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PARAMETRIC OPTIMIZATION OF ZEOTROPIC MIXTURES USED IN LOW-TEMPERATURE ORGANIC RANKINE CYCLE FOR POWER GENERATION

机译:用于低温有机RANKINE循环发电的均相混合物的参数优化

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In the design and optimization of the ORC system, the selection of working fluid is one of the most important factors that should be considered. In this work, considering different heat sources with their temperatures ranging from 80 to 120 °C, 8 different zeotropic mixtures were, proposed and their thermodynamic and economic performance for two types of traditional ORC systems (i.e. basic organic Rankine cycle, BORC and organic Rankine cycle with internal heat exchanger, IHORC) were investigated. Firstly, economic analysis were performed for both systems; Secondly, genetic algorithm (GA) was then introduced to determine the optimal fractions and other operation parameters for zeotropic mixtures under different working conditions and systems, the algorithm implementation process was described. Thirdly, the optimization studies were performed by using annual cash flow as the objective function. The optimal thermodynamic performance of different zeotropic mixtures and their components were both calculated and compared. For the different heat sources temperatures, the optimal zeotropic mixtures and their optimal fraction were recommended according to the calculated results.
机译:在ORC系统的设计和优化中,工作流体的选择是应考虑的最重要因素之一。在这项工作中,考虑到不同的热源,其温度范围为80至120°C,提出了8种不同的横血栓混合物,以及两种类型的传统兽人系统的热力学和经济性能(即基本有机朗肯循环,硼管和有机兰氏虫研究了内部热交换器的循环,IHORC)进行了研究。首先,对两种系统进行经济分析;其次,然后引入遗传算法(Ga)以确定不同工作条件和系统下的鸟类混合物的最佳分数和其他操作参数,描述了算法实现过程。第三,通过使用年度现金流作为目标函数进行优化研究。不同的横发混合物的最佳热力学性能及其组分均计算并进行比较。对于不同的热源温度,根据计算结果建议使用最佳的横渗混合物及其最佳分数。

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