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Effect of Geometry of Holes on Heat Transfer of Concrete Masonry Bricks Using Numerical Analysis

机译:孔的几何形状对砌体砖传热的数值分析

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The population growth and harsh weather conditions in Saudi Arabia increase the demand for electricity due to the overwhelming usage of air-conditioning system for cooling during the excessively hot weather summer conditions. Therefore, the demand to produce efficient insulation materials for building construction has recently increased for energy and environment conservation, particularly with the recent increase in the electricity tariffs. In this paper, finite element analysis using ABAQUS software was used to determine the optimum geometry of holes for concrete bricks that would increase the thermal resistance of the wall, thereby reducing the consumption of electrical power. The analysis was carried out for 23 models with different configurations of holes for masonry concrete bricks. Regular and staggered cavities arrangements were analyzed. The conduction, convection and thermal radiation phenomena were considered for solid and hollow masonry bricks. The results demonstrated that 51% hollow ratio could reduce the average inner surface temperature of the concrete brick by . For bricks with the same hollow ratio, it was observed that there is an effect of the shape of holes in reducing the thermal flow through the bricks, while the number of holes has a marginal effect on the average inner surface temperature . Further, the staggered arrangement for circular holes has considerable effect in reducing for bricks with four cavities, while the rectangular cavities have negative impact on . Moreover, for the models with circular and rectangular eight cavities, the staggered arrangement has an advantage in reducing (T-i) .
机译:沙特阿拉伯的人口增长和恶劣的天气条件增加了对电力的需求,这是因为在夏季炎热的夏季条件下大量使用空调制冷系统。因此,近来生产用于建筑的高效绝缘材料的需求增加,以节约能源和环境保护,尤其是随着最近电价的上涨。在本文中,使用ABAQUS软件进行有限元分析来确定混凝土砖孔的最佳几何形状,该几何形状将增加墙的热阻,从而减少电力消耗。对23个模型进行了分析,这些模型具有用于砖混混凝土砖的不同孔配置。分析了规则和交错的型腔布置。考虑了实心和空心砖石的传导,对流和热辐射现象。结果表明,51%的空心率可以使混凝土砖的平均内表面温度降低。对于具有相同空心率的砖,观察到孔的形状对减少通过砖的热流有影响,而孔的数量对平均内表面温度有边际影响。此外,圆形孔的交错布置在减小具有四个腔的砖时具有相当大的效果,而矩形腔则对具有负面影响。而且,对于具有圆形和矩形八个腔的模型,交错布置具有减小(T-i)的优点。

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