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Iterative electromagnetic migration for 3D inversion of marinecontrolled-source electromagnetic data

机译:迭代电磁偏移用于海洋受控源电磁数据的3D反演

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摘要

The key to deriving a reliable quantitative interpretation from marine controlled-source electromagnetic data is through the integration of shared earth modeling and robust 3D electromagnetic inversion. Subsurface uncertainty is minimized through efficient workflows that use all available subsurface data as a priori information and which permit multiple resistivity models to explain the same observed data. To this end, we present our implementation of an iterative migration method for controlled-source electromagnetic data that is equivalent to rigorous 3D inversion. Our iterative migration method is based on the 3D integral equation method with inhomogeneous background conductivity and focusing regularization with a priori terms. We will show that focusing stabilizers recover more geologically realistic models with sharper resistivity contrasts and boundaries than traditional smooth stabilizers. Additionally, focusing stabilizers have better convergence properties than smooth stabilizers. Finally, inhomogeneous background information described as a priori resistivity models can improve the fidelity of the final models. Our method is implemented in a fully parallelized code. This makes it practical to run large-scale 3D iterative migration on multicomponent, multifrequency and multiline controlled-source electromagnetic surveys for 3D models with millions of cells. We present a suite of interpretations obtained from different iterative migration scenarios for a 3D controlled-source electromagnetic feasibility study computed from a detailed model of stacked anticline structures and reservoir units of the Shtokman gasfield in the Russian sector of the Barents Sea.
机译:从海洋受控源电磁数据得出可靠的定量解释的关键是通过共享地球建模和强大的3D电磁反演的集成。通过有效的工作流程将地下可用的地下数据作为先验信息,并允许多个电阻率模型解释相同的观测数据,从而将地下不确定性降至最低。为此,我们介绍了针对受控源电磁数据的迭代迁移方法的实现,该方法等效于严格的3D反演。我们的迭代迁移方法基于3D积分方程法,该方法具有不均匀的背景电导率和具有先验项的聚焦正则化。我们将显示聚焦稳定器比传统的光滑稳定器具有更清晰的电阻率对比和边界,可恢复更多地质上真实的模型。另外,聚焦稳定剂比光滑稳定剂具有更好的会聚性能。最后,描述为先验电阻率模型的不均匀背景信息可以提高最终模型的保真度。我们的方法是在完全并行化的代码中实现的。这使得在具有数百万个单元的3D模型的多分量,多频率和多线受控源电磁勘测中运行大规模3D迭代偏移变得切实可行。我们为3D受控源电磁可行性研究提供了从不同的迭代迁移方案中获得的一系列解释,该研究是根据Barents海俄罗斯地区Shtokman气田的堆叠背斜构造和储层单元的详细模型计算得出的。

著录项

  • 来源
    《Geophysical Prospecting》 |2011年第6期|p.1101-1113|共13页
  • 作者单位

    Technolmaging, 4001 South, 700 East, Suite 500, Salt Lake City, UT 84107, USA,University of Utah, 115 South, 1460 East, Room 383,Salt Lake City, UT 84112, USA;

    Technolmaging, 4001 South, 700 East, Suite 500, Salt Lake City, UT 84107, USA,University of Utah, 115 South, 1460 East, Room 383,Salt Lake City, UT 84112, USA;

    Technolmaging, 4001 South, 700 East, Suite 500, Salt Lake City, UT 84107, USA;

    Russian Research Center Kurchatov Institute, 1 Akademika Kurchatova pi, Moscow 123182, Russia;

    Technolmaging, 4001 South, 700 East, Suite 500, Salt Lake City, UT 84107, USA;

    Technolmaging, 4001 South, 700 East, Suite 500, Salt Lake City, UT 84107, USA,University of Utah, 115 South, 1460 East, Room 383,Salt Lake City, UT 84112, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CSEM; electromagnetics; inversion; migration; regularization; stabilizer.;

    机译:CSEM;电磁学反转移民;正则化;稳定剂;

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