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A fractal model for the electrical conductivity of water-saturated porous media during mineral precipitation-dissolution processes

机译:矿物沉淀溶解过程中水饱和多孔介质电导率的分形模型

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Precipitation and dissolution are prime processes in carbonate rocks and being able to monitor them is of major importance for aquifer and reservoir exploitation or environmental studies. Electrical conductivity is a physical property sensitive both to transport phenomena of porous media and to dissolution and precipitation processes. However, its quantitative use depends on the effectiveness of the petrophysical relationship to relate the electrical conductivity to hydrological properties of interest. In this work, we develop a new physically-based model to estimate the electrical conductivity by upscaling a microstructural description of water-saturated fractal porous media. This model is successfully compared to published data from both unconsolidated and consolidated samples, or during precipitation and dissolution numerical experiments. For the latter, we show that the permeability can be linked to the predicted electrical conductivity.
机译:沉淀和溶解是碳酸盐岩中的主要过程,能够监测它们对于含水层和水库剥削或环境研究的主要重要性。电导率是一种物质性质,其敏感到多孔介质的传输现象和溶解和沉淀过程。然而,其定量用途取决于岩石物理关系的有效性,以使电导率与感兴趣的水文特性相关。在这项工作中,我们开发一种新的基于物理的模型来估计水饱和分形多孔介质的微观结构描述来估计电导率。该模型与来自未溶解和固结样品的公布数据,或在降水和溶解数值实验期间成功。对于后者,我们表明渗透率可以与预测的导电性相关联。

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