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Air-water dual-source heat pump system with new composite evaporator

机译:带新型复合蒸发器的空气 - 水双源热泵系统

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摘要

Several renewable energy sources based on composite heat pump technology, which has been gaining increasing attention, are combined for application in building areas to obtain high operation efficiency and maximize energy saving. In this study, two kinds of air-water dual-source composite evaporators, namely, evA and evB (a new type), are proposed and air-water dual-source composite heat pump (AWSHP) systems with evA and evB are established. The AWSHP-evA and AWSHP-evB systems can be run in different modes, including air source heating mode (ASHM), water source heating mode (WSHM), and air-water source heating mode (AWSHM). The AWSHP-evB system has several advantages over the AWSHP-evA system, such as better coefficient of performance (COP), wider ambient temperature range for the efficient operation of AWSHM, and several different defrosting modes. A comparison of the experimental results obtained under different test conditions shows that COPWSHM of AWSHP-evB can be enhanced by 6.3% to 9.8%, whereas COPASHM of AWSHP-evA and AWSHP-evB are identical. Meanwhile, COPAWSHM of AWSHP-evB system can be enhanced by 8.8% to 13.3% in test conditions when hot water temperature is increased from 18 +/- 1.0 degrees C to 51 +/- 1.0 degrees C. (C) 2017 Published by Elsevier Ltd.
机译:几种基于复合热泵技术的可再生能源,该来源在增加越来越长的关注,在建筑区域的应用中,以获得高运行效率并最大限度地提高节能。在本研究中,建议,建立了两种空气 - 水双流源复合蒸发器,即EVA和EVB(一种新型),并建立了带EVA和EVB的空气双烃类复合热泵(AWSHP)系统。 AWSHP-EVA和AWSHP-EVB系统可以以不同的方式运行,包括空气源加热模式(ASHM),水源加热模式(WSHM)和空气水源加热模式(AWSHM)。 AWSHP-EVB系统对AWSHP-EVA系统具有多大优点,例如更好的性能系数(COP),更广泛的环境温度范围,以获得AWSHM的有效操作,以及几种不同的除霜模式。在不同的测试条件下获得的实验结果的比较表明,AWSHP-EVB的COPWSHM可以提高6.3%至9.8%,而AWSHP-EVA和AWSHP-EVB的COPASHM是相同的。同时,当热水温度从elestvier发布的18 +/- 1.0℃下增加,AWSHP-EVB系统的COPAWSHM可以在测试条件下提高8.8%至13.3%。(C)2017年有限公司

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