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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Location and Thickness Effect of Two Phase Change Materials Between Layers of Roof on Energy Consumption for Air-Conditioned Room
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Location and Thickness Effect of Two Phase Change Materials Between Layers of Roof on Energy Consumption for Air-Conditioned Room

机译:屋顶各层之间两种相变材料的位置和厚度对空调房间能耗的影响

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摘要

Thermal discomfort inside building is due to outside climate, especially by excessive solar radiation during summer or by temperature drop during a cold season. The use of phase change materials (PCMs) can reduce this effect by storing heat transmitted by sensible and latent heat. This ensures good situation of thermal comfort throughout the year. In this work, thermal behavior of two roofing systems is studied. One roof that is taken as reference is constituted by usual materials in building. In the second, two PCMs are inserted according to three configurations. The objective of the study is to assess incorporation effect of two PCMs within reference roof and to evaluate the optimum locations to reduce the energy consumption of air-conditioned room. A monodimensional numerical model, validated analytically and experimentally, is used to carry out a parametric analysis to determine the characteristics of the PCMs to be used and their optimal location within the reference roof regardless of the external climate effect. Numerical calculations are performed for three configurations of roof with swapping PCMs. Results show that insertion of PCMs in the roof provides the best energy consumption saving regardless of annual climate change. Reduction in energy consumption of an air-conditioned room depends on the combination of PCMs, their mutual thicknesses, and thermal comfort level.
机译:建筑物内部的热不适是由于外部气候引起的,特别是夏季夏天过度的太阳辐射或寒冷季节期间的温度下降。相变材料(PCM)的使用可以通过存储由显热和潜热传递的热量来减少这种影响。这确保了全年良好的热舒适度。在这项工作中,研究了两个屋面系统的热性能。被作为参考的一个屋顶由建筑物中的普通材料构成。在第二个中,根据三种配置插入了两个PCM。该研究的目的是评估两个PCM在参考屋顶内的结合效果,并评估最佳位置以减少空调房的能耗。使用经分析和实验验证的一维数值模型进行参数分析,以确定要使用的PCM的特性及其在参考屋顶内的最佳位置,而不受外部气候影响。对具有互换PCM的三种屋面配置进行了数值计算。结果表明,与每年的气候变化无关,在屋顶插入PCM可以最大程度地节省能耗。空调房间能耗的减少取决于PCM,它们相互的厚度和热舒适度的组合。

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