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An anisotropic model for the electrical resistivity of two-phase geologic materials

机译:两相地质材料电阻率的各向异性模型

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摘要

Electrical and electromagnetic surveys of the seafloor provide valuable information about the macro and microscopic properties of subseafloor sediments. Sediment resistivity is highly variable and governed by a wide range of properties including pore-fluid salinity, pore-fluid saturation, porosity, pore geometry, and temperature. A new anisotropic, twophase, effective medium model describes the electrical resistivity of porous rocks and sediments. The only input parameters required are the resistivities of the solid and fluid components, their volume fractions and grain shape. The approach makes use of the increase in path length taken by an electrical current through an idealized granular medium comprising of aligned ellipsoidal grains. The model permits both solid and fluid phases to have a finite conductivity useful for dealing with surface charge conduction effects associated with clay minerals and gives results independent of grain size hence, valid for a wide range of sediment types. Furthermore, the model can be used to investigate the effects of grain aspect ratio and alignment on electrical resistivity anisotropy. Good agreement was found between the model predictions and laboratory measurements of resistivity and porosity on artificial sediments with known physical properties.
机译:海底电气和电磁勘测提供了有关海底沉积物宏观和微观特性的有价值的信息。沉积物的电阻率是高度可变的,并受包括孔隙流体盐度,孔隙流体饱和度,孔隙率,孔隙几何形状和温度在内的各种特性的控制。一个新的各向异性的两相有效介质模型描述了多孔岩石和沉积物的电阻率。所需的唯一输入参数是固体和流体成分的电阻率,它们的体积分数和颗粒形状。该方法利用了由通过排列的椭圆形晶粒的理想化的粒状介质通过电流所消耗的路径长度的增加。该模型允许固相和液相具有有限的电导率,可用于处理与粘土矿物相关的表面电荷传导效应,并给出与晶粒尺寸无关的结果,因此适用于各种沉积物类型。此外,该模型可用于研究晶粒长径比和取向对电阻率各向异性的影响。在模型预测与实验室测量的具有已知物理性质的人工沉积物上的电阻率和孔隙率之间发现了很好的一致性。

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