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Borehole effect in 2.5D crosshole resistivity tomography

机译:2.5D井间电阻率层析成像中的钻孔效应

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It is well known that borehole fluid effects in crosshole electrical resistivity tomography (ERT) can produce serious image artifacts using conventional inversion algorithms that do not account for borehole effects. Using the analytical solution for an infinitely long borehole model in a half-space, we demonstrated that the borehole effects depend on the borehole radius and on the resistivity contrast between the borehole fluid and the surrounding rock formation. The results also show that the borehole effects arise mainly for the inline data where the current and potential electrodes are placed at the same borehole, and they are not severe for the crosshole data. To overcome the borehole effects in the crosshole ERT surveys, we developed a new 2.5D inversion algorithm incorporating the boreholes. The new inversion algorithm yielded an electrical resistivity image that was devoid of artifacts around the boreholes. (C) 2016 Elsevier B.V. All rights reserved.
机译:众所周知,使用常规的反演算法,井眼电阻层析成像(ERT)中的井眼流体​​效应会产生严重的图像伪影,而传统的反演算法不能解决井眼效应。使用半空间中无限长的井眼模型的解析解,我们证明了井眼效应取决于井眼半径以及井眼流体与周围岩层之间的电阻率对比。结果还表明,井眼效应主要发生在将电流电极和电位电极置于同一井眼的在线数据中,而对于交叉井眼数据并不严重。为了克服井眼ERT测量中的井眼影响,我们开发了一种新的结合井眼的2.5D反演算法。新的反演算法产生的电阻率图像没有钻孔周围的伪影。 (C)2016 Elsevier B.V.保留所有权利。

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