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首页> 外文期刊>Journal of Applied Geophysics >3D modeling and inversion of the electrical resistivity tomography using steel cased boreholes as long electrodes
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3D modeling and inversion of the electrical resistivity tomography using steel cased boreholes as long electrodes

机译:使用钢制套管孔作为长电极的3D建模和电阻率层析成像反演

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摘要

Electrical resistivity tomography using a steel cased borehole as a long electrode is an advanced technique for geoelectrical survey based on the conventional mise-à-la-masse measurement. In most previous works, the steel casing is simplified as a transmission line current source with an infinitely small radius and constant current density. However, in practical stratified formationswith different resistivity values, the current density along the casing cannot be constant. In this study, the steel casing is modeled by a conductive physical volume that the casing occupies in the finite element mesh. The current supply point is set on the center of the top surface of the physical volume. Synthetic modeling, using both a homogenous and layered formation, demonstrates reasonability of the forward modeling method proposed herein. Based on this forward modeling method, the inversion procedure can be implemented by using a freeware R3t (Lancaster University, UK). Inversion results of synthetic modeling data match fairly well with the defined target location and validate that the method works on the inversion of the casing-surface electrical resistivity data. Finally, a field example of Changqing oil field in China is carried out using the inversion method to image water flooding results and to discover wells with great potential to enhance residual oil recovery.
机译:使用钢制套管钻孔作为长电极的电阻层析层析成像技术是基于常规的“ masse-la-m-mass”测量的先进地电勘测技术。在大多数以前的工作中,钢壳被简化为具有无限小半径和恒定电流密度的传输线电流源。然而,在具有不同电阻率值的实际分层结构中,沿套管的电流密度不能恒定。在这项研究中,钢套管是通过在有限元网格中占据的导电物理体积建模的。供电点设置在物理体积顶面的中心。使用同质和分层结构的合成建模证明了本文提出的正向建模方法的合理性。基于这种正向建模方法,可以使用免费软件R3t(英国兰开斯特大学)来实现反演过程。综合建模数据的反演结果与定义的目标位置相当吻合,并证明该方法可用于套管表面电阻率数据的反演。最后,利用反演方法对中国长庆油田进行了实例分析,对注水效果进行了成像,发现了具有提高剩余油采收率潜力的油井。

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