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An assessment of mixed type PCM-gypsum and shape-stabilized PCM plates in a building for passive solar heating

机译:对被动式太阳能采暖建筑中的混合PCM石膏和形状稳定的PCM板的评估

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Thermal performance of two phase change material (PCM) composites, mixed type PCM-gypsum and shape-stabilized PCM plates, has been numerically evaluated in a passive solar building in Beijing with an enthalpy model. Effects of the melting temperature and phase transition zone of the PCM are analyzed and a comparison between the two types of PCM composites is performed. The results show that: (1) for the present conditions, the optimal melting temperature is about 21 °℃; (2) PCM composites with a narrow phase transition zone provide better thermal performance; (3) both mixed type PCM-gypsum and shape-stabilized PCM plates effectively shave the indoor temperature swing by 46% and 56%, respectively; (4) the shape-stabilized phase change material (SSPCM) plates respond more rapidly than the mixed type PCM-gypsum and prove to be thermally more effective in terms of utilizing the latent heat.
机译:两种相变材料(PCM)复合材料(混合型PCM石膏和形状稳定的PCM板)的热性能已通过焓模型在北京的一座被动式太阳能建筑中进行了数值评估。分析了PCM的熔化温度和相变区的影响,并进行了两种PCM复合材料之间的比较。结果表明:(1)在目前条件下,最佳熔融温度约为21℃; (2)具有窄相变区的PCM复合材料具有更好的热性能; (3)混合型PCM石膏板和形状稳定的PCM板均有效地将室内温度波动分别减少了46%和56%; (4)形状稳定的相变材料(SSPCM)板比混合型PCM-石膏反应更快,并且在利用潜热方面被证明在热方面更有效。

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