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Numerical Study of Effects of Wall's Insulation Thickness on Energy Performance for Different Climatic Regions of China

机译:墙体绝缘厚度对中国不同气候地区能源性能影响的数值研究

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Building energy consumption plays a significant role in total energy consumption in China. It is well-known that the insulation performance of the external walls of a building is a critical factor for energy consumption of air conditioning system. In this study, the effects of building external wall's insulation thickness on the heating and cooling loads of commercial buildings of five cities in China, namely Harbin, Xi'an, Shanghai, Kunming and Guangzhou, have been investigated numerically. Meanwhile, the wall's optimum insulation thicknesses of typical buildings in five cities are calculated by the life cycle cost analysis (LCCA) method. The results show that the increase of insulation thickness has a significant effect on the building heating load, inversely it exhibits a relatively small effect on the building cooling load. The analysis indicates that building energy savings are different from cities for given wall insulation and the same building conditions. For the investigated cities, Harbin achieves the largest building energy savings, and then follows the order of Xi'an, Shanghai, Kunming and Guangzhou. For the buildings in Guangzhou, the variation of energy savings is also insignificant as the insulation thickness increases. Using expanded polystyrene as insulation layer material, the optimum insulation layers of Harbin, Xi'an, Shanghai, Kunming and Guangzhou are founded to be 80mm, 60mm, 40mm, 40mm, and 20mm, respectively.
机译:建筑能源消耗在中国的总能耗中起着重要作用。众所周知,建筑物外壁的绝缘性能是空调系统能耗的关键因素。在这项研究中,在数值上调查了在中国五个城市的商业建筑物的加热和冷却负荷上建设外墙绝缘厚度的影响,即哈尔滨,西安,上海,昆明和广州。同时,通过生命周期成本分析(LCCA)方法计算五个城市中典型建筑物的墙壁最佳绝缘厚度。结果表明,绝缘厚度的增加对建筑加热负荷具有显着影响,反相它对建筑冷却负荷表现出相对较小的影响。该分析表明,建筑节能与给定壁绝缘和相同的建筑条件不同。对于调查的城市,哈尔滨达到最大的建筑节能,然后遵循西安,上海,昆明和广州的秩序。对于广州的建筑物,随着绝缘厚度的增加,节能的变化也是微不足道的。使用膨胀的聚苯乙烯作为绝缘层材料,哈尔滨,西安,上海,昆明和广州最佳绝缘层成立于80毫米,60毫米,40mm,40mm和20mm。

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