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Three-dimensional inversion of multisource array electromagnetic data.

机译:多源阵列电磁数据的三维反演。

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摘要

Three-dimensional (3-D) inversion is increasingly important for the correct interpretation of geophysical data sets in complex environments. To this effect, several approximate solutions have been developed that allow the construction of relatively fast inversion schemes. One such method that is fast and provides satisfactory accuracy is the quasi-linear (QL) approximation. It has, however, the drawback that it is source-dependent and, therefore, impractical in situations where multiple transmitters in different positions are employed. I have, therefore, developed a localized form of the QL approximation that is source-independent. This so-called localized quasi-linear (LQL) approximation can have a scalar, a diagonal, or a full tensor form. Numerical examples of its comparison with the full integral equation solution, the Born approximation, and the original QL approximation are given.; The objective behind developing this approximation is to use it in a fast 3-D inversion scheme appropriate for multisource array data such as those collected in airborne surveys, cross-well logging, and other similar geophysical applications. I have developed such an inversion scheme using the scalar and diagonal LQL approximation. It reduces the original nonlinear inverse electromagnetic (EM) problem to three linear inverse problems. The first of these problems is solved using a weighted regularized linear conjugate gradient method, whereas the last two are solved in the least squares sense. The algorithm I developed provides the option of obtaining either smooth or focused inversion images.; I have applied the 3-D LQL inversion to synthetic 3-D EM data that simulate a helicopter-borne survey over different earth models. The results demonstrate the stability and efficiency of the method and show that the LQL approximation can be a practical solution to the problem of 3-D inversion of multisource array frequency-domain EM data. I have also applied the method to helicopter-borne EM data collected by INCO Exploration over the Voisey's Bay area in Labrador, Canada. The results of the 3-D inversion successfully delineate the shallow massive sulfides and show that the method can produce reasonable results even in areas of complex geology and large resistivity contrasts.
机译:三维(3-D)反演对于正确解释复杂环境中的地球物理数据集越来越重要。为此,已经开发了几种近似的解决方案,它们允许构造相对快速的反演方案。一种快速且提供令人满意的精度的方法是准线性(QL)近似。然而,其缺点在于,它取决于源,因此在采用位于不同位置的多个发射机的情况下是不切实际的。因此,我开发了一种与源无关的QL近似的本地化形式。这种所谓的局部拟线性(LQL)逼近可以具有标量,对角线或完整张量形式。给出了与完整积分方程解,Born近似和原始QL近似进行比较的数值示例。开发这种近似方法的目的是在适用于多源阵列数据的快速3D反演方案中使用它,例如在机载勘测,井间测井和其他类似地球物理应用中收集的数据。我已经使用标量和对角线LQL近似开发了这样的反演方案。它将原始的非线性电磁逆问题简化为三个线性反问题。使用加权正则线性共轭梯度法可以解决这些问题中的第一个,而后两个问题可以用最小二乘法来解决。我开发的算法提供了获得平滑或聚焦反演图像的选项。我已将3-D LQL反演应用于合成的3-D EM数据,这些数据模拟了在不同地球模型上的直升机勘测。结果证明了该方法的稳定性和有效性,并表明LQL近似可以解决多源阵列频域EM数据的3D反演问题。我还将这种方法应用于由INCO Exploration在加拿大拉布拉多的Voisey's Bay地区收集的直升机机载EM数据。 3-D反演的结果成功地描述了浅层块状硫化物,并表明该方法即使在地质复杂且电阻率差异较大的区域也能产生合理的结果。

著录项

  • 作者

    Tartaras, Efthimios.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学 ;
  • 关键词

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