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Comparative Analysis of Energy Performance for Residential Wall Systems with Conventional and Innovative Insulation Materials: A Case Study

机译:常规和创新绝缘材料的住宅墙体系统能源性能的比较分析:一个案例研究

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摘要

This study was focused on the simulation of energy performance for residential buildings incorporating different types of insulation materials. The energy consumption of residential buildings in the U.S. plays a significant role in the total annual energy consumption, and using insulation materials of higher performances is one of the most effective ways to reduce the building energy consumption. In this study, the building energy simulation was performed in BEopt for a typical residential house in the U.S. with several different types of insulation materials. The results show that adding insulation materials can significantly improve the building energy performance. The polyisocyanurate performed the best among the conventional insulation materials and had an annualized source energy saving of 37% in Pittsburgh. Vacuum-Insulated Panels had the best performance among all types of materials discussed in this study and showed annualized source energy of 41% in Pittsburgh. Phase Change Material was found to be the most effective way to particularly reduce the cooling energy use.
机译:这项研究的重点是模拟结合了不同类型保温材料的住宅建筑的能源性能。在美国,住宅建筑的能耗在年度总能耗中扮演着重要角色,使用性能更高的隔热材料是降低建筑能耗的最有效方法之一。在这项研究中,建筑节能模拟是在BEopt中针对美国的一种典型住宅用几种不同类型的绝缘材料进行的。结果表明,添加保温材料可以显着改善建筑的节能性能。聚异氰脲酸酯在常规绝缘材料中表现最好,在匹兹堡的年能源节约量为37%。在本研究中讨论的所有类型的材料中,真空绝热板均具有最佳性能,并且显示匹兹堡的年源能为41%。发现相变材料是特别减少冷却能源使用的最有效方法。

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