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Study on Thermal Behavior of an Experimental Low-energy Building in the Hot Summer and Cold Winter Zone of China

机译:夏热冬冷地区实验性低能耗建筑的热行为研究

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This paper is based on a study of the expansion part of the architecture department building in Huazhong University of Science and Technology (hereinafter referred to as the experimental building). Thermal environment parameters, building energy consumption and other aspects of the experimental building are monitored. The results show that indoor air temperature can be improved to about 14°C in winter and 28°C in summer by the thermal regulation system, which was limited by the underground soil temperature in Wuhan. Because of the function of the under floor air distribution system, an uneven air temperature distribution is formed in the experimental building. The building energy consumption is 10.7kWh/(m2*a), much lower than the ordinary office buildings in Wuhan. In general, the experimental building can achieve a certain indoor thermal environment with low energy consumption, meeting the requirements of buildings with no-strict thermal comfort demands in the rural areas of hot summer and cold winter zone of China. A heat pump or auxiliary heating/cooling source should be added in the system to achieve a more comfortable indoor environment.
机译:本文基于对华中科技大学建筑系大楼(以下简称实验大楼)扩建部分的研究。监测热环境参数,建筑物能耗以及实验建筑物的其他方面。结果表明,通过武汉市地下土壤温度的热调节系统,室内空气温度在冬季可提高到约14℃,在夏季可提高到约28℃。由于地板下空气分配系统的功能,在实验建筑物中形成了不均匀的空气温度分布。建筑能耗为10.7kWh /(m2 * a),远低于武汉的普通办公楼。一般而言,实验建筑可以达到一定的低能耗室内热环境,满足中国炎热夏季和寒冷冬季农村地区对热舒适性要求不严格的建筑要求。系统中应添加热泵或辅助加热/冷却源,以实现更舒适的室内环境。

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