Hygric and thermal properties of selected materials suitable for interior thermal insulation systems

M. Jerman, R. Černý
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Abstract

The properties of three thermal insulation wood fiber boards suitable for the application on the interior side of historical building envelopes are studied in the paper. Water absorption coefficient, apparent moisture diffusivity, thermal conductivity, and specific heat capacity of all materials, as fundamental hygric and thermal parameters, are measured in a dependence on moisture content. The measured data will be used as input parameters in computer simulation studies which will provide moisture and temperature fields necessary for an appropriate design of interior thermal insulation systems.The properties of three thermal insulation wood fiber boards suitable for the application on the interior side of historical building envelopes are studied in the paper. Water absorption coefficient, apparent moisture diffusivity, thermal conductivity, and specific heat capacity of all materials, as fundamental hygric and thermal parameters, are measured in a dependence on moisture content. The measured data will be used as input parameters in computer simulation studies which will provide moisture and temperature fields necessary for an appropriate design of interior thermal insulation systems.
适用于室内保温系统的选定材料的水力学和热性能
本文研究了适用于历史建筑围护结构内立面的三种保温木纤维板的性能。所有材料的吸水系数、表观水分扩散系数、导热系数和比热容,作为基本的水力学和热学参数,都是根据水分含量来测量的。测量数据将用作计算机模拟研究的输入参数,这将为适当设计室内隔热系统提供必要的湿度和温度场。本文研究了适用于历史建筑围护结构内立面的三种保温木纤维板的性能。所有材料的吸水系数、表观水分扩散系数、导热系数和比热容,作为基本的水力学和热学参数,都是根据水分含量来测量的。测量数据将用作计算机模拟研究的输入参数,这将为适当设计室内隔热系统提供必要的湿度和温度场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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