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A multi-criteria approach for the optimal selection of working fluid and design parameters in Organic Rankine Cycle systems

机译:在有机朗肯循环系统中优化工作流体和设计参数的多准则方法

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The selection of the cycle configuration, working fluid and operating parameters is crucial for the economic profitability of Organic Rankine Cycle systems using low to medium temperature heat sources. The aim of this paper is to show a method that improves this selection taking into account several criteria at a time: an original thermodynamic optimization procedure of the system configuration and design parameters which explores all possible configurations, the design options around the optimum values of the objective function, an economic modeling technique validated on real cost data, and the consideration of the off-design behavior. The method is applied to comparatively assess the performance of two working fluids, isobutane and R134a, in the temperature interval between 130 and 180℃. The results show that the optimal cycle configuration is in most cases subcritical for isobutane and supercritical recuperated for R134a. The maximum power output of R134a is higher than isobutane for all the temperatures considered. The analysis of the objective function around the optimum shows the extent of the best range of turbine inlet pressures and enthalpies. These results highlight alternative design conditions to those maximizing the power output which might be preferred for technical and economic reasons.
机译:循环配置,工作流体和操作参数的选择对于使用低温至中温热源的有机朗肯循环系统的经济收益至关重要。本文的目的是展示一种同时考虑多个标准的改进选择的方法:系统配置和设计参数的原始热力学优化程序,探索所有可能的配置,围绕系统最佳值的设计选项。目标函数,在实际成本数据上验证的经济建模技术以及对非设计行为的考虑。该方法用于比较评估两种工作流体(异丁烷和R134a)在130至180℃的温度区间内的性能。结果表明,最佳循环配置在大多数情况下对异丁烷是亚临界的,对于R134a则是超临界的。对于所有考虑的温度,R134a的最大输出功率都高于异丁烷。围绕最佳值进行的目标函数分析显示了涡轮机入口压力和焓的最佳范围。这些结果突出显示了替代设计条件,而不是那些出于技术和经济原因而希望最大化功率输出的条件。

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