energy Rev. 2018, 92, 95–110. [CrossRef] 11. Zhang, W.; Wang, E.; Meng, F.; Zhang, F.; Zhao, C. Closed-loop PI control of an Organic Rankine Cycle for engine exhaust heat recovery. Energies 2020, 13, 3817. [CrossRef] 12. Bin Wan Ramli, W.R.; Pesyridis, A.; Gohil, D.; Alshammari, F. Organic Rankine Cycle Waste Heat Recovery for Passenger Hybrid Electric Vehicles. Energies 2020, 13, 4532. [CrossRef] 13. Bufi, E.A.; Camporeale, S.M.; Cinnella, P. Robust optimization of an Organic Rankine Cycle for heavy duty engine waste heat recovery. Energy Procedia 2017, 129, 66–73. [CrossRef] 14. Yang, F.; Cho, H.; Zhang, H.; Zhang, J.; Wu, Y. Artificial neural network (ANN) based prediction and optimization of an organic Rankine cycle (ORC) for diesel engine waste heat recovery. Energy Convers. Manag. 2018, 164, 15–26. [CrossRef] 15. Hajabdollahi, Z.; Hajabdollahi, F.; Tehrani, M.; Hajabdollahi, H. Thermo-economic environmental optimization of Organic Rankine Cycle for diesel waste heat recovery. Energy 2013, 63, 142–151. [CrossRef] 16. Yang, M.H.; Yeh, R.H. Thermodynamic and economic performances optimization of an organic Rankine cycle system utilizing exhaust gas of a large marine diesel engine. Appl. Energy 2015, 149, 1–12. [CrossRef] 17. Galindo, J.; Climent, H.; Dolz, V.; Royo-Pascual, L. Multi-objective optimization of a bottoming Organic Rankine Cycle (ORC) of gasoline engine using swash-plate expander. Energy Convers. Manag. 2016, 126, 1054–1065. [CrossRef] 18. Wronski, J.; Imran, M.; Skovrup, M.J.; Haglind, F. Experimental and numerical analysis of a reciprocating piston expander with variable valve timing for small-scale organic Rankine cycle power systems. Appl. Energy 2019, 247, 403–416. [CrossRef] 19. Imran, M.; Usman, M.; Park, B.-S.; Lee, D.-H. Volumetric expanders for low grade heat and waste heat recovery applications. Renew. Sustain. Energy Rev. 2016, 57, 1090–1109. [CrossRef] 20. Imran, M.; Usman, M. Mathematical modelling for positive displacement expanders. In Positive Displacement Machines; Academic Press: New York, NY, USA, 2019; pp. 293–343. 21. Wang, W.; Wu, Y.-T.; Ma, C.-F.; Liu, L.-D.; Yu, L. Preliminary experimental study of single screw expander prototype. Appl. Therm. Eng. 2011, 31, 18–88. [CrossRef] 22. Lei, B.; Wang, W.; Wu, Y.-T.; Ma, C.-F.; Wang, J.-F.; Zhang, L.; Li, C.; Zhao, Y.-K.; Zhi, R.-P. Development and experimental study on a single screw expander integrated into an Organic Rankine Cycle. Energy 2016, 116, 43–52. [CrossRef] 23. Muhammad, H.A.; Lee, B.; Sultan, H.; Imran, M.; Baik, Y.-J. Advance thermodynamic analysis of a CO2 compression system using heat-pump for CCS. In Proceedings of the ECOS 2020—33rd International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, Osaka, Japan, 29 June–3 July 2020; Available online: https://publications.aston.ac.uk/id/eprint/41661/1/ Conference_paper_2.pdf (accessed on 1 September 2020).

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