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Experimental study on the performance of a novel in-house heat pump water heater with freezing latent heat evaporator and assisted by domestic drain water

机译:新型家用冷冻水潜热蒸发器的室内热泵热水器性能试验研究

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摘要

The temperature of domestic drain water is relatively high, but its flux is sometimes insufficient as a heating source. Thus, the conventional wastewater source heat pump water heater is incapable of meeting user heating demand given the limited sensible heat temperature difference in many situations. To address this problem, a novel in house heat pump water heater with a freezing latent heat evaporator and assisted by domestic drain water was proposed. A prototype of the system was first constructed to determine the performance of the system. An experiment was then conducted, in which a parallel helical coil tube evaporator was designed and developed to extract freezing latent heat from domestic drain water. Experimental data was obtained in different experimental conditions. Results of the investigation show that the heat pump water heater with a freezing latent evaporator recovers 3.4 times more energy than the conventional wastewater source heat pump water heater, and saves 60% energy compared with the traditional electric water heater. Furthermore, an interesting result is that the heat transfer coefficient increased significantly at the moment the wastewater was just frozen. This paper provides a reference for the wastewater source heat pump water heater to extract freezing latent heat from domestic drain water.
机译:生活污水的温度较高,但有时其通量不足以作为热源。因此,鉴于在许多情况下显热温差有限,传统的废水源热泵热水器无法满足用户的供热需求。为了解决这个问题,提出了一种新型的带有冷冻潜热蒸发器并借助生活排水的室内热泵热水器。首先构建系统原型以确定系统性能。然后进行了一项实验,在该实验中,设计并开发了平行螺旋盘管蒸发器,以从生活污水中提取冷冻潜热。在不同的实验条件下获得实验数据。调查结果表明,带冷冻潜能蒸发器的热泵热水器比传统的废水源热泵热水器回收的能量多3.4倍,比传统的电热水器节省60%的能量。此外,有趣的结果是,在废水刚冻结时,传热系数显着增加。本文为废水源热泵热水器从生活污水中提取冷冻潜热提供参考。

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