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Thermal performance of novel frame-integrated unitised curtain wall

机译:新型框架一体化组合式幕墙的热性能

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Framing of unitized curtain walls is dimensioned to carry wind load without taking advantage of potential composite contribution of glass. Subsequently, it is unnecessarily deep, occupying valuable space, and protrudes to the inside, causing visual disruption. Moreover, it is generally made of high thermal conductivity metal alloys, contributing to substantial thermal transmission at joints. An innovative frame-integrated unitised curtain wall has been developed that, compared to conventional systems, reduces structural depth significantly, allows an inside flush finish and reduces thermal transmission at joints. The idea is to adhesively bond a Glass Fibre Reinforced Polymer (GFRP) frame to the edge of the Insulated Glass Unit (IGU), thereby achieving low thermal transmittance and composite structural behaviour. The frame is to fit within the glazing cavity depth. This paper provides a description of the proposed system and assesses its thermal transmittance and risk of condensation through comparative analytical and numerical thermal analysis with a conventional system taken as reference.
机译:组合式幕墙的框架尺寸可承受风荷载,而无需利用玻璃可能产生的复合作用。随后,它不必要地深了,占据了宝贵的空间,并突出到内部,导致视觉干扰。而且,它通常由高导热率的金属合金制成,有助于在接头处进行大量的热传递。与传统系统相比,已开发出一种创新的框架集成式单元式幕墙,与传统系统相比,该结构幕墙显着减小了结构深度,实现了内部齐平光洁度并减少了接头处的热传递。这个想法是将玻璃纤维增​​强聚合物(GFRP)框架粘合到绝缘玻璃单元(IGU)的边缘,从而实现低热透射率和复合结构性能。框架应安装在玻璃腔深度内。本文提供了对拟议系统的描述,并通过比较分析和数值热分析(以常规系统为参考)评估了该系统的热传输率和冷凝风险。

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