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首页> 外文期刊>Energy Conversion & Management >Performance evaluation and working fluid selection of combined heat pump and power generation system (HP-PGs) using multi-objective optimization
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Performance evaluation and working fluid selection of combined heat pump and power generation system (HP-PGs) using multi-objective optimization

机译:使用多目标优化的绩效评估和工作流体选择(HP-PGS)组合热泵和发电系统(HP-PGS)

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摘要

This study proposes a novel heat pump and power generation integrated system (HP-PGs) that uses a scroll machine as both the compressor and expander. To find the appropriate working fluid for the HP-PGs system, eight kinds of working fluids are selected for performance comparisons. A mathematical model of HP-PGs is established to analyze the energy, exergy, economy and environment performance. Results of theoretical calculation show that the optimal system coefficient of performance (COP) and thermal efficiency are achieved with R141b. R1233zd(E) is the optimal environmental-friendly working fluid considering the climate change and ozone depletion. Additionally, the capital investment cost of the HP-PGs varies oppositely to the payback period. In order to identify the minimum capital investment cost and payback period of HP-PGs, the operating condition of each of the eight working fluids is optimized by the multi-objective optimization (MOP). TOPSIS (Technique for Order Preference Similarity to Ideal Solution) decision-making method is used to search for the optimal results on the Pareto frontier. It is concluded that the payback period and capital investment cost from the MOP results are better than those from the single objective optimization (SOP).
机译:本研究提出了一种新型热泵和发电集成系统(HP-PGS),其使用滚动机作为压缩机和扩展器。为找到HP-PGS系统的适当工作流体,选择八种工作流体以进行性能比较。建立了HP-PGS的数学模型,分析了能源,走势,经济和环境绩效。理论计算结果表明,用R141B实现了性能(COP)和热效率的最佳系统系数。 R1233ZD(e)是考虑气候变化和臭氧消耗的最佳环境友好工作液。此外,HP-PGS的资本投资成本因投资回收期而异。为了确定HP-PG的最低资本投资成本和回收期,通过多目标优化(MOP)优化了八个工作流体中的每一个的操作条件。 TOPSIS(针对理想解决方案的订单偏好相似性的技术)决策方法用于搜索帕累托前沿的最佳结果。结论是,回收期和资本投资成本来自拖把业绩的优于单一客观优化(SOP)。

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