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Materials selection for thermal comfort in passive solar buildings

机译:被动式太阳能建筑中热舒适性的材料选择

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This paper presents the results of a combined analytical, computational, and experimental study of the key parameters for selecting affordable materials and designing for thermal comfort in passive solar buildings. The heat transfer across the walls of buildings is modeled using a simple heat diffusion model. In this way, the passive heat storage from the sun (passive solar) and the heat load from internal heat sources are stored in the walls of buildings that provide internal cooling during the day and internal heating at night. The simple analytical model of heat diffusion is used to identify the merit indices for the optimization of affordable passive solar performance. The time dependence of wall/internal temperature is then simulated using a simple finite difference model. The results from the analytical model and finite difference model are validated by conducting temperature measurements in two affordable housing complexes in Egypt. The implications of the results are then discussed for the design of thermal comfort in affordable housing.
机译:本文介绍了对关键参数进行分析,计算和实验研究的综合结果,这些关键参数用于选择可负担得起的材料并设计被动式太阳能建筑的热舒适性。使用简单的热扩散模型对建筑物墙壁之间的热传递进行建模。这样,来自太阳的被动储热(被动太阳能)和来自内部热源的热负荷被存储在建筑物的墙壁中,这些墙壁在白天提供内部制冷,在晚上提供内部供暖。使用简单的热扩散分析模型来确定性能指标,以优化可负担的被动太阳能性能。然后使用简单的有限差分模型模拟壁/内部温度的时间依赖性。分析模型和有限差分模型的结果通过在埃及的两个可负担房屋群中进行温度测量得到了验证。然后讨论结果的含义,以设计经济适用房中的热舒适性。

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