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首页> 外文期刊>Physical Science International Journal >Modeling of Heat Transfer in a Habitat Built in Local Materials in Dry Tropical Climate
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Modeling of Heat Transfer in a Habitat Built in Local Materials in Dry Tropical Climate

机译:热带干燥气候中以本地材料建造的栖息地中的传热模型

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A numerical modeling of heat transfer in a habitat whose walls are in local materials (compressed earth blocks) is presented. The transfer equations based on the nodal method are solved by an implicit finite difference method and the Gauss algorithm coupled to an iterative procedure. It was analyzed the influence of the rate of air exchange, the thickness of the walls and the nature of the materials of which they are composed on the spatio-temporal distributions of the temperature of the air inside the habitat and those of its walls. The results show that the temperature inside habitats whose walls are made of local materials (earthen materials) is lower than that of modern habitats (cement blocks). The increase in the thickness of the walls contributes to a better thermal inertia of the habitat by improving the decrement factor and the time lag difference between the inside and the outside. Also, over-ventilation of a habitat with high inertia has a negative impact on its performance during the hottest periods.
机译:给出了一个栖息地的传热的数值模型,该栖息地的壁是局部材料(压缩土块)。基于节点方法的传递方程通过隐式有限差分方法和耦合迭代程序的高斯算法求解。分析了空气交换速率,壁的厚度以及由其组成的材料的性质对栖息地及其壁内空气温度的时空分布的影响。结果表明,其壁由当地材料(土质材料)制成的栖息地内部的温度低于现代栖息地(水泥块)的温度。壁厚的增加通过改善内部和外部之间的递减因子和时滞差,有助于改善栖息地的热惯性。同样,在最热的时期,高惯性栖息地的过度通风也会对其性能产生负面影响。

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