Inductive coupling for a conductive dyke in a resistive Earth

Physics

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Scientific paper

An analytical model of inductive coupling for a conductive dyke embedded in a resistive Earth for a dipole source and receiver is developed. In the analysis, the dyke is represented by a conducting loop. Laboratory analogue model measurements are used to obtain apparent resistivities over the simulated dyke. Employing the modified Marquardt inversion algorithm, the laboratory model apparent resistivities are inverted to obtain the best-fit geometric loop parameters for the analytical model. Using these geometric loop parameters in the analytical model, good agreement is obtained with the laboratory model results over the entire traverse, including locations directly over the dyke. These results have application in the separation of inductive coupling and induced polarization components in spectral induced polarization measurements.

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