Three-dimensional electromagnetic modelling and inversion from theory to application

被引:268
作者
Avdeev, DB
机构
[1] Russian Acad Sci, Inst Terr Magnetism Ionosphere & Radiowave Propag, Troitsk 142190, Moscow Region, Russia
[2] Dublin Inst Adv Studies, Sch Cosm Phys, Dublin 2, Ireland
关键词
three-dimensional modelling and inversion; electromagnetic fields; optimisation; LANCZOS DECOMPOSITION METHOD; INDUCTION LOGGING PROBLEMS; MODIFIED NEUMANN SERIES; FINITE-DIFFERENCE; NONLINEAR INVERSION; GEOMAGNETIC INDUCTION; HETEROGENEOUS SPHERE; INDUCED POLARIZATION; MAXWELLS EQUATIONS; NUMERICAL-SOLUTION;
D O I
10.1007/s10712-005-1836-x
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The whole subject of three-dimensional (3-D) electromagnetic (EM) modelling and inversion has experienced a tremendous progress in the last decade. Accordingly there is an increased need for reviewing the recent, and not so recent, achievements in the field. In the first part of this review paper I consider the finite-difference, finite-element and integral equation approaches that are presently applied for the rigorous numerical solution of fully 3-D EM forward problems. I mention the merits and drawbacks of these approaches, and focus on the most essential aspects of numerical implementations, such as preconditioning and solving the resulting systems of linear equations. I refer to some of the most advanced, state-of-the-art, solvers that are today available for such important geophysical applications as induction logging, airborne and controlled-source EM, magnetotellurics, and global induction studies. Then, in the second part of the paper, I review some of the methods that are commonly used to solve 3-D EM inverse problems and analyse current implementations of the methods available. In particular, I also address the important aspects of nonlinear Newton-type optimisation techniques and computation of gradients and sensitivities associated with these problems.
引用
收藏
页码:767 / 799
页数:33
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