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Phase change humidity control material and its impact on building energy consumption

机译:相变调湿材料及其对建筑能耗的影响

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摘要

Phase change humidity control material (PCHCM) is a new kind of composite made of high performance phase change material (PCM) microcapsules and hygroscopic materials (e.g. diatomite etc.). The PCHCM composite can moderate the indoor hygrothermal conditions by absorbing or releasing both heat and moisture, and consequently effect the sensible and latent heat load of buildings. In this research, a novel model for analyzing the hygrothermal performance of the PCHCM in built environment is developed and validated by experiments. The new model is then applied to investigate the impact of PCHCM on indoor hygrothermal conditions and building energy consumption in an office building under different climates (Beijing, Paris, Atlanta, and Guangzhou). The simulation results show that PCHCM has a great impact on the building energy performance in Paris and Atlanta climates, which have a large temperature and humidity difference between day and night. The maximal potential energy saving rate could be up to 19.57% in Paris. The model and analysis will provide a guidance for the application of PCHCM in different climate conditions. (C) 2018 Elsevier B.V. All rights reserved.
机译:相变调湿材料(PCHCM)是由高性能相变材料(PCM)微囊和吸湿性材料(例如硅藻土等)制成的新型复合材料。 PCHCM复合材料可以通过吸收或释放热量和水分来缓和室内的湿热条件,从而影响建筑物的显热和潜热负荷。在这项研究中,开发了一种新型模型,用于分析建筑环境中PCHCM的湿热性能,并通过实验进行了验证。然后将新模型应用于调查PCHCM对不同气候条件(北京,巴黎,亚特兰大和广州)办公楼中室内湿热条件和建筑能耗的影响。仿真结果表明,PCHCM对巴黎和亚特兰大气候的建筑能源性能有很大影响,而巴黎和亚特兰大的昼夜温差差异很大。巴黎的最大潜在节能率可能高达19.57%。该模型和分析将为PCHCM在不同气候条件下的应用提供指导。 (C)2018 Elsevier B.V.保留所有权利。

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