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Energy Savings Potential of Phase Change Material Integrated Building Envelope in South Texas

机译:南德克萨斯州南德克萨斯州综合建筑信封的节能潜力

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The performance of phase change material (PCM) integrated building envelope in terms of peak load reduction, peak load time delay and thermal demand improvement was investigated for a prototype detached single family house in a hot climate location. Five market available PCM layers, which can be easily inserted into traditional wall construction, were selected and coupled into different walls and different locations within the wall. Annual simulation results from EnergyPlus indicated the significant effect of PCM integrated envelope for the studied case. The PCM layer of melting temperature of 23 C is determined as the best one for south wall implementation. When it is placed to the interior of the insulation component of the wall, heat flux at heating load peak is reduced by 22.3% and heat flux at cooling load peak is reduced by 12.3%. For ceiling application, the best performing one is the PCM layer of melting temperature of 25 C and when it is placed below the insulation component of the ceiling. Reduction in peak heat flux is 30.2% for heating and 25.8% for cooling. The greater reduction in peak heat flux of ceiling than south wall is due to its larger area. For peak heat flux time delay, all PCM cases show similar effect of about 30 minutes for typical heating time and 60 minutes for typical cooling time. The performance of PCM layers in reducing annual thermal demand is not as evident as in heat flux: reduction in heating demand ranges from 7.9% to 54.34% and reduction in cooling demand ranges from 1.2% to 7.2%.
机译:相变材料(PCM)的综合性能围护结构在高峰负荷的减少,高峰负荷时间延迟和热需求改善的方面在气候炎热的位置进行了研究为原型独门独户的房子。五个市面上PCM层,其可以被容易地插入到传统的壁结构,选择和耦合到不同的壁和壁内的不同位置。从每年的EnergyPlus仿真结果表明PCM的显著效果整合信封所研究的案例。熔化的23℃温度的PCM层被确定为用于南壁实现最好的一个。当它被放置到所述壁的绝缘部件的内部,在热由22.3%,热通量在制冷负荷峰用12.3%减少降低的加热负载峰值通量。对于天花板应用,最好执行一个是熔化25℃的温度,并且当它被放置在天花板的绝缘部件的下方的PCM层。减少峰值热通量为加热30.2%和用于冷却25.8%。在天花板比南壁的峰值热通量的更大的减少是由于其较大的面积。峰值热通量的时间延迟,所有PCM例表现出大约30分钟的时间典型的加热时间和60分钟的典型的冷却时间类似的效果。 PCM层在减少每年的热需求的性能也不如明显的,因为在热通量:减少在从1.2%冷却需求范围至7.2%从7.9%加热需求范围至54.34%和减少。

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