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Measuring and modeling vapor boundary layer growth during transient diffusion heat and moisture transfer in cellulose insulation

机译:测量和建模纤维素绝缘材料中瞬态扩散传热和水分传递过程中蒸汽边界层的生长

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摘要

In this paper, an experimental test facility that permits continuous measurements of transient heat and moisture transfer in porous media is applied to study the vapor boundary layer in cellulose insulation. The experiment measures the relative humidity, temperature and moisture accumulation within the cellulose specimen with a fully developed flow of air at a controlled temperature and humidity provided above the surface. These experimental results are used to verify a mathematical model, which is used to develop an expression for moisture diffusivity (α_m) that is analogous to thermal diffusivity, and takes into consideration moisture storage. The moisture diffusivity is used to calculate the vapor density in the boundary layer and the size of vapor boundary layer in cellulose insulation. It is found that the moisture storage effect has a very significant effect on the vapor boundary layer and cannot be ignored. For cellulose insulation, the size of the vapor boundary layer may be over predicted by a factor of ten when moisture storage is neglected.
机译:在本文中,一个允许连续测量多孔介质中瞬态热量和水分传递的实验测试设备被用于研究纤维素绝缘材料中的蒸汽边界层。该实验通过在表面上方提供受控温度和湿度的充分发展的空气流来测量纤维素样品内的相对湿度,温度和水分积累。这些实验结果用于验证数学模型,该数学模型用于开发类似于热扩散率的水分扩散率(α_m)表达式,并考虑了水分存储。水分扩散率用于计算纤维素绝缘中边界层中的蒸气密度和蒸气边界层的尺寸。已经发现,水分存储效应对蒸气边界层具有非常显着的影响并且不能忽略。对于纤维素绝缘,当忽略水分存储时,蒸气边界层的尺寸可能被过高预测十倍。

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