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On the heat transfer through roof tile coverings

机译:关于通过屋顶瓦片覆盖物的传热

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摘要

In hot climates, ventilated pitched roofs with tiled coverings reduce the heat transfer across the roof, due to the ventilated air layer between tiles and roofing underlay, which is formed by the arrangement of battens and counter-battens. This so-called Above Sheathing Ventilation (ASV), which depends on the air entering and leaving at the eaves, ridge and the gaps between the tiles, has been enhanced by increasing the roof air permeability by means of novel roof tile shapes. This study analyses the air permeability improvement of a novel tile and its effect on the heat transfer induced by an external heat source (e.g. solar radiation). A CFD model is used to simulate the fluid flow and heat transfer through the tiles, solving the steady-state incompressible fluid flow in a 3D domain by means of the standard k-ε model. A parametric study is conducted to analyse the variation in the air flow passing through the tile and the tile temperature for different incident air flow conditions. A significant increase in flow rate is observed with the novel tile, which produces a lower temperature of the tile and of the air flowing through the tiles. This would help dissipating the excess heat in summer.
机译:在炎热的气候中,由于瓷砖和屋面衬之间的通风空气层是由板条和对接板的布置而形成的,因此带有瓷砖覆盖物的通风斜屋顶减少了整个屋顶的热传递。依靠新颖的屋面瓦形状来提高屋面透气性,从而增强了这种所谓的“上覆面通风”(ASV),它取决于进入屋檐,屋脊和砖之间的缝隙的空气。这项研究分析了新型瓷砖的透气性改善及其对外部热源(例如太阳辐射)引起的热传递的影响。 CFD模型用于模拟通过瓷砖的流体流动和热传递,并通过标准k-ε模型求解3D域中的稳态不可压缩流体流动。进行了参数研究,以分析在不同的入射空气流条件下,穿过瓷砖的空气流量和瓷砖温度的变化。用新型砖观察到流速的显着增加,这使砖和流过砖的空气的温度降低。这将有助于消散夏季的多余热量。

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