预测部分饱和多孔介质的流势,基于毛细管的模型综述

Damien Jougnot, L. D. Thanh, M. Soldi, F. Rembert, J. Vinogradov, L. Guarracino
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引用次数: 0

摘要

在过去的二十年中,地球物理方法正在出现,以表征和监测关键地带的水文系统。气包带是近表面孔隙空间被水和空气饱和的隔室,这在水的分布和动力学方面产生了非常复杂和非线性的行为。电阻率成像和流电位的结合显示了它们研究该隔室的潜力。流势特别有趣,因为它与水流直接相关,因此为现场监测提供了一种方法。然而,需要使用适当的岩石物理关系来定量地将流势信号与水流联系起来,即对电动耦合现象进行建模。在过去的十年中,基于毛细管的模型的发展为模拟部分饱和多孔介质中的流动、输运和耦合开辟了广阔的前景。在这篇文章中,我们对现有的电动耦合模型进行了批判性的比较,从它们所基于的放大方法到它们认为可以解释流电位信号的毛细血管尺寸分布,或者它们认为可以解释诸如滞后等复杂特征的毛细血管形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predicting streaming potentials in partially saturated porous media, a review of capillary-based models
Summary In the last two decades, geophysical methods are emerging to characterize and monitor hydrosystems in the critical zone. The vadose zone is the compartment of the near surface where the pore space is saturated both by water and air, this yields a very complex and non-linear behavior in terms of water distribution and dynamics. The combination of electrical resistivity imaging and streaming potential have shown their potential to study this compartment. The streaming potential is particularly interesting as it is directly linked to the water flow and therefore offers a way for in situ monitoring. Nevertheless, the use of appropriate petrophysical relationships is required to quantitatively relate the streaming potential signals to the water flow, i.e., to model the electrokinetic coupling phenomena. During the last decade, the development of capillary-based models opened large perspectives to model flow, transport, and coupling in partially saturated porous media. In this contribution, we propose a critical comparison of existing electrokinetic coupling models, from the up-scaling approach they are based on to the capillary size distribution they consider to explain the streaming potential signal, or the shape of the capillaries they consider to explain complex features such as hysteresis.
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