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Thermodynamic analysis of solar powered triple combined Brayton, Rankine and organic Rankine cycle for carbon free power

机译:太阳能三联Brayton,Rankin和有机Rankine循环无碳发电的热力学分析

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The present study focuses upon the solar powered triple combined cycle consisting of Brayton cycle running on air, Rankine cycle running on steam and organic Rankine cycle on R245fa as working fluid. The absence of combustion in the topping cycle yields zero emission and carbon free power. Topping cycle receives the heat from the molten salt heat exchanger run on Concentrating Solar Power (CSP) technology employing heliostat field solar collectors for providing high temperature to compressed air for being expanded in gas turbine. Discharge from topping cycle is used for providing working fluid for Rankine cycle, and organic Rankine cycle through respective heat recovery systems. This theoretical study includes thermodynamic analysis based on the first and second law of thermodynamics and aims at the evaluation of performance parameters along with identification of optimal operating conditions and estimation of second law efficiency of major constituent components of triple combined cycle configuration. Results obtained from the study can be used for creating a prototype for field trial and future improvements in it. The total power of 331.59 kW per kg of air entering in the topping cycle is produced by the triple combined cycle having gas turbine, steam turbine and organic Rankine cycle turbine along with the thermal efficiency up to 33.15% at cycle pressure ratio of 24 in Indian context. Second law analysis of the considered triple combined cycle helps in identifying the sources of inefficiencies in the cycle and the second law efficiency of the major constituent components is found to be 97.07% for gas turbine followed by 96.05% for the compressor, 8133% for ORC turbine, 80.31% for LPST and 79.5% for HPST. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究的重点是太阳能三重联合循环,包括在空气中运行的布雷顿循环,在蒸汽中运行的兰金循环和在R245fa作为工作流体的有机兰金循环。打顶循环中没有燃烧会产生零排放和无碳动力。顶部循环从熔融盐热交换器接收热量,该熔融盐热交换器使用定日镜场太阳能收集器运行的聚光太阳能(CSP)技术,可为压缩空气提供高温以在燃气轮机中膨胀。来自顶部循环的排出物用于通过各自的热回收系统提供用于兰金循环和有机兰金循环的工作流体。这项理论研究包括基于热力学第一定律和第二定律的热力学分析,旨在评估性能参数,以及确定最佳运行条件并估算三联循环配置的主要组成部分的第二定律效率。从研究中获得的结果可用于创建用于现场试验的原型以及将来的改进。在三大联合循环中,燃气轮机,蒸汽轮机和有机朗肯循环轮机的三重联合循环产生的热量为331.59 kW / kg空气,在印度,循环压力比为24时,热效率高达33.15%。上下文。对考虑的三重联合循环的第二定律分析有助于确定循环中效率低下的原因,发现燃气轮机的主要组成部分的第二定律效率为97.07%,其次是压缩机为96.05%,ORC为8133%涡轮机,LPST为80.31%,HPST为79.5%。 (C)2019 Elsevier Ltd.保留所有权利。

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