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Field test to compare 3D imaging capabilities of three arrays in a site with high resistivity contrast regions

机译:现场测试以比较具有高电阻率对比区域的站点中三个阵列的3D成像能力

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摘要

The applicability of three kinds of electrode configurations used to delineate a buried horizontal pipe was studied. A 3D resistivity imaging survey was carried out along eight parallel lines using pole-pole, pole-dipole, and dipole-dipole arrays with 1m minimum electrode spacings. Roll-along measurements were carried out to cover a rectangular grid. The 2D and 3D least squares algorithms based on the robust inversion method were used in the inversion of the apparent resistivity data sets. The 2D inversion of data sets could not delineate the orientation and dimension of the subsurface anomalies clearly. To obtain more accurate results, a 3D joint inversion of the pole-pole and pole-dipole data sets was performed, as well as of pole-pole and dipole-dipole data sets. In this case, both horizontal and vertical dimensions of subsurface structures were resolved. The resulting model obtained from each array was compared to those of joint inversion method. The result showed that the horizontal resolution does not improve so much as that in the vertical direction when joint inversion is applied.
机译:研究了用于描绘水平埋管的三种电极结构的适用性。使用极-极,极-偶极和偶极-偶极阵列(电极间距最小为1m)沿着八条平行线进行了3D电阻率成像调查。进行滚动测量以覆盖矩形网格。在视电阻率数据集的反演中使用了基于鲁棒反演方法的2D和3D最小二乘算法。数据集的二维反演无法清晰地描述地下异常的方向和尺度。为了获得更准确的结果,对极-极和极-偶极数据集以及极-极和偶极-偶极数据集进行了3D联合反演。在这种情况下,解决了地下结构的水平和垂直尺寸。从每个阵列获得的模型与联合反演方法进行了比较。结果表明,采用联合反演后,水平分辨率的改善不如垂直方向的改善。

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