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首页> 外文期刊>International Journal of Refrigeration >Multi-objective optimization of a residential air source heat pump with small-diameter tubes using genetic algorithms
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Multi-objective optimization of a residential air source heat pump with small-diameter tubes using genetic algorithms

机译:遗传算法的小口径住宅空气源热泵多目标优化

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摘要

Heat exchangers are key components in refrigeration and air conditioning systems. Significant research is being devoted to reduce the size, weight and cost of the heat exchangers while maintaining the same, if not better, system performance. This helps reduce the system refrigerant charge and negative environmental impacts. This work presents an optimization of an air source heat pump (ASHP) using multi-objective genetic algorithms, specifically focusing on the use of small diameter tubes in the heat exchangers. The objective is to minimize the heat exchangers' cost while maximizing the system performance. The goal is to find the potential material savings and cost reduction when using tube diameters between 3 mm and 5 mm in the heat exchangers. We show and discuss the results for R-410A, and the lower GWP R-32. The system utilizing the improved heat exchanger designs showed a cost reduction of 44%, and 47% in comparison to the baseline R-410A, and R-32 systems, respectively. Improvements in the system's COP are around 17%, and 15% for R-410A, and R-32, respectively. The system charge can be decreased to 33% for both refrigerants. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:热交换器是制冷和空调系统中的关键组件。正在致力于减少热交换器的尺寸,重量和成本,同时保持相同甚至更好的系统性能的重大研究。这有助于减少系统制冷剂充注量以及对环境的负面影响。这项工作提出了一种使用多目标遗传算法的空气源热泵(ASHP)的优化方法,特别着重于在热交换器中使用小直径管。目的是在使系统性能最大化的同时,将热交换器的成本降至最低。目的是发现在热交换器中使用3 mm至5 mm直径的管时,可以节省材料并降低成本。我们展示并讨论了R-410A和较低GWP R-32的结果。与基准R-410A和R-32系统相比,利用改进的热交换器设计的系统分别降低了44%和47%的成本。 R-410A和R-32的系统COP分别提高了约17%和15%。两种制冷剂的系统充注量都可以降低到33%。 (C)2016 Elsevier Ltd和IIR。版权所有。

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