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An alternative 3D inversion method for magnetic anomalies with depth resolution

机译:具有深度分辨率磁异常的替代3D反演方法

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摘要

This paper presents a new method to invert magnetic anomaly data in a variety of non-complex contexts when a priori information about the sources is not available. The region containing magnetic sources is discretized into a set of homogeneously magnetized rectangular prisms, polarized along a common direction. The magnetization distribution is calculated by solving an underdetermined linear system, and is accomplished through the simultaneous minimization of the norm of the solution and the misfit between the observed and the calculated field. Our algorithm makes use of a dipolar approximation to compute the magnetic field of the rectangular blocks. We show how this approximation, in conjunction with other correction factors, presents numerous advantages in terms of computing speed and depth resolution, and does not affect significantly the success of the inversion. The algorithm is tested on both synthetic and real magnetic datasets.
机译:本文当不可用有关源的先验信息时,介绍了在各种非复杂环境中反转磁异常数据的新方法。含有磁源的区域被离散化成一组均匀磁化的矩形棱镜,沿共同方向偏振。通过求解未确定的线性系统来计算磁化分布,并且通过同时最小化溶液的标准和观察到的场和计算的场​​之间的缺陷来完成。我们的算法利用偶极近似来计算矩形块的磁场。我们展示了这种近似值如何与其他校正因子结合,在计算速度和深度分辨率方面具有许多优点,并且不会影响反转的成功。该算法在合成和实际磁数据集上进行了测试。

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