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首页> 外文期刊>Open Journal of Energy Efficiency >Analysis of Thermal Behavior of Materials in the Building Envelope Using Building Information Modeling (BIM)—A Case Study Approach
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Analysis of Thermal Behavior of Materials in the Building Envelope Using Building Information Modeling (BIM)—A Case Study Approach

机译:使用建筑信息模型(BIM)分析建筑围护结构中材料的热行为-案例研究方法

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Building envelope is a fence that controls heat exchange between interior and exterior and plays an essential role in providing thermal comfort conditions of residents. In recent years, due to the necessity of conserving energy and also preventing increased environmental pollution, the importance of sustainable construction has been doubled. Checking the problems of thermal behavior of the building envelope materials, and what influences in the heating and cooling loads exerted and energy consumption of buildings, are the questions that this research seeks to answer. In this regard, building information modelling analysis (BIM) has worthy contribution in the completion process of sustainable design; thus using software Design Builder, it is paid attention to simulation of the thermal behavior of two types of defined materials for the building envelope that was designed as a Research Institute of Renewable Energy of Yazd University. For Type 1 materials, two layers of brick have been selected, and for Type 2 a thermal insulation layer also added it. Results of the analysis showed that the use of materials Type 2 in the cooling load %4.8 and in the thermal load %62.5 reduction can be achieved which means reducing the load on active system and thus reducing the initial cost of building. Also reduction in annual energy consumption by almost %2.4 for cooling and %62.9 for heating buildings have been achieved, which makes saving non-renewable energy consumption, and consequently reducing environmental pollution as well as reducing current costs will be established.
机译:建筑围护结构是控制内部和外部之间热交换的围栏,并且在提供居民的热舒适条件方面起着至关重要的作用。近年来,由于节约能源和防止环境污染的增加,可持续建筑的重要性增加了一倍。检查建筑物围护结构材料的热行为问题,以及对建筑物的加热和冷却负荷以及建筑物的能耗有什么影响,是本研究要解决的问题。在这方面,建筑信息模型分析(BIM)在可持续设计的完成过程中值得做出贡献;因此,使用Design Builder软件时,要注意模拟由Yazd大学的可再生能源研究所设计的两种用于建筑围护结构的定义材料的热行为。对于类型1的材料,选择了两层砖,对于类型2的材料,还添加了隔热层。分析结果表明,在冷却负荷%4.8和热负荷%62.5中使用类型2的材料都可以减少,这意味着减少了活动系统上的负荷,从而降低了建筑的初始成本。此外,还实现了将制冷和建筑供暖的年度能源消耗降低了约2.4%和62.9%,这将节省不可再生的能源消耗,从而减少环境污染并降低当前成本。

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