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首页> 外文期刊>Journal of geophysics and engineering >A multigrid integral equation method for large-scale models with inhomogeneous backgrounds
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A multigrid integral equation method for large-scale models with inhomogeneous backgrounds

机译:背景不均匀的大型模型的多重网格积分方程方法

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摘要

We present a multigrid integral equation (IE) method for three-dimensional (3D) electromagnetic ( EM) field computations in large-scale models with inhomogeneous background conductivity (IBC). This method combines the advantages of the iterative IBC IE method and the multigrid quasi-linear (MGQL) approximation. The new EM modelling method solves the corresponding systems of linear equations within the domains of anomalous conductivity, D-a, and inhomogeneous background conductivity, D-b, separately on coarse grids. The observed EM fields in the receivers are computed using grids with fine discretization. The developed MGQL IBC IE method can also be applied iteratively by taking into account the return effect of the anomalous field inside the domain of the background inhomogeneity Db, and vice versa. The iterative process described above is continued until we reach the required accuracy of the EM field calculations in both domains, D-a and D-b. The method was tested for modelling the marine controlled-source electromagnetic field for complex geoelectrical structures with hydrocarbon petroleum reservoirs and a rough sea-bottom bathymetry.
机译:我们提出了用于具有不均匀背景电导率(IBC)的大型模型中的三维(3D)电磁(EM)场计算的多网格积分方程(IE)方法。该方法结合了迭代IBC IE方法和多网格准线性(MGQL)近似的优点。新的EM建模方法分别在粗网格上解决了异常电导率D-a和非均匀背景电导率D-b域内的线性方程组的相应问题。接收器中观察到的电磁场是使用具有精细离散化的网格计算的。通过考虑背景非均匀性Db区域内异常场的返回效应,也可以迭代应用发达的MGQL IBC IE方法,反之亦然。继续上述迭代过程,直到我们在D-a和D-b两个域中达到EM场计算所需的精度为止。测试了该方法,以模拟具有烃类石油储层和粗糙海底测深法的复杂地电结构的海洋受控源电磁场。

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