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The collocation method of supplementary heat source of air-source heat pump system for space heating based on the MEBPT calculation

机译:基于MEBTP计算的空气源热泵系统补充热源的搭配方法

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As the frequent fog weather and air pollution occurred in China in the recent years. The extensive investigations and applications of clean energy have been carried out to replace the scattered coal burning and meet the heating demand in Cold region of China. To deal with the air pollution problem, several governmental mitigation measures are strongly enforced, including the replacement of scattered coal by air-source hear pump for space heating in rural areas of China. The collocation of supplementary heat source for the air-source heat pump is more a design issue as well as an economical issue. This paper introduced the calculation method of the most economical balance point temperature (MEBPT) to confirm the collocation of supplementary heat source for air-source heat pump with based on the life cycle cost (LCC) theory and Bin method. The compound system including air-source heat pump and electrical auxiliary heater was analyzed. The proper balance point is much helpful to determine the capacity of the air-source heat pump and the supplementary heat source in the compound system and provide references for the design of space heating system.
机译:由于近年来,随着频繁的雾气和空气污染发生。已经进行了广泛的调查和清洁能源的应用,以取代散射的煤炭燃烧并满足中国寒冷地区的供暖需求。要处理空气污染问题,强制执行了几项政府缓解措施,包括在中国农村地区供空气源听力泵更换散射煤。用于空气源热泵的补充热源的搭配更像是设计问题以及经济问题。本文介绍了最经济的平衡点温度(MEBPT)的计算方法,以确认基于生命周期成本(LCC)理论和BIN方法的空气源热泵补充热源的搭配。分析了包括空气源热泵和电辅助加热器的复合系统。适当的平衡点对于确定复合系统中的空气源热泵和补充热源的容量很有用,并为空间加热系统的设计提供参考。

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