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Coupled Heat And Moisture Transfer In Multi-layer Building Materials

机译:多层建筑材料中的热湿耦合耦合

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摘要

A dynamic mathematical model for simulating the coupled heat and moisture migration through multilayer porous building materials was proposed. Vapor content and temperature were chosen as the principal driving potentials. The discretization of the governing equations was done by the finite difference approach. A new experimental set-up was also developed in this study. The evolution of transient temperature and moisture distributions inside specimens were measured. The method for determining the temperature gradient coefficient was also presented. The moisture diffusion coefficient, temperature gradient coefficient, sorption-desorption isotherms were experimentally evaluated for some building materials (sandstone and lime-cement mortar). The model was validated by comparing with the experimental data with good agreement. Another advantage of the method lies in the fact that the required transport properties for predicting the non-isothermal moisture flow only contain the vapor diffusion coefficient and temperature gradient coefficient. They are relatively simple, and can be easily determined.
机译:提出了一种动态数学模型,用于模拟热和水分在多层多孔建筑材料中的耦合迁移。选择蒸气含量和温度作为主要驱动潜力。控制方程的离散化是通过有限差分法完成的。在这项研究中还开发了一种新的实验装置。测量样品内部瞬态温度和水分分布的演变。提出了确定温度梯度系数的方法。通过实验评估了某些建筑材料(砂岩和石灰水泥砂浆)的水分扩散系数,温度梯度系数,吸附-解吸等温线。通过与实验数据进行比较验证了模型的一致性。该方法的另一个优点在于,用于预测非等温水分流所需的传输特性仅包含蒸气扩散系数和温度梯度系数。它们相对简单,可以轻松确定。

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