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Modeling and simulation on the thermal performance of shape-stabilized phase change material floor used in passive solar buildings

机译:被动太阳能建筑用形状稳定相变材料地板热性能的建模与仿真

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摘要

Shape-stabilized phase change material (PCM) is a kind of novel PCM. It has the following salient features: large apparent specific heat for phase change temperature region, suitable thermal conductivity, no container. In the present paper, a kind of shape-stabilized PCM floor is put forward which can absorb the solar radiation energy in the daytime and release the heat at night in winter. Therefore, in winter the indoor climate can be improved and the energy consumption for space heating may be greatly reduced. A model of analyzing the thermal performance of this shape-stabilized PCM floor is developed. By using the modeling, the influence of various factors (thickness of PCM layer, melting temperature, heat of fusion, thermal conductivity of PCM, etc.) on the room thermal performance was analyzed. The model was verified by the experimental results. The model and the analysis are helpful for the application of shape-stabilized PCM floor in solar buildings.
机译:形状稳定相变材料(PCM)是一种新型的PCM。它具有以下显着特征:相变温度区域的表观比热大,导热系数合适,无容器。本文提出了一种形状稳定的PCM地板,该地板可以在白天吸收太阳辐射能,而在冬季则可以在晚上释放热量。因此,在冬天,可以改善室内气候并且可以大大减少用于空间加热的能量消耗。建立了分析这种形状稳定的PCM地板的热性能的模型。通过使用该模型,分析了各种因素(PCM层的厚度,熔化温度,熔化热,PCM的导热性等)对房间热性能的影响。实验结果验证了该模型的正确性。该模型和分析有助于形状稳定的PCM地板在太阳能建筑中的应用。

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