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Experimental analysis of thermal performance in buildings with shape-stabilized phase change materials

机译:形状稳定相变材料在建筑物中的热性能的实验分析

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摘要

Maintaining constant thermal conditions in building interiors requires substantial energy. Using phase-change materials (PCMs) with construction materials can improve thermal performance without increasing energy expenditure. Herein, shape-stabilized PCMs (SSPCMs) were used. We measured the thermal performance of a PCM sheet and established the melting- and solidification-temperature ranges at 19-26 degrees C. Three identical huts were examined using varying PCM levels under natural and heating conditions. In Hut A, no SSPCM sheets were applied; in Hut B, four layers of SSPCM sheets were applied to the floor; in Hut C, one layer of SSPCM was applied to the floor, walls, and ceilings. The results demonstrated that the application of SSPCM sheets improves thermal performance. For an equal number of SSPCM sheet layers applied on each side, the floor directly exposed to solar radiation showed the highest indoor temperature stabilization effect, followed by the walls and ceilings. Compared with Hut A, which served as the reference, the total power consumption using a heater decreased by 9.2% and 18.4% in Huts B and C, respectively. The effect of reducing heating power doubled when the applied area was expanded from the floor to the entire surface. Hence, effective PCM usage can entail large-scale application of SSPCM sheets to building surfaces. (C) 2017 Elsevier B.V. All rights reserved.
机译:在建筑物内部保持恒定的热条件需要大量的能量。在建筑材料中使用相变材料(PCM)可以提高热性能,而不会增加能源消耗。在此,使用形状稳定的PCM(SSPCM)。我们测量了PCM板的热性能,并建立了19-26摄氏度的熔融和凝固温度范围。在自然和加热条件下,使用不同的PCM水平检查了三个相同的小屋。在小屋A中,未应用SSPCM纸;在小屋B中,将四层SSPCM板应用于地板;在小屋C中,将一层SSPCM应用于地板,墙壁和天花板。结果表明,SSPCM片材的应用改善了热性能。对于每侧均等数量的SSPCM板材层,直接暴露于太阳辐射的地板表现出最高的室内温度稳定效果,其次是墙壁和天花板。与用作参考的小屋A相比,小屋B和C中使用加热器的总功耗分别降低了9.2%和18.4%。当将应用区域从地板扩展到整个表面时,降低加热功率的效果增加了一倍。因此,有效的PCM使用可能需要将SSPCM薄板大规模应用于建筑物表面。 (C)2017 Elsevier B.V.保留所有权利。

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