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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Analysis and optimization of the heat-insulating light concrete hollow brick walls design by the finite element method
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Analysis and optimization of the heat-insulating light concrete hollow brick walls design by the finite element method

机译:保温轻质混凝土空心砖墙设计的有限元分析与优化

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摘要

Department of Public Works, owners and building proprietors are demanding high-capacity heat-insulating exterior masonry components specifically for further energy savings. For housing and industrial structures there is also a great interest in light building materials with good physical material behaviour, with respect to an energy conscious and ecological design, which fulfils all strength and serviceability requirements. The major variables influencing the thermal conductivity of masonry materials are illustrated in this work by taking blocks made from no-fine lightweight concrete and different mortar properties. The finite element method (FEM) is used for finding accurate solutions of the heat transfer equation for five different light concrete hollow brick walls. Mathematically, the non-linearity is due to the radiation boundary condition inside the inner recesses of the bricks. The conduction and convection phenomena are taking into account in this study for three different values of the mortar conductivity and three different values for the bricks. Optimization of the walls is carried out from the finite element analysis of five hollow brick geometries by means of the mass overall thermal efficiency and the equivalent thermal conductivity. Finally, conclusions of this work are exposed.
机译:公共工程部,业主和建筑业主要求高容量的隔热砌体外墙部件,以进一步节省能源。对于房屋和工业结构,人们对具有良好物理材料性能的轻质建筑材料也非常感兴趣,因为它们具有节能意识和生态设计,可以满足所有强度和适用性要求。这项工作通过采用由非精细轻质混凝土和不同砂浆性能制成的砌块来说明影响砌体材料导热性的主要变量。有限元方法(FEM)用于为五种不同的轻质混凝土空心砖墙寻找传热方程的精确解。在数学上,非线性是由于砖的内部凹槽内部的辐射边界条件所致。对于砂浆电导率的三个不同值和砖的三个不同值,在本研究中考虑了传导和对流现象。通过质量总体热效率和等效热导率,对五个中空砖的几何形状进行有限元分析,可以对墙体进行优化。最后,公开了这项工作的结论。

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