THREE-DIMENSIONAL DC RESISTIVITY FORWARD MODELLING USING FINITE ELEMENTS IN COMPARISON WITH FINITE-DIFFERENCE SOLUTIONS

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dc.contributor.author Li Yu.
dc.contributor.author Spitzer K.
dc.date.accessioned 2021-05-05T06:39:20Z
dc.date.available 2021-05-05T06:39:20Z
dc.date.issued 2002
dc.identifier https://www.elibrary.ru/item.asp?id=1410450
dc.identifier.citation Geophysical Journal International, 2002, 151, 3, 924-934
dc.identifier.issn 0956-540X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/28412
dc.description.abstract A 3-D finite-element scheme for direct current resistivity modelling is presented. The singularity is removed by formulating the problem in terms of the secondary potential, which improves the accuracy considerably. The resulting system of linear equations is solved using the conjugate gradient method. The incomplete Cholesky preconditioner with a scaled matrix has been proved to be faster than the symmetric successive overrelaxation preconditioner. A compact storage scheme fully utilizes the sparsity and symmetry of the system matrix. The finite-element (FE) and a previously developed finite-difference (FD) scheme are compared in detail. Generally, both schemes show good agreement, the relative error in apparent resistivity for a vertical dike model presented in this paper is less than 0.5 per cent overall. The FD scheme produces larger errors near the conductivity contrast, whereas the FE scheme requires approximately 3.4 times as much storage as the FD scheme and is less robust with respect to coarse grids. As an improvement to the forward modelling scheme, a modified singularity removal technique is presented. A horizontally layered earth or a vertical contact is regarded as the normal structure, the solution of which is the primary potential. The effect of this technique is demonstrated by two examples: a cube in two-layered earth and a cube near a vertical contact.
dc.subject 3-D RESISTIVITY MODELLING
dc.subject DC GEOELECTRICS
dc.subject FINITE DIFFERENCES
dc.subject FINITE ELEMENTS
dc.subject PRECONDITIONING
dc.subject SINGULARITY REMOVAL
dc.title THREE-DIMENSIONAL DC RESISTIVITY FORWARD MODELLING USING FINITE ELEMENTS IN COMPARISON WITH FINITE-DIFFERENCE SOLUTIONS
dc.type Статья


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