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Mean-Line Design of a Supercritical CO2 Micro Axial Turbine

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Mean-Line Design of a Supercritical CO2 Micro Axial Turbine ( mean-line-design-supercritical-co2-micro-axial-turbine )

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Appl. Sci. 2020, 10, 5069 18 of 20 References 1. Aichmayer, L.; Spelling, J.; Laumert, B. Thermoeconomic Analysis of a Solar Dish Micro Gas-turbine Combined-cycle Power Plant. Energy Procedia 2015, 69, 1089–1099. [CrossRef] 2. Yin, J.; Zheng, Q.; Peng, Z.; Zhang, X. Review of supercritical CO2 power cycles integrated with CSP. Int. J. Energy Res. 2019. [CrossRef] 3. Saeed, M.; Kim, K.H. Analysis of a recompression supercritical carbon dioxide power cycle with an integrated turbine design/optimization algorithm. Energy 2018, 165, 93–111. [CrossRef] 4. Moroz, L.; Frolov, B.; Burlaka, M.; Guriev, O. Turbomachinery Flow path Design and Performance Analysis for Supercritical CO2 . In Proceedings of the ASME Turbo Expo 2014, Düsseldorf, Germany, 16–20 June 2014. [CrossRef] 5. Holaind, N.; Bianchi, G.; De Miol, M.; Saravi, S.; Tassou, S.; Leroux, R.;Jouhara, H. Design of radial turbomachinery for supercritical CO2 systems using theoretical and numerical CFD methodologies. Energy Procedia 2017, 123, 313–320. [CrossRef] 6. Qi, J.; Reddell, T.; Qin, K.; Hooman, K.;Jahn, I. Supercritical CO2 Radial Turbine Design Performance as a Function of Turbine Size Parameters. J. Turbomach. 2017, 139. [CrossRef] 7. Zhou, A.; Song, J.; Li, X; Ren, X.; Gu, C. Aerodynamic design and numerical analysis of a radial inflow turbine for the supercritical carbon dioxide Brayton cycle. Appl. Energy 2017, 205, 187–209. [CrossRef] 8. Zhang, D.; Wang, Y.; Xie, Y. Investigation into Off-Design Performance of a sCO2 Turbine Based on Concentrated Solar Power. Energies 2018, 11, 3014. [CrossRef] 9. Lv, G.; Yang, J.; Shao, W.; Wang, X. Aerodynamic design optimization of radial-inflow turbine in supercritical CO2 cycles using a one-dimensional model. Energy Convers. Manag. 2018, 165, 827–839. [CrossRef] 10. Shi, D.; Zhang, L.; Xie, Y.; Zhang, D. Aerodynamic Design and Off-design Performance Analysis of a Multi-Stage S-CO2 Axial Turbine Based on Solar Power Generation Syste. Appl. Sci. 2019, 9, 714. [CrossRef] 11. White, M.T.; Sayma, A.I. A Preliminary Comparison of Different Turbine Architectures for A 100 Kw Supercritical CO2 Rankine Cycle Turbine. In Proceedings of the 6th International Supercritical CO2 Power Cycles Symposium, Pittsburgh, PA, USA, 27–29 March 2018. 12. Fiaschi, D.; Manfrida, G.; Maraschiello, F. Organic Rankine Cycles, ORC turbo expander design, Combined heat and power. Appl. Energy 2012, 97, 601–608. [CrossRef] 13. Casati, E.; Vitale, S.; Pini, M.; Persico, G.; Colonna, P. Centrifugal Turbines for Mini-Organic Rankine Cycle Power Systems. J. Eng. Gas Turbines Power 2014, 136. [CrossRef] 14. Rahbar, K.; Mahmoud, S.; Al-Dadah, R.; Nima, M. Parametric Analysis and Optimization of a Small-Scale Radial Turbine for Organic Rankine Cycle. Energy 2015, 83, 696–711. [CrossRef] 15. Da Lio, L.; Manente, G.; Lazzaretto, N. DA mean-line model to predict the design efficiency of radial inflow turbines in organic Rankine cycle (ORC) systems. Appl. Therm. Eng. 2018, 132, 245–255. [CrossRef] 16. Angelino, G. Carbon Dioxide Condensation Cycles For Power Production. J. Eng. Power 1968, 90, 287–295. [CrossRef] 17. Feher, E.G. The supercritical thermodynamic power cyclen. Energy Convers. 1968, 8, 85–90. [CrossRef] 18. Valencia-Chapi, R.; Coco-Enríquez, R.; Muñoz-Antón, J. Supercritical CO2 Mixtures for Advanced Brayton PowerCyclesinLine-FocusingSolarPowerPlants.Appl.Sci. 2020,10,55.[CrossRef] 19. Binotti, M.; Invernizzi, C.; Iora, P.; Manzolini, G.; Dinitrogen tetroxide and carbon dioxide mixtures as working fluids in solar tower plants. Sol. Energy 2019, 181, 203–213. [CrossRef] 20. Manzolini, G.; Invernizzi, C.; Iora, P.; Binotti, M.; Bonalumi, D. CO2 mixtures as innovative working fluid in power cycles applied to solar plants. Techno-economic assessment. Sol. Energy 2019, 181, 530–544. [CrossRef] 21. SCARABEUS Project Home Page. Available online: http://www.scarabeusproject.eu/ (accessed on 26 November 2015). 22. Spadacini, C.; Pesatori, E.; Centemeri, L.; Lazzarin, N.; Macchi, R.; Sanvito, M. Optimized Cycle and Turbomachinery Configuration for an Intercooled, Recompression Sco2 Cycle. In Proceedings of the 6th International Supercritical CO2 Power Cycles Symposium, Pittsburgh, PA, USA, 27–29 March 2018. 23. Lemmon, E.W.; Huber, M.L.; Mclinden, M.O. IST Standard Reference Database 23: Reference Fluid Thermodynamic and Transport Properties-REFPROP, Version 9.1. In Proceedings of the 6th National Institute of Standards and Technology, Standard Reference Data Program, Gaithersburg, MD, USA, 15–17 May 2013.

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