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Evaluation of shape-stabilization phase change material sheets to improve the heating load reduction based on the indoor application method

机译:形状稳定相变材料片的评价,以提高基于室内应用方法的加热负荷降低

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The effectiveness of the phase change material (PCM) application method was measured in three identical test huts using a shape-stabilized phase-change material (SSPCM) sheet made of paraffin-based PCM. Based on these results, the accuracy was verified by comparing the measured values with the calculated values using each PCM model in EnergyPlus and ExTLA (Excel-based Thermal Load Analysis) software. Annual loads were simulated under various conditions to optimize the efficiency of the SSPCM sheets. A similar reduction in heating load was observed, regardless of the installation area until the capacity of the SSPCM sheet reached a certain value. However, above this value, the efficiency increased or decreased depending on the installation area. This shows that there is an optimum capacity according to the installation area of the PCM. To evaluate the performance of the PCM according to the shape of the building, a target building and climate were selected using the ASHRAE standard (90.1 and 169), and the heating load was simulated under the same conditions. When the volume of the building and the size of the window receiving solar radiation were constant, it was confirmed that the shape of the building did not significantly affect the heating load compared to the installed capacity and area of the PCM. However, depending on the installation area, there was a difference in annual heating loads up to approximately 12%. This study confirmed that there are optimum installation capacities and areas that maximize the efficiencies of PCMs.
机译:使用由基于石蜡基PCM制成的形状稳定的相变材料(SSPCM)片在三个相同的测试小区中测量相变材料(PCM)施加方法的有效性。基于这些结果,通过使用EnergyPlus和ExtLA(基于Excel的热负荷分析)软件中的每个PCM模型将测量值与计算值进行比较来验证测量值。在各种条件下模拟年载荷以优化SSPCM纸张的效率。无论安装区域如何,都观察到加热负荷的类似减少,直到SSPCM表的容量达到一定值。但是,在此值之上,根据安装区域的效率增加或减少。这表明根据PCM的安装区域存在最佳容量。为了评估根据建筑物的形状的PCM的性能,使用ASHRAE标准(90.1和169)选择目标建筑和气候,并在相同条件下模拟加热载荷。当建筑物的体积和接收太阳辐射的窗口的尺寸恒定时,确认建筑物的形状与PCM的安装容量和面积相比没有显着影响加热负荷。但是,根据安装区域,年加热负载差异高达约12%。本研究证实,有最佳的安装能力和最大化PCM效率的区域。

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