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Noninvasive monitoring of DNAPL migration through a saturated porous medium using electrical impedance tomography

机译:使用电阻抗层析成像技术无创监测DNAPL通过饱和多孔介质的迁移

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Electrical impedance tomography (EIT) was used to monitor the movement of a fluorinated hydrocarbon dense nonaqueous phase liquid (DNAPL) through a saturated porous medium within a laboratory column. Impedance measurements were made using a horizontal plane of 12 electrodes positioned at regular intervals around the centre of the column. A 2D inversion algorithm, which incorporated the cylindrical geometry of the column, was used to reconstruct resistivity and phase images from the measured data. Differential time-lapse images of DNAPL movement past the plane of electrodes were generated by the cell-by-cell subtraction of resistivity and phase baseline models from those associated with the DNAPL release stage of the experiment. The DNAPL pulse was clearly delineated as resistive anomalies in the differential time-lapse resistivity images. The spatial extent of the resistive anomalies indicated that in addition to vertical migration, some lateral spreading of the DNAPL had occurred. Residual contamination could be detected after quasi-static conditions were reestablished. Residual DNAPL saturation was estimated from the resistivity model data by applying Archie's second equation. Despite significant measured phase changes due to DNAPL contamination, the differential phase images revealed only weak anomalies associated with DNAPL flow; these anomalies could be seen only in the initial stages of the experiment during peak flow through the plane of electrodes.
机译:电阻抗断层扫描(EIT)用于监测氟化烃稠密非水相液体(DNAPL)通过实验室色谱柱内饱和多孔介质的运动。使用围绕圆柱体中心以固定间隔放置的12个电极的水平面进行阻抗测量。二维二维反演算法结合了圆柱的圆柱几何形状,用于从测量数据中重建电阻率和相位图像。 DNAPL运动通过电极平面的延时图像是通过与实验的DNAPL释放阶段相关的电阻率和相基线模型逐个单元相减而生成的。在差分延时电阻率图像中,将DNAPL脉冲清楚地描绘为电阻异常。电阻异常的空间范围表明,除了垂直迁移外,DNAPL还发生了一些横向扩散。重新建立准静态条件后,可以检测到残留污染。通过应用Archie的第二个方程,从电阻率模型数据中估算出残留的DNAPL饱和度。尽管由于DNAPL污染导致测量到的显着相位变化,但差分相位图像仅显示与DNAPL流量相关的微弱异常。这些异常现象只能在实验的初始阶段,即通过电极平面的峰值流量时才能看到。

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