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Numerical analysis on performance enhancement of a CO2 heat pump water heating system by extracting tepid water

机译:抽出温水提高二氧化碳热泵热水系统性能的数值分析

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Water heating systems each of which is composed of an air-to-water heat pump using CO2 as a natural refrigerant and a hot water storage tank have been developed, and are expected to contribute to energy saving in residential hot water supply. However, the area of tepid water in the storage tank expands because of heat conduction during long time storage, which leads to a degradation of the system performance. One of the ways to reduce the area of tepid water and enhance the system performance is to extract tepid water from the side of the storage tank. In this paper, the performance enhancement of a CO2 heat pump water heating system with such a revised storage tank is analyzed by numerical simulation. The simulation model developed previously for a conventional system is extended by modifying the model for the storage tank and verifying its validity through experiments. Through a performance analysis using a standardized hot water demand, it is clarified how system performance values of the revised system are enhanced, and especially how the trade-off relationship between the system efficiency and the volume of unused hot water is improved, in comparison with those of the conventional system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经开发出了各自由以CO2为天然制冷剂的空气-水热泵和热水储罐组成的热水系统,有望在住宅热水供应中起到节能作用。然而,由于长时间存储期间的热传导,储水箱中的温水面积扩大,这导致系统性能下降。减少温水面积并增强系统性能的方法之一是从储水箱的侧面提取温水。本文通过数值模拟分析了采用这种改进的储罐的CO2热泵热水系统的性能增强。通过修改储罐的模型并通过实验验证其有效性,扩展了先前为常规系统开发的仿真模型。通过使用标准化热水需求进行性能分析,弄清了改进后系统的系统性能值如何提高,尤其是与之相比,系统效率与未使用热水量之间的折衷关系如何得到改善。那些常规系统。 (C)2015 Elsevier Ltd.保留所有权利。

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