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Modelling of solute and water transport in semi-permeable clay membranes: comparison with experiments

机译:半渗透性粘土膜中溶质和水运移的模型:与实验的比较

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摘要

Theories of osmosis in groundwater flow are increasingly used to explain anomalies of salinity in clayey environments. However, predictive modelling through mathematical analysis can hardly be found in literature. In this paper, a model of chemical osmosis based on non-equilibrium thermodynamics, is used to predict the evolution of pressure and salinity in a clay membrane. Analysis of this model reveals simplifications that hold for specific situations. Two experiments from literature serve to show that the analytical modelling solution agrees with numerical and experimental results. Moreover, it is shown that the commonly applied Boussinesq approximation necessarily does not hold when osmosis is involved. Indeed, the clay system must be able to store the excess flow of water induced by osmosis.
机译:地下水中渗透的理论越来越多地用于解释黏性环境中盐度的异常。然而,在文献中几乎找不到通过数学分析进行的预测建模。本文使用基于非平衡热力学的化学渗透模型预测粘土膜中压力和盐度的变化。对这个模型的分析揭示了适用于特定情况的简化。文献中的两个实验表明,该解析建模解决方案与数值和实验结果一致。此外,已经表明,当涉及渗透时,常用的Boussinesq逼近不一定成立。确实,粘土系统必须能够存储由渗透引起的多余的水流。

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