Cross-Borehole ERT: Sensitivity, Model Resolution, and Field Data Quality

L. M. Madsen, A. Kühl, L. Levy, A. Christiansen
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Abstract

Summary Sensitivity, resolution, and data quality are important parameters to consider when designing an ERT cross-borehole survey. We present an open-source algorithm for computing 2D and 3D sensitivity patterns of any borehole setup and use this to compare single-borehole and different cross-borehole electrode configurations, which both show complex patterns. To study the resolution capability of an entire survey, the model resolution matrix is computed for a field dataset. The dataset is split into different electrode configurations and the model resolution matrices of the different configuration are compared. The results show that the sensitivity and resolution decreases very quickly away from the electrodes, especially for the single-borehole configurations. In the studied field case, this means cross-borehole configurations are needed to correctly image the area between the boreholes, even though the cross-borehole data often are associated with a lower signal-to-noise ratio due to near-zero potential measurements and generally more outliers. The study concludes that in a production mode, where acquisition time and thus the number of possible data points are limited, the combination of electrode configurations must be carefully considered and a trade-off between resolution and data quality must be evaluated.
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井间ERT:灵敏度、模型分辨率和现场数据质量
灵敏度、分辨率和数据质量是设计ERT井间测量时需要考虑的重要参数。我们提出了一种开源算法,用于计算任何井眼设置的2D和3D灵敏度模式,并使用该算法来比较单井眼和不同的交叉井眼电极配置,两者都显示出复杂的模式。为了研究整个调查的分辨率能力,计算了一个野外数据集的模型分辨率矩阵。将数据集分成不同的电极配置,并比较不同配置下的模型分辨率矩阵。结果表明,在远离电极的情况下,灵敏度和分辨率下降得非常快,特别是对于单孔结构。在研究的现场案例中,这意味着需要采用井间配置来正确成像井间区域,尽管由于接近于零的电位测量值,井间数据通常具有较低的信噪比,而且通常有更多的异常值。该研究得出结论,在生产模式下,采集时间和可能的数据点数量有限,必须仔细考虑电极配置的组合,并评估分辨率和数据质量之间的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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