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首页> 外文期刊>Geophysical Prospecting >Three-dimensional modelling of controlled-source electromagnetic surveys using an edge finite-element method with a direct solver
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Three-dimensional modelling of controlled-source electromagnetic surveys using an edge finite-element method with a direct solver

机译:使用带直接求解器的边缘有限元方法对受控源电磁测量进行三维建模

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摘要

A fully three-dimensional finite-element algorithm has been developed for simulating controlled-source electromagnetic surveys. To exploit the advantages of geometric flexibility, frequency-domain Maxwell's equations of the secondary electric field were discretised using edge-based finite elements while the primary field was calculated analytically for a horizontally layered-earth model. The resulting system of equations for the secondary field was solved using a parallel version of direct solvers. The accuracy of the algorithm was successfully verified by comparisons with integral-equations and iterative solutions, and the applicability to models containing large conductivity contrasts was verified against published data. The advantages of geometry-conforming meshes have been demonstrated by comparing different mesh systems to simulate an inclined sheet model. A comparison of the performance between direct and iterative solvers demonstrated the superior efficiency of direct solvers, particularly for multisource problems.
机译:已经开发出一种全三维有限元算法来模拟受控源电磁测量。为了利用几何灵活性的优势,使用基于边缘的有限元离散化了二次电场的频域麦克斯韦方程,同时针对水平层状地球模型解析地计算了一次电场。使用并行版本的直接求解器求解了次级场方程组。通过与积分方程和迭代解进行比较,成功地验证了算法的准确性,并针对已发布的数据验证了包含大电导率对比的模型的适用性。通过比较不同的网格系统以模拟倾斜的钣金模型,已证明了符合几何形状的网格的优点。对直接求解器和迭代求解器之间的性能进行比较,证明了直接求解器的优越效率,尤其是对于多源问题。

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