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首页> 外文期刊>Journal of Applied Geophysics >Adaptive finite element modeling of direct current resistivity in 2-D generally anisotropic structures
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Adaptive finite element modeling of direct current resistivity in 2-D generally anisotropic structures

机译:二维一般各向异性结构中直流电阻率的自适应有限元建模

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摘要

In this paper, we present an adaptive finite element (FE) algorithm for direct current (DC) resistivity modeling in 2-D generally anisotropic conductivity structures. Our algorithm is implemented on an unstructured triangular mesh that readily accommodates complex structures such as topography and dipping layers and so on. We implement a self-adaptive, goal-oriented grid refinement algorithm in which the finite element analysis is performed on a sequence of refined grids. The grid refinement process is guided by an a posteriori error estimator. The problem is formulated in terms of total potentials where mixed boundary conditions are incorporated. This type of boundary condition is superior to the Dirichlet type of conditions and improves numerical accuracy considerably according to model calculations. We have verified the adaptive finite element algorithm using a two-layered earth with azimuthal anisotropy. The FE algorithm with incorporation of mixed boundary conditions achieves high accuracy. The relative error between the numerical and analytical solutions is less than 1% except in the vicinity of the current source location, where the relative error is up to 2.4%. A 2-D anisotropic model is used to demonstrate the effects of anisotropy upon the apparent resistivity in DC soundings. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种用于二维一般各向异性电导率结构中直流(DC)电阻率建模的自适应有限元(FE)算法。我们的算法是在非结构化三角形网格上实现的,该网格可以轻松容纳复杂的结构,例如地形和浸入层等。我们实现了一种自适应的,面向目标的网格细化算法,其中对一系列细化的网格进行有限元分析。网格细化过程由后验误差估计器指导。该问题是根据结合了混合边界条件的总势来表示的。这种边界条件优于Dirichlet类型的条件,并且根据模型计算可以大大提高数值精度。我们已经使用具有各向异性的两层地球验证了自适应有限元算法。结合混合边界条件的有限元算法可以达到很高的精度。数值解和解析解之间的相对误差小于1%,但在当前源位置附近,相对误差高达2.4%。二维各向异性模型用于证明各向异性对直流测深中视电阻率的影响。 (C)2016 Elsevier B.V.保留所有权利。

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