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首页> 外文期刊>Journal of Architectural Engineering >Heat Transfer in Facade Systems and Energy Use: Comparative Study of Different Exterior Wall Types
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Heat Transfer in Facade Systems and Energy Use: Comparative Study of Different Exterior Wall Types

机译:幕墙系统中的热传递和能源利用:不同外墙类型的比较研究

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This research article discusses methods for designing high-performance facades with a focus on minimizing heat transfer and improving energy usage. The facade is one of the most significant contributors to the energy budget and comfort parameters of any building. Control of physical environmental factors, including methods for minimizing heat transfer, must be considered during the design process. High-performance facades need to block adverse external environmental effects and maintain internal comfort conditions with minimal energy consumption. The research was conducted by initially modelling conductive heat transfer in four different exterior wall types, including a brick cavity wall, a rain-screen facade with terracotta cladding, a rain-screen facade with glass fiber-reinforced concrete cladding, and a curtain wall, to compare their relative thermal performances. Then, heat-transfer modelling was conducted for three thermally improved systems, including curtain walls with thermally broken framing, rain-screen facades with thermal spacers, and rain-screen facades with thermal isolators. Effects on energy use were also investigated; energy usage was modeled for an office space enclosed with the analyzed facade types for all U.S. climate zones. The results show the performance of analyzed exterior wall types in terms of thermal performance and energy usage.
机译:这篇研究文章讨论了设计高性能外墙的方法,着重于最大程度地减少热传递并提高能源利用率。外墙是任何建筑物的能源预算和舒适度参数的最重要贡献之一。在设计过程中必须考虑对物理环境因素的控制,包括使热传递最小化的方法。高性能外墙需要阻止不利的外部环境影响,并以最小的能耗维持内部舒适条件。这项研究是通过对四种不同外墙类型的热传导进行初步建模而完成的,其中包括砖墙型腔,带兵马俑覆层的防雨外墙,带玻璃纤维混凝土覆层的防雨外墙以及幕墙,比较它们的相对热性能。然后,对三个经过热改进的系统进行了热传递建模,包括具有热破裂框架的幕墙,带隔热垫的防雨幕墙和带热隔离器的防雨幕墙。还研究了对能源使用的影响;针对所有美国气候区的办公室空间建模,其中包含分析后的立面类型。结果显示了根据热性能和能源使用情况分析的外墙类型的性能。

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