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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation of the optimal heat rejection pressure for a transcritical CO_2 heat pump water heater
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Experimental investigation of the optimal heat rejection pressure for a transcritical CO_2 heat pump water heater

机译:跨临界CO_2热泵热水器最佳排热压力的实验研究

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The system performance of a transcritical CO_2 heat pump is significantly influenced by the heat rejection pressure due to the nature of the transcritical refrigeration cycle. It has received wide attention in the scientific community. In this article, an experimental investigation of the optimal heat rejection pressure for a transcritical CO_2 heat pump water heater is presented. It is found that the optimal heat rejection pressure varies with gas-cooler outlet refrigeration temperature at different ambient temperatures. The further experimental results show that the Coefficient of Performance (COP) at the optimal heat rejection pressure decreases substantially with increasing gas-cooler outlet refrigeration temperature in a range from 25 to 45℃. Based on the experimental data, a simple correlation of the optimal heat rejection pressure in terms of gas-cooler outlet refrigeration temperature is obtained. The analysis shows that the deviation of the correlation is within ±5%, and the predicted COP at the optimal heat rejection pressure is within 6%.
机译:由于跨临界制冷循环的性质,跨临界CO_2热泵的系统性能受到排热压力的显着影响。它在科学界引起了广泛的关注。在本文中,对跨临界CO_2热泵热水器的最佳排热压力进行了实验研究。发现在不同的环境温度下,最佳的排热压力会随着气体冷却器出口制冷温度的变化而变化。进一步的实验结果表明,在最佳排热压力下,性能系数(COP)随气体冷却器出口制冷温度在25至45℃范围内的升高而大大降低。根据实验数据,可以得出最佳排热压力与气体冷却器出口制冷温度的简单关系。分析表明,相关性的偏差在±5%之内,并且在最佳排热压力下的预测COP在6%之内。

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