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Use of block inversion in the 2-D interpretation of apparent resistivity data and its comparison with smooth inversion

机译:块反演在视电阻率数据的二维解释中的应用及其与平滑反演的比较

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The ability of a block inversion scheme, in which polygons are employed to define layers and/or bodies of equal resistivity, in determining the geometry and true resistivity of subsurface structures has been investigated and a simple strategy for deriving the starting model is proposed. A comparison has also been made between block inversion and smooth inversion, the latter being a cell-based scheme. The study entailed the calculation (by forward modelling) of the synthetic data over 2-D geologic models and inversion of the data. The 2-D structures modelled include vertical fault, graben and horst. The Wenner array was used. The results show that the images obtained from smooth inversion are very useful in determining the geometry; however, they can only provide guides to the true resistivity because of the smearing effects. It is shown that the starting model for block inversion can be based on a plane layer earth model. In the presence of sharp, rather than gradational, resistivity discontinuities, the model from block inversion more adequately represents the true subsurface geology, in terms of both the geometry and the formation resistivity. Field examples from a crystalline basement area of Nigeria are presented to demonstrate the versatility of the two resistivity inversion schemes. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 25]
机译:在确定地下结构的几何形状和真实电阻率的过程中,研究了采用多边形定义层和/或电阻率相等的物体的块反演方案的能力,并提出了推导初始模型的简单策略。在块反转和平滑反转之间也进行了比较,后者是基于单元的方案。该研究需要通过二维地质模型对合成数据进行计算(通过正演建模)并进行数据反演。建模的二维结构包括垂直断层,grab陷和地壳。使用了Wenner阵列。结果表明,从平滑反演中获得的图像对于确定几何形状非常有用。但是,由于拖尾效应,它们只能提供有关真实电阻率的指南。结果表明,块反演的起始模型可以基于平面层地球模型。在存在尖锐的而不是渐变的电阻率不连续性的情况下,就几何学和地层电阻率而言,来自区块反演的模型更能充分代表真实的地下地质。介绍了尼日利亚一个晶体基底区域的现场实例,以证明这两种电阻率反演方案的多功能性。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:25]

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