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Energy evaluation of an horizontal open joint ventilated facade

机译:水平开缝通风幕墙的能源评估

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摘要

The term "open-joint ventilated facades" refers to a building system in which an external layer of slabs or tiles (metallic, ceramic, stone or composite) is hanged by means of a metallic-frame structure to the exterior face of the brick wall, creating an air cavity between wall and slabs. The arrangement of slabs is such that it forms open gaps between them, allowing the surrounding air to enter and leave the cavity all along the facade. In addition to aesthetic and constructive reasons, the main interest of open joint ventilated facades is their ability to reduce cooling loads. This is done by the buoyancy effect created by solar radiation inside the ventilated cavity. This paper focuses on the energy performance of a typical open joint ventilated facade, comparing its temperatures and heat transfer fluxes with those of a conventional sealed air cavity facade. The thermal and fluid-dynamic behaviour of both designs have been analysed with CFD techniques and the results of the simulations conclude that open-joint ventilated facades can help to achieve substantial energy savings in climates with hot summers and mild winters.
机译:术语“开放式通风外墙”是指一种建筑系统,其中,通过金属框架结构将板或瓷砖(金属,陶瓷,石材或复合材料)的外层悬挂于砖墙的外表面,在墙壁和楼板之间形成气腔。平板的排列应使其在它们之间形成开放的间隙,从而使周围的空气沿立面进入和离开空腔。除了美学和结构上的原因外,开放式通风墙的主要兴趣在于降低冷却负荷的能力。这是通过通风腔内太阳辐射产生的浮力效应来完成的。本文将重点放在典型的开放式通风通风外墙的能量性能上,将其温度和传热通量与传统的密封气孔外墙进行比较。两种设计的热和流体动力学行为均已通过CFD技术进行了分析,仿真结果得出结论,在夏季炎热和冬季温和的气候下,开放式通风的外墙可以帮助实现大量节能。

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