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Dynamic modeling of potentially conflicting energy reduction strategies for residential structures in semi-arid climates

机译:半干旱气候下住宅结构潜在冲突的节能策略的动态建模

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摘要

Globally, residential energy consumption continues to rise due to a variety of trends such as increasing access to modern appliances, overall population growth, and the overall increase of electricity distribution. Currently, residential energy consumption accounts for approximately one-fifth of total U.S. energy consumption. This research analyzes the effectiveness of a range of energy-saving measures for residential houses in semi-arid climates. These energy-saving measures include: structural insulated panels (SIP) for exterior wall construction, daylight control, increased window area, efficient window glass suitable for the local weather, and several combinations of these. Our model determined that energy consumption is reduced by up to 6.1% when multiple energy savings technologies are combined. In addition, pre-construction technologies (structural insulated panels (SIPs), daylight control, and increased window area) provide roughly 4 times the energy savings when compared to post-construction technologies (window blinds and efficient window glass). The model also illuminated the importance variations in local climate and building configuration; highlighting the site-specific nature of this type of energy consumption quantification for policy and building code considerations.
机译:在全球范围内,由于各种趋势,例如增加对现代家用电器的使用,总体人口增长以及配电的总体增长,住宅能耗继续上升。当前,住宅能耗约占美国总能耗的五分之一。这项研究分析了半干旱气候下住宅的一系列节能措施的有效性。这些节能措施包括:用于外墙建筑的结构隔热板(SIP),日光控制,增加的窗户面积,适合当地天气的高效窗户玻璃,以及这些的几种组合。我们的模型确定,将多种节能技术相结合,可将能耗降低多达6.1%。此外,与后施工技术(百叶窗和高效的窗户玻璃)相比,前施工技术(结构隔热板(SIP),日光控制和增加的窗户面积)可节能约4倍。该模型还阐明了当地气候和建筑结构的重要性变化。出于政策和建筑法规考虑,强调了这种类型的能耗量化的特定地点性质。

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