The finite element numerical modelling of 3D magnetotelluric (Q1719310)

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scientific article; zbMATH DE number 7017515
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The finite element numerical modelling of 3D magnetotelluric
scientific article; zbMATH DE number 7017515

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    The finite element numerical modelling of 3D magnetotelluric (English)
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    8 February 2019
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    Summary: The ideal numerical simulation of 3D magnetotelluric was restricted by the methodology complexity and the time-consuming calculation. Boundary values, the variation of weighted residual equation, and the hexahedral mesh generation method of finite element are three major causes. A finite element method for 3D magnetotelluric numerical modeling is presented in this paper as a solution for the problem mentioned above. In this algorithm, a hexahedral element coefficient matrix for magnetoelluric finite method is developed, which solves large-scale equations using preconditioned conjugate gradient of the first-type boundary conditions. This algorithm is verified using the homogeneous model, and the positive landform model, as well as the low resistance anomaly model.
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