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Effect of the local clay distribution on the effective electrical conductivity of clay rocks

机译:黏土局部分布对黏土有效电导率的影响

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摘要

The local porosity theory proposed by Hilfer was revisited to develop a local clay theory (LCT) that establishes a quantitative relationship between the effective electrical conductivity and clay distribution in clay rocks. This theory is primarily based on a local simplicity assumption; under this assumption, the complexity of spatial clay distribution can be captured by two local functions, namely, the local clay distribution and the local percolation probability, which are calculated from a partitioning of a mineral map. The local clay distribution provides information about spatial clay fluctuations, and the local percolation probability describes the spatial fluctuations in the clay connectivity. This LCT was applied to (a) a mineral map made from a Callovo-Oxfordian mudstone sample and (b) (macroscopic) electrical conductivity measurements performed on the same sample. The direct and inverse modeling shows two results. First, the textural and classical model assuming that the electrical anisotropy of clay rock is mainly controlled by the anisotropy of the sole clay matrix provides inconsistent inverted values. Another textural effect, the anisotropy induced by elongated and oriented nonclayey grains, should be considered. Second, the effective conductivity values depend primarily on the choice of the inclusion-based models used in the LCT. The impact of local fluctuations of clay content and connectivity on the calculated effective conductivity is lower.
机译:希尔弗(Hilfer)提出的局部孔隙度理论被重新研究,以发展一种局部粘土理论(LCT),该理论建立了有效电导率与粘土岩石中粘土分布之间的定量关系。该理论主要基于局部简单性假设。在这种假设下,空间黏土分布的复杂性可以通过两个局部函数来捕获,即局部黏土分布和局部渗滤概率,这是根据矿物图的分区来计算的。局部黏土分布提供有关黏土空间波动的信息,局部渗滤概率描述黏土连通性中的空间波动。该LCT应用于(a)由卡洛沃-牛津泥岩样品制成的矿物图,以及(b)对同一样品进行的(宏观)电导率测量。正向和反向建模显示两个结果。首先,假设粘土岩石的电各向异性主要由唯一粘土基质的各向异性控制的纹理和经典模型提供了不一致的反演值。应考虑另一种纹理效果,即由拉长和取向的非粘土晶粒引起的各向异性。其次,有效电导率值主要取决于LCT中使用的基于夹杂物的模型的选择。粘土含量和连通性的局部波动对计算出的有效电导率的影响较小。

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