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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermo-economic analysis and optimization selection of ORC system configurations for low temperature binary-cycle geothermal plant
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Thermo-economic analysis and optimization selection of ORC system configurations for low temperature binary-cycle geothermal plant

机译:低温二进制循环地热厂兽人系统配置的热经济分析与优化选择

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摘要

Multi-objective programming is used to analyze the performance of different organic Rankine cycle (ORC) plant layouts with different working fluids for low temperature binary-cycle geothermal plant. The studied results show that for the considered ORC plant layouts, the optimal overall performance indices increase with the geothermal temperature increasing. For a specific working fluid, the optimal ORC system for overall performance always remains unchanged despite the increase in the geothermal temperature. The optimal schemes of ORC systems vary with the performance indices of ORC system. The optimal scheme for comprehensive performance index is simple cycle with R123 when the geothermal temperature increases from 80 degrees C to 95 degrees C. The optimal scheme for thermal efficiency is regenerative cycle with R123, while the optimal scheme for capital cost is superheated cycle with R123. For the work output and exergy efficiency, the optimal scheme is superheated cycle with R152a when the geothermal temperature varies from 80 degrees C to 85 degrees C, while the scheme of superheated cycle with R134a is better for work output and exergy efficiency when the geothermal temperature is greater than 90 degrees C. This study provides useful references for the researchers selecting the optimal configuration of ORC system for low temperature binary-cycle geothermal plant. (C) 2017 Elsevier Ltd. All rights reserved.
机译:多目标编程用于分析不同有机兰汀循环(ORC)植物布局与低温二进制循环地热植物的不同工作流体的性能。研究结果表明,对于考虑的兽人植物布局,最佳的整体性能指标随着地热温度的增加而增加。对于特定的工作流体,尽管地热温度增加,但是对于整体性能的最佳兽人系统始终保持不变。 ORC系统的最佳方案因ORC系统的性能指标而异。当地热温度从80℃升高到95℃时,综合性能指标的最佳方案是简单的循环。热效率的最佳方案是具有R123的再生循环,而用于资本成本的最佳方案与R123过热循环。 。对于工作输出和高效率,当地热温度从80摄氏度变化至85摄氏度时,最佳方案是具有R152a的过热循环,而具有R134a的过热循环方案对于地热温度的工作输出和高效效率更好大于90度C.本研究为研究人员提供了选择的研究人员,为低温二进制循环地热植物选择最佳配置的研究人员提供了有用的参考。 (c)2017 Elsevier Ltd.保留所有权利。

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