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Effects of ORC Working Fluids on Combined Cycle Integrated with SOFC and ORC for Stationary Power Generation

机译:ORC工作流体对结合SOFC和ORC进行固定发电的联合循环的影响

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The purpose of this study is to explore the effects of working fluid on conventional combined cycle integrated with pressurized solid oxide fuel cell (SOFC) and waste heat recovery organic Rankine cycle (ORC) for stationary utility power generation. The mathematical model of a natural gas fueled design configuration is developed in Matlab and Simulink and simulated with 14 working fluids. The effluent gases of SOFC undergo combustion in the combustion chamber and it is utilized in the gas turbine, steam turbine cycle and ORC. The model is compared with those found in literature and the parametric studies of temperature, flow rate, fuel utilization factor and exhaust gas on the system efficiency are examined. Results revealed that working fluids show a closely related behavior in efficiency at low pressure ratio and high flow fraction, fuel utilization, and temperature. R-123 was found to perform the best among 14 working fluids studied, yielding a system energy efficiency of 70% in the combined cycle integrated with SOFC and ORC.
机译:这项研究的目的是探索工作流体对常规联合循环的影响,该联合循环与加压固体氧化物燃料电池(SOFC)和废热回收有机朗肯循环(ORC)集成在一起,用于固定式公用事业发电。在Matlab和Simulink中开发了以天然气为燃料的设计配置的数学模型,并用14种工作流体进行了仿真。 SOFC的废气在燃烧室中燃烧,并用于燃气轮机,蒸汽轮机循环和ORC。该模型与文献中的模型进行了比较,并检查了温度,流量,燃料利用率和废气对系统效率的参数研究。结果表明,工作流体在低压比和高流量比的效率,燃料利用率和温度方面显示出密切相关的行为。发现R-123在所研究的14种工作流体中表现最佳,在与SOFC和ORC集成的联合循环中,系统能效达到70%。

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