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首页> 外文期刊>Journal of the Serbian Chemical Society >Calculation of the effective diffusion coefficient during the drying of clay samples
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Calculation of the effective diffusion coefficient during the drying of clay samples

机译:粘土样品干燥过程中有效扩散系数的计算

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The aim of this study was to calculate the effective diffusion coefficient based on experimentally recorded drying curves for two masonry clays obtained from different localities. The calculation method and two computer programs based on the mathematical calculation of the second Fick’s law and Cranck diffusion equation were developed. Masonry product shrinkage during drying was taken into consideration for the first time and the appropriate correction was entered into the calculation. The results presented in this paper show that the values of the effective diffusion coefficient determined by the designed computer programs (with and without the correction for shrinkage) have similar values to those available in the literature for the same coefficient for different clays. Based on the mathematically determined prognostic value of the effective diffusion coefficient, it was concluded that, whatever the initial mineralogical composition of the clay, there is 90% agreement of the calculated prognostic drying curves with the experimentally recorded ones. When a shrinkage correction of the masonry products is introduced into the calculation step, this agreement is even better.
机译:这项研究的目的是基于实验记录的干燥曲线,计算从不同地区获得的两种砖石粘土的有效扩散系数。开发了基于第二菲克定律和克兰克扩散方程的数学计算方法和两个计算机程序。第一次考虑了砌体产品在干燥过程中的收缩率,并在计算中进行了适当的修正。本文给出的结果表明,由设计的计算机程序确定的有效扩散系数值(具有和不具有收缩率校正值)与文献中针对不同粘土的相同系数具有相似的值。根据数学上确定的有效扩散系数的预测值,得出的结论是,无论粘土的初始矿物学成分如何,所计算的预测干燥曲线与实验记录的曲线有90%的一致性。当将砌体产品的收缩率校正引入计算步骤时,该协议甚至更好。

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