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Integral Equation Modeling for 3D Seabed Logging Applications

机译:3D海底测井应用的整体方程模型

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Afast iterative approach to full vector three-dimensional forward scattering problems is discussed, where the unknown object is an assumed reservoir in the layered earth where conductivity and permittivity are different from the known background medium. Since this problem involves a large number of unknowns, it has to be solved effectively and efficiently so that the results can be obtained in a timely manner. To achieve this goal, approximations can give us reasonable results. Therefore Born approximation and Extended Born approximation are implemented and compared with the full solution of the CG-FFT method. The forward modeling is based on a domain integral equation formulated in terms of the electric contrast source. Integral Equation (IE) solver has several advantages such as separation of incident and scattered field which gives us a more accurate result, furthermore IE method requires the discretization of the domain of the reservoir only and not the entire of modeling domain, in addition because of the unique solution to the domain equation, the method is suitable for inverse modeling.
机译:讨论了全矢量三维前向散射问题的迭代方法,其中未知物体是分层地球中的假定储库,其中导电性和介电常数与已知的背景介质不同。由于该问题涉及大量未知,因此必须有效且有效地解决,使得可以及时获得结果。为了实现这一目标,近似可以给我们合理的结果。因此,与CG-FFT方法的完整解决方案相比,实现了近似近似和扩展近似。前向建模基于在电对比源方面配制的域积分方程。积分方程(IE)求解器具有若干优点,例如事件和散射字段的分离,其给我们提供了更准确的结果,此外,IE方法仅需要储存器的域的离散化而不是整个建模域,此外,因为域等式的唯一解决方案,该方法适用于逆建模。

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