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Quasi steady state and dynamic hygrothermal performance of fibrous Hemp and Stone Wool insulations: Two innovative laboratory based investigations

机译:纤维麻纤维和石棉绝缘体的准稳态和动态湿热性能:两项基于实验室的创新研究

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Moisture and heat management properties of Hemp and Stone Wool insulations were studied by mounting them between a hot and a cold climate chamber. Both insulations were exposed to identical hygrothermal boundary conditions. Quasi steady state and dynamic tests were carried out at a range of relative humidity exposures. The likelihood of interstitial condensation was assessed and equivalent thermal conductivity values of the insulations were determined. The adsorption desorption isotherms of the insulations were also determined in a dynamic vapour sorption (DVS) instrument. It was observed that the likelihood of condensation was higher in Stone Wool insulation than in Hemp insulation. Hemp insulation performed better in managing moisture due to its high hygric inertia and water absorption capacity. It was observed that the equivalent thermal conductivity of Stone Wool insulation was dependent on enthalpy flow and phase change of moisture. The equivalent thermal conductivity of Hemp insulation was close to its declared thermal conductivity in dynamic conditions when high relative humidity exposures were transient. In quasi steady state boundary conditions, when the insulation was allowed to reach the equilibrium moisture content at ranges of relative humidity, there was a moisture dependent increase of thermal conductivity in Hemp insulation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过将麻绝缘纤维和石棉绝缘材料安装在高温和低温气候箱之间,研究了它们的水分和热管理特性。两种绝缘材料都暴露于相同的湿热边界条件。在一定的相对湿度下进行了准稳态和动态测试。评估间隙凝结的可能性,并确定绝缘材料的等效导热系数。绝缘材料的吸附脱附等温线也在动态气相吸附(DVS)仪器中确定。据观察,在石棉隔热中比在麻隔热中凝结的可能性更高。大麻绝缘具有高的惯性和吸水能力,因此在控制水分方面表现更好。观察到,石棉隔热材料的等效热导率取决于焓流和水分的相变。大麻绝缘材料的等效热导率在瞬态条件下暴露于高相对湿度下时在动态条件下接近其宣称的导热率。在准稳态边界条件下,当绝缘材料在相对湿度范围内达到平衡水分含量时,大麻绝缘材料中的导热系数随湿度而增加。 (C)2015 Elsevier Ltd.保留所有权利。

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