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Gypsum based composite materials with micro-encapsulated PCM: Experimental correlations for thermal properties estimation on the basis of the composition

机译:具有微囊化PCM的石膏基复合材料:根据成分估算热性能的实验相关性

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摘要

Composite materials containing phase change materials (PCMs) are obtained by mixing PCM microcap-sules with traditional construction materials. The composite materials thermal properties, which depend on the composition, are required when dynamic simulations of building structures containing composite material with PCM are performed. In order to avoid the need of measuring density, thermal conductivity and specific heat capacity for each possible composition, in this work correlations for the estimation of these thermal properties for gypsum based composite materials with micro-encapsulated PCM are derived. The correlations, obtained on the basis of experimental measures, give the composite material thermal properties as function of gypsum, water and PCM mass and volume fractions; it is verified that the correlations for density and thermal conductivity can be applied in the whole temperature range, including both the PCM liquid and solid phases, while a correction based on the temperature is applied for the correlation for specific heat capacity to extend its validity to the phase change temperature range. The correlations fit the experimental data with an error comparable with the measurement uncertainty and, when tested on a commercial product, they are able to predict its thermal properties with good accuracy.
机译:包含相变材料(PCM)的复合材料是通过将PCM微囊与传统建筑材料混合而获得的。进行包含PCM的复合材料的建筑结构的动态模拟时,需要根据其成分来确定复合材料的热性能。为了避免需要测量每种可能的成分的密度,导热率和比热容,在这项工作中,得出了具有微囊化PCM的石膏基复合材料的这些热性质的估算相关性。在实验方法的基础上获得的相关性给出了复合材料的热学性能与石膏,水和PCM的质量和体积分数的关系。验证了密度和导热系数的相关性可以在整个温度范围内应用,包括PCM液相和固相,同时对特定热容的相关性使用基于温度的校正以将其有效性扩展至相变温度范围。这些相关性拟合实验数据时,其误差可与测量不确定度相比较,并且在商用产品上进行测试时,它们能够以良好的精度预测其热性能。

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