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Concrete roof with cylindrical holes containing PCM to reduce the heat gain

机译:带有PCM的圆柱形孔的混凝土屋顶可减少热量增加

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This paper presents a thermal analysis of a building concrete roof with vertical cylindrical holes filled with phase change material (PCM). The objective of incorporating the PCM into the concrete roof is to increase the value of thermal mass of the roof. The PCM absorbs the heat through the melting process before it reaches the indoor space, and thus reducing the heat gain. Numerical method is extensively utilized in this research and it is validated with experimental work. The thermal effectiveness of the proposed concrete roof with PCM is assessed by comparing the heat flux at the indoor surface with that of solid concrete roof during the day. A parametric study is conducted to evaluate the effects of the cylindrical holes dimension, PCM melting temperature, and operating month on the heat gain. The results indicate that heat gain can be reduced significantly with larger PCM holes diameter. The PCM melting temperature of PCM should be selected based on the operating month and working hours for the best performance. For the examine cases in this research, the heat flux at the indoor surface of the roof is reduced between 9% and 17.26%, depending on the selected PCM, working hours, and operating month.
机译:本文介绍了一个具有垂直圆柱孔并填充相变材料(PCM)的建筑混凝土屋顶的热分析。将PCM并入混凝土屋顶的目的是增加屋顶的热质量值。 PCM在进入室内空间之前通过熔化过程吸收热量,从而降低了热量获取。数值方法在本研究中得到了广泛的应用,并得到了实验工作的验证。通过比较白天室内表面和实心混凝土屋顶的热通量,可以评估建议的带有PCM的混凝土屋顶的热效率。进行了参数研究,以评估圆柱孔尺寸,PCM熔化温度和工作月份对热量获取的影响。结果表明,较大的PCM孔直径可以显着降低热增益。 PCM的PCM熔化温度应根据工作月份和工作时间来选择,以获得最佳性能。对于本研究中的检查案例,取决于所选的PCM,工作时间和工作月份,屋顶室内表面的热通量降低了9%至17.26%。

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