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Performance comparison of heat pumps using low global warming potential refrigerants with optimized heat exchanger designs

机译:利用优化热交换器设计的低全球变暖潜在制冷剂的热泵性能比较

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摘要

The objective of this study is to analyze the performance improvement of heat pumps with low global warming potential (GWP) refrigerants over conventional R-410A heat pumps by optimizing the heat exchanger designs. A simulation model is developed for heat pumps with low GWP refrigerants and validated by comparing the predicted and measured data for R-410A and R-32. Based on the developed model, the diameter of the tube and the number of paths in the indoor and outdoor heat exchangers are optimized for each alternative refrigerant using the genetic algorithm. The performances of the optimized heat pumps with the low GWP refrigerants are compared with that of the R-410A heat pump to provide a selection guide for alternative refrigerants. The average performance improvements of the heat pumps with optimized heat exchanger designs were estimated to be 6.0%, 3.4%, and 2.4% for R-32, DR-5, and L-41a, respectively, compared with that of the baseline system. Thus, the R-32 heat pump delivered the highest performance improvement with the optimized heat exchanger designs.
机译:本研究的目的是通过优化热交换器设计来分析传统R-410A热泵的低全球变暖电位(GWP)制冷剂的热泵的性能改善。为具有低GWP制冷剂的热泵开发了一种模拟模型,并通过比较R-410A和R-32的预测和测量数据来验证。基于开发的模型,使用遗传算法针对每个替代制冷剂进行了针对每个替代制冷剂的替代制冷剂的管道的直径和室外和室外热交换器的数量。利用低GWP制冷剂的优化热泵的性能与R-410A热泵的性能进行比较,以提供用于替代制冷剂的选择指导。与基线系统相比,R-32,DR-5和L-41A分别估计具有优化热交换器设计的热泵的平均性能改进估计为6.0%,3.4%和2.4%。因此,R-32热泵通过优化的热交换器设计提供了最高的性能改进。

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