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PERFORMANCE OF WORKING FLUIDS FOR POWER GENERATION IN A SUPERCRITICAL ORGANIC RANKINE CYCLE

机译:超临界有机朗肯循环中发电的工作流体的性能

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This paper reports on the performance of various organic refrigerants and their mixtures as working fluids for power generation in a supercritical Rankine cycle (SRC) from geothermal sources. Organic fluids that have zero or very low ozone depletion potential and are environmentally safe are selected for this study. Geothermal source temperature is varied from 125-200°C, and the cooling water temperature is changed from 10-20°C. The effect of varying operating conditions on the performance of the thermodynamic cycle has been analyzed. Operating pressure of the cycle has been optimized for thermal efficiency for each fluid at each source temperature. The condensation pressure is determined by the cooling condition and is kept fixed for each condensation temperature. Energy and exergy efficiencies of the cycle have been obtained for the pure fluids as a function of heat source temperature. Mixtures of organic fluids have been analyzed and effect of composition on performance of the thermodynamic cycle has been studied. It is observed that thermal efficiency over 20% can be achieved for 200°C heat source temperature and the lowest cooling temperature. When mixtures are considered as working fluids, the thermal efficiency of the cycle is observed to remain between the thermal efficiencies of the constituent fluids.
机译:本文报告了各种有机制冷剂及其混合物作为从地热源的超临界Quane循环(SRC)中发电的工作流体。为本研究选择具有零或非常低的臭氧耗尽电位并且是环保的有机液。地热源温度在125-200℃变化,冷却水温从10-20℃变化。分析了不同操作条件对热力学周期性能的影响。该循环的操作压力已经针对每个源极温度的每个流体进行了优化的热效率。冷凝压力由冷却条件确定,并保持针对每个冷凝温度固定。对于纯净流体作为热源温度的函数,已经获得了循环的能量和漏洞效率。已经分析了有机流体的混合物,研究了组合物对热力学周期的性能的影响。观察到,可以实现200°C的热源温度和最低冷却温度超过20%的热效率。当混合物被认为是工作流体时,观察到循环的热效率以保留构成流体的热效。

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