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首页> 外文期刊>Drying technology: An International Journal >Moisture Diffusion Coefficients for Modeling the First and Second Drying Sections of Green Bricks
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Moisture Diffusion Coefficients for Modeling the First and Second Drying Sections of Green Bricks

机译:湿扩散系数,用于模拟青砖的第一和第二干燥段

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摘要

A model has been developed that describes the dependence of the moisture diffusion coefficient on the water fraction. Until the end of shrinkage has been achieved, the moisture diffusion coefficient is proportional to the second power of the water fraction. Due to shrinkage, the relevant capillary spaces available for water transport become smaller. Consequently, the moisture diffusion coefficient decreases continually. After the end of shrinkage, the flow resistance to the water moving toward the surface increases sharply due to penetrating air. This leads to a steep drop of the moisture diffusion coefficient by several powers of ten. Measurements were carried out with specimens of defined geometry to determine the moisture diffusion coefficient. On the basis of a specified limiting value, the model is capable of calculating the moisture diffusion for all initially specified raw materials moistures. The moisture can also be determined if the degree of drying shrinkage is known. Using the determined moisture diffusion coefficient, the first and the second drying section can be located. Drying tests were carried out in a laboratory dryer and the experimental results obtained were compared to the simulation results. The simulation results are in good agreement with the experimental results.
机译:已经开发出描述水分扩散系数对水分数的依赖性的模型。直到收缩结束,水分扩散系数才与水分量的二次方成正比。由于收缩,可用于水输送的相关毛细管空间变小。因此,水分扩散系数持续降低。收缩结束后,由于空气的渗透,流向表面的水的流动阻力急剧增加。这导致水分扩散系数急剧下降十倍。用确定的几何形状的样品进行测量以确定水分扩散系数。在指定的极限值的基础上,该模型能够计算所有最初指定的原材料水分的水分扩散。如果已知干燥收缩的程度,也可以确定水分。使用确定的水分扩散系数,可以定位第一干燥部分和第二干燥部分。在实验室干燥机中进行干燥测试,并将获得的实验结果与模拟结果进行比较。仿真结果与实验结果吻合良好。

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