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EFFECT OF WORKING FLUID ON PERFORMANCE OF THE ORC AND COMBINED BRAYTON/ORC CYCLE

机译:工作流体对ORC和Brayton / ORC联合循环性能的影响

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This study focuses on the power cycles such as organic Rankine cycle (ORC) and combined regenerative Brayton/ORC. The selection of working fluids and power cycles is traditionally conducted by trial and error method and performing a large number of parametric calculations over a range of operating conditions. A methodology for selection of optimal working fluid based on the cycle operating conditions and thermophysical properties of the working fluids was developed in this study. Thermodynamic performance (thermal efficiency and net power output) of a simple subcritical and supercritical ORC was analyzed over a range of operating conditions for a number of working fluids to determine the effect of operating parameters on cycle performance and select the best working fluid. New expressions for thermal efficiency of a simple ORC are proposed. In case of a regenerative Brayton/ORC, the results show that CO_2 is the best working fluid for the topping cycle. Depending on the exhaust temperature of the topping cycle, Iso-butane, R11 and Ethanol are the preferred working fluids for the bottoming (ORC) cycle, resulting in highest efficiency of the combined cycle. Finally, a performance map is presented as guidance for selection of the best working fluid for specific cycle operating conditions.
机译:这项研究的重点是功率循环,例如有机朗肯循环(ORC)和组合式再生布雷顿/ ORC。传统上,工作流体和动力循环的选择是通过试错法进行的,并在一定范围的工作条件下执行大量的参数计算。在这项研究中,开发了一种基于循环工作条件和工作流体的热物理特性选择最佳工作流体的方法。在多种工质的一系列操作条件下,分析了简单的亚临界和超临界ORC的热力学性能(热效率和净功率输出),以确定操作参数对循环性能的影响并选择最佳的工质。提出了简单ORC热效率的新表达式。在使用再生布雷顿/ ORC的情况下,结果表明,CO_2是打顶循环的最佳工作流体。根据打顶循环的排气温度,异丁烷,R11和乙醇是打底(ORC)循环的首选工作流体,从而使联合循环的效率最高。最后,给出了性能图,作为针对特定循环工况选择最佳工作流体的指南。

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