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Effect of double layer phase change material in building roof for year round thermal management

机译:双层相变材料在建筑物屋顶中对全年热管理的影响

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Efficient and economical technology that can be used to store large amounts of heat or cold in a definite volume is the subject of research for a long time. Latent heat storage in a phase change material (PCM) is very attractive because of its high-energy storage density and its isothermal behavior during the phase change process. Thermal storage plays a major role in building energy conservation, which is greatly assisted by the incorporation of latent heat storage in building products. Increasing the thermal storage capacity of a building can enhance human comfort by decreasing the frequency of internal air temperature swings so that the indoor air temperature is closer to the desired temperature for a longer period of time. However, it is impossible to select a phase change material to suit all the weather condition in a given location. The PCM that reduces the internal air temperature swing during the winter season is not suitable for the summer season as the PCM remains in the liquid state at all the times during these months and hence the system cannot exploit the latent heat effect. This paper attempts to study the thermal performance of an inorganic eutectic PCM based thermal storage system for thermal management in a residential building. The system has been analyzed by theoretical and experimental investigation. A double layer PCM concept is studied in detail to achieve year round thermal management in a passive manner.
机译:可以用来存储一定量的大量热或冷的高效经济技术是长期研究的主题。相变材料(PCM)中的潜热存储非常吸引人,因为其高能量存储密度和相变过程中的等温行为。蓄热在建筑节能中起着重要作用,这通过在建筑产品中结合使用潜热来大大帮助。增加建筑物的蓄热能力可以通过减少内部空气温度波动的频率来提高人体舒适度,从而使室内空气温度在更长的时间内更接近所需温度。但是,不可能选择相变材料来适应给定位置的所有天气条件。降低冬季内部空气温度波动的PCM不适合夏季使用,因为在这几个月中PCM始终保持液态,因此系统无法利用潜热效应。本文试图研究基于无机共晶PCM的热存储系统的热性能,以用于住宅建筑中的热管理。通过理论和实验研究对该系统进行了分析。详细研究了双层PCM概念,以被动方式实现全年热管理。

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