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The thermohygric performance of insulated building structures under conditions of use

机译:使用条件下隔热建筑结构的热湿性能

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摘要

Based on the energy, mass and momentum conservation laws, a system of coupled non-linear transport equations including a suitable computer code has been developed to determine the temperature, moisture, ice, vapour pressure, air pressure fields and the heat, enthalpy, vapour, water and air flows in porous building materials and in building structures under conditions of use. The contribution demonstrates the thermohygric behaviour of a typical heavy concrete flat roof with a mineral wool insulation layer, the drying out process of an insulated light-weight wooden roof caused by a capillaryactive vapour barrier, the moisture and temperature field in an air permeable building component, and the impact of a capillary-active inside insulation of a framework-house (exposed timber) being thermally renovated right now.
机译:根据能量,质量和动量守恒定律,已开发出包括适当的计算机代码的耦合非线性传输方程的系统,以确定温度,湿度,冰,蒸气压,气压场和热量,焓,蒸气,在使用条件下,水和空气在多孔建筑材料和建筑结构中的流动。该贡献证明了典型的带有矿物棉隔热层的重型混凝土平屋顶的热湿性能,由毛细活性蒸汽屏障引起的隔热轻质木质屋顶的干燥过程,透气性建筑组件中的水分和温度场,以及目前正在进行热修复的框架房屋(裸露的木材)的毛细管活性内部绝缘层的影响。

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