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Phase change material's (PCM) impacts on the energy performance and thermal comfort of buildings in a mild climate

机译:相变材料(PCM)在温和气候下对建筑物的能源性能和热舒适性的影响

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The current residential buildings are of light weight construction. As such, they tend to frequent indoor air temperatures fluctuations and have been proven detrimental for thermal comfort and mechanical system energy consumption. This is reflected in the energy consumption statistics for residential buildings. More than 62% of the building energy use is towards maintaining comfortable indoor conditions. Phase change materials (PCM); a latent heat thermal storage material, have the potential to increase the thermal mass of these buildings without drastically affecting the current construction techniques. In this paper, the potential of phase change materials is investigated through numerical and experimental studies. The field experimental study is conducted using twin side-by-side buildings exposed to the same interior and exterior boundary conditions, and EnergyPlus, after being bench marked with the experimental results, is used for the numerical study. The numerical study is carried out for an existing residential apartment unit with particular emphasis on the effects of different design parameters such as orientation and window to wall ratio. Preliminary analyses of experimental data show that phase change materials are effective in stabilizing the indoor air by reversing the heat flow direction. In fact, the indoor air and wall temperature fluctuations are reduced by 1.4 degrees C and 2.7 degrees C respectively. Following, benchmarking of the numerical simulation shows confidence levels in predicting the interior conditions since discrepancies between experimental data and numerical data are within tolerance limits of the measuring device. Further, from the analysis of the numerical data, phase change material is effective in moderating the operative temperature but does not translate to significant thermal comfort improvement when evaluated over a night time occupancy regime in the summer. On the contrary, PCM is effective in lowering the heating energy demand by up to 57% during the winter condition. (C) 2016 Elsevier Ltd. All rights reserved.
机译:当前的住宅建筑是轻质建筑。因此,它们往往会导致室内空气温度频繁波动,并被证明对热舒适性和机械系统能耗有害。这反映在住宅能耗统计中。超过62%的建筑能耗用于保持舒适的室内条件。相变材料(PCM);一种潜热蓄热材料,有可能增加这些建筑物的热量,而不会显着影响当前的建筑技术。本文通过数值和实验研究来研究相变材料的潜力。现场实验研究是使用暴露在相同的内部和外部边界条件下的双并排建筑物进行的,EnergyPlus在标有实验结果后被用于数值研究。数值研究是针对现有的住宅公寓单元进行的,其重点是不同设计参数(例如方向和窗墙比)的影响。对实验数据的初步分析表明,相变材料可通过逆转热流方向来稳定室内空气。实际上,室内空气和墙壁温度的波动分别降低了1.4摄氏度和2.7摄氏度。随后,由于实验数据和数值数据之间的差异在测量设备的公差范围之内,因此数值模拟的基准测试显示了预测内部条件的置信度。此外,从数值数据的分析来看,相变材料在降低工作温度方面是有效的,但是当在夏季的夜间占用情况下进行评估时,则不能转化为显着的热舒适性改善。相反,在冬季条件下,PCM可有效地将热能需求降低多达57%。 (C)2016 Elsevier Ltd.保留所有权利。

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