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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Modeling and Inversion of Magnetic Anomalies Caused by Sediment–Basement Interface Using Three-Dimensional Cauchy-Type Integrals
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Modeling and Inversion of Magnetic Anomalies Caused by Sediment–Basement Interface Using Three-Dimensional Cauchy-Type Integrals

机译:基于三维柯西型积分的沉积物-基底界面引起的磁异常建模与反演

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This letter introduces a new method for the modeling and inversion of magnetic anomalies caused by crystalline basements. The method is based on the 3-D Cauchy-type integral representation of the magnetic field. Traditional methods use volume integrals over the domains occupied by anomalous susceptibility and on the prismatic representation of the volumes with an anomalous susceptibility distribution. Such discretization is computationally expensive, particularly in 3-D cases. The technique of Cauchy-type integrals makes it possible to represent the magnetic field as surface integrals, which is particularly significant in solving problems of the modeling and inversion of magnetic data for the depth to the basement. In this letter, a novel method is proposed, which only requires discretizing the magnetic contrast surface for modeling and inversion. We demonstrate the method using several synthetic models. The results show that the new method is fast and capable of providing high-resolution depth estimation for the sediment–basement interface.
机译:这封信介绍了一种用于建模和反演由晶体基底引起的磁异常的新方法。该方法基于磁场的3-D Cauchy型积分表示。传统方法在异常磁化率所占据的区域上以及在具有异常磁化率分布的体积的棱柱形表示上使用体积积分。这种离散化在计算上是昂贵的,特别是在3-D情况下。柯西式积分技术可以将磁场表示为表面积分,这对于解决地下空间深度的磁数据建模和反演问题特别重要。在这封信中,提出了一种新颖的方法,该方法仅需要离散化磁性对比表面以进行建模和反演。我们使用几种综合模型论证了该方法。结果表明,该新方法是快速的,能够为沉积物-基底界面提供高分辨率的深度估算。

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