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Initial Credibility Analysis of a Numerical Model of Heat and Moisture Transfer in Porous Building Materials

机译:多孔建筑材料热水转移数值模型的初始可信度分析

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The work presents initial credibility analysis of a numerical model of heat and moisture transfer in porous building materials. Single moist brick located in an air flow duct was considered. Only one wall of the brick was in contact with air and only through this boundary heat and moisture were exchanged between air and brick. Developed model considered dry air, vapor water, liquid water and dry solid material. Local non-equilibrium between different moisture phases was assumed. The numerical model was implemented with the aid of commercial software ANSYS Fluent and by using its advance customization interface, i.e., the User-Define-Function, User-Define-Scalar and User-Define-Memory. Furthermore, experiments were carried out on specially developed stand to compare measured and simulated temperature variations in the brick. The measured and predicted temperature plateau due to evaporation of liquid moisture in the brick had similar level. However, calculated drying time was significantly overestimated comparing to experimental data.
机译:该工作介绍了多孔建筑材料中热量传递数值模型的初始可信度分析。考虑了位于空气流管道中的单湿砖。只有一个砖墙与空气接触,只能通过这种边界热量和水分在空气和砖之间交换。开发的模型被认为是干燥空气,蒸气水,液态水和干燥的固体材料。假设不同水分相之间的局部非平衡。借助商业软件ANSYS流畅,即通过使用其提前自定义界面,即用户定义函数,用户定义标量和用户定义存储器来实现数值模型。此外,在专门开发的支架上进行实验,以比较砖块的测量和模拟温度变化。由于砖中的液体水分蒸发而导致的测量和预测的温度平台具有相似的水平。然而,与实验数据相比,计算的干燥时间明显高估。

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