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Steel SIPS for residential building construction: Lessons from air leakage and thermography analysis of Australian houses

机译:用于住宅建筑的SIPS钢:澳大利亚房屋的空气泄漏和热成像分析的经验教训

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摘要

\ud\udStick-frame residential construction is renowned for being leaky. (SIPs) theoretically resolve the issues with air and thermal leakage, but such construction systems are new to the Australian housing market. The purpose of this study was to determine the extent to which a steel-skinned SIP construction product could resolve air leakage and thermal performance challenges in five climate zones across Australia in 2015. All houses used the same steel SIPs as the main construction element (walls and roof). Airtightness and thermography tests were conducted in each house in winter to identify air and thermal leakage paths. The results show that even first-time users of this product can produce well-sealed homes, but there is a need to address thermal bridging (because of the steel componentry) and to consider the house as a whole system (not just walls and roof). The results of the study raise questions about thermography test procedures and airtightness regulations for naturally ventilated homes in warm-temperature climates. Addressing these issues will assist in the diffusion of innovative construction products and methods to enhance the energy efficiency of housing.
机译:\ ud \ ud粘性框架住宅结构因漏水而闻名。 (SIPs)从理论上解决了空气和热泄漏的问题,但是这种建筑系统对澳大利亚住房市场来说是新的。这项研究的目的是确定2015年在澳大利亚五个气候区中使用钢皮SIP建筑产品可以解决空气泄漏和热性能方面的挑战。所有房屋均使用相同的钢SIP作为主要建筑元素(墙和屋顶)。冬季在每个房屋中进行了气密性和热成像测试,以确定空气和热泄漏路径。结果表明,即使是初次使用此产品的人也可以生产出密封良好的房屋,但是有必要解决热桥问题(由于钢结构),并要考虑房屋的整体系统(不仅仅是墙壁和屋顶) )。研究结果引起了有关在热温气候下自然通风房屋的热像仪测试程序和气密性法规的疑问。解决这些问题将有助于推广创新的建筑产品和方法,以提高房屋的能源效率。

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