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首页> 外文期刊>Journal of thermal analysis and calorimetry >Computational investigation of the impact of glass flexure on thermal efficiency of double-pane windows
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Computational investigation of the impact of glass flexure on thermal efficiency of double-pane windows

机译:玻璃弯曲对双窗帘热效率影响的计算研究

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摘要

Windows contribute significantly to the energy efficiency of a building because a considerable amount of energy can potentially be lost through windows. Double-pane windows are particularly efficient at reducing heat loss, primarily via the thermal insulation afforded by the insulating gas filled inside the gap between two panes of glass. However, glass flexure and deformation during window assembly and cold weather can substantially alter the effective thermal resistance of double-pane windows. We systematically consider this (inward and outward) flexure effect on thermal performance in the current work. A validated finite volume method with k-omega SST turbulence model is utilized to perform 3D simulations of a commercially available double-pane window. High-performance computing-based simulations are performed to unravel the impact of different amounts of flexure on effective heat loss. We find that the total heat loss increases as the degree of inward flexure increases, with the case of maximum inward flexure resulting in similar to 15%more heat loss compared to the baseline no-flexure case. On the other hand, outward flexure of the glass does not result in any appreciable variation in heat loss. This suggests pre-flexure as a viable means of ensuring consistent performance under wide weather conditions. Finally, we develop a quasi-2D approach that approximates the very expensive 3D simulations presented here. The quasi-2D method essentially integrates a series of 2D slices in a 3D case to estimate the total heat loss across that 3D case. This decomposition of a 3D window simulation into several 2D simulations substantially reduces total computation efforts and produces reliable results for the very large aspect ratio exhibited by the double-pane window geometry.
机译:窗户对建筑物的能源效率有很大的贡献,因为大量的能量可能会通过窗户损失。双层玻璃窗在减少热损失方面特别有效,主要是通过填充在两块玻璃之间间隙内的隔热气体提供隔热。然而,在装配窗户和寒冷天气期间,玻璃的弯曲和变形会极大地改变双窗格玻璃的有效热阻。我们系统地考虑了这种(内向和向外)挠曲对当前工作热性能的影响。采用经验证的有限体积法和k-omega SST湍流模型,对商用双窗格玻璃进行了三维模拟。通过基于高性能计算的模拟,揭示了不同弯曲程度对有效热损失的影响。我们发现,总热损失随着向内弯曲程度的增加而增加,与基线无弯曲情况相比,最大向内弯曲情况导致的热损失增加了15%。另一方面,玻璃的向外弯曲不会导致热损失的任何明显变化。这表明预弯曲是一种可行的方法,可以确保在宽天气条件下保持一致的性能。最后,我们开发了一种准2D方法,该方法近似于这里介绍的非常昂贵的3D模拟。准2D方法本质上是将一系列2D切片集成到3D案例中,以估计整个3D案例的总热损失。将一个3D窗口模拟分解为多个2D模拟,大大减少了总的计算工作量,并为双窗格窗口几何图形显示的非常大的纵横比产生了可靠的结果。

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