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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >The Finite Element Numerical Modelling of 3D Magnetotelluric
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The Finite Element Numerical Modelling of 3D Magnetotelluric

机译:3D大地电磁的有限元数值模拟

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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.
机译:3D大地电磁的理想数值模拟受到方法学复杂性和耗时的计算的限制。边界值,加权残差方程的变化以及有限元的六面体网格生成方法是三个主要原因。本文提出了一种用于3D大地电磁数值建模的有限元方法,以解决上述问题。在该算法中,开发了用于电磁弹性有限方法的六面体元素系数矩阵,该矩阵使用第一类边界条件的预处理共轭梯度来求解大型方程。使用齐次模型,正地貌模型以及低电阻异常模型对该算法进行了验证。

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