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Study of thermal performance of air-source heat-pump heating for suburban residential buildings in Beijing

机译:北京郊区住宅楼宇空气源热泵加热热性能研究

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摘要

In recent years, severe and persistent winter haze has appeared more frequently due to coal-combustion heating for residential buildings in the winter in northern China. To solve the problem, the Chinese government proposes to replace coal-combustion heating with electricity-driven air-source heat-pump heating. In this article, the performance of an air-source heat pump was studied for suburban residential building heating in the winter in Beijing, China. The heating load of a typical suburban residential building was evaluated using a building energy simulation program according to real weather data. The performance of the heat pump was then evaluated, and the electrical load for such building heating was analyzed based on the hourly ambient temperature and heating load of the studied building. Results showed that the highest electrical load occurred between 3:00 and 7:00 and the lowest electrical load appeared between 13:00 and 15:00. These results are helpful in guiding electrical load transfer in the power grid. Compared with coal-combustion heating, heat-pump heating could save 59% of annual operating cost and reduce the emission of CO2, SO2, and NOx by 54%, 78%, and 74%, respectively. This study is significant for wide applications of air-source heat-pump heating for suburban residential buildings in cities with weather like Beijing, China.
机译:近年来,由于中国北方冬季冬季住宅建筑物煤炭燃烧加热,严重和持久的冬季阴霾似乎更频繁地出现。为了解决问题,中国政府提出用电力驱动的空气源热泵加热取代煤燃烧加热。在本文中,研究了空气源热泵的性能,在冬季北京,中国冬季进行了郊区住宅建筑暖气。使用根据真实天气数据的建筑能量模拟程序评估典型郊区住宅建筑的加热负荷。然后评估热泵的性能,基于研究建筑物的小时环境温度和加热负荷分析这种建筑加热的电负荷。结果表明,在3:00至7:00之间发生的最高电负载,最低电负载在13:00至15:00之间出现。这些结果有助于引导电网中的电负载传输。与煤燃加热相比,热泵加热可以节省59%的年度运营成本,并将二氧化碳排放量减少54%,78%和74%。该研究对于广泛的空气源热泵加热适用于北京市北京天气的郊区住宅建筑物的广泛应用。

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