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Electrical Resistivity Measurement with Spherical-Tipped Cylindrical Electrode Embedded on Two Layers

机译:两层埋有球形尖端圆柱电极的电阻率测量

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摘要

Complex geological processes form multiple layers and change pore water chemistry, saturation level, and temperature. Eventually, the strata hinder interpreting electrical resistivity data. There are no studies that theoretically explore the effects of electrode geometries and multiple layered systems on laboratory electrical resistivity measurements. This study formulates a theoretical electrical resistance between half spherical-tipped cylindrical electrodes embedded on two horizontal layers. The electrical resistivity of each layer is considered separately in the general electrical potential equation with different equipotential surface areas. The finite element analysis is conducted to validate the theoretical equation. Further interpretation provides insights into the distribution of electrical current flow under electrical resistivity mismatch for discussion.
机译:复杂的地质过程形成多层,并改变孔隙水的化学性质,饱和度和温度。最终,地层阻碍了解释电阻率数据。从理论上讲,尚无研究探讨电极几何形状和多层系统对实验室电阻率测量的影响。这项研究提出了在两个水平层上嵌入的半球形圆柱电极之间的理论电阻。在具有不同等电势表面积的一般电势方程式中,分别考虑每一层的电阻率。进行了有限元分析以验证理论方程。进一步的解释提供了对在电阻率不匹配下的电流分布的见解,以进行讨论。

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