非均质含水层抽水试验产生的自电位信号

Pub Date : 2020-01-01 DOI:10.21638/spbu07.2020.410
Aleksandra A. Mikhailenko, P. Konosavsky, K. Titov
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引用次数: 0

摘要

本文介绍了非均质含水层抽水试验产生的自电位信号的解释结果。非均质性表现为低导率带和高导率带两种构型:平面边界层和条状层。我们研究了每种非均质类型的五种模型和两种不同的水力导电性。我们使用Modflow(用于水力头和电势)和ElSources(用于电流源项)进行三维建模。得到了泵送试验产生的自电位的SP分布,显示了非均质性。为了详细研究非均质性,我们计算了异常场的值。我们发现,在低水力导电性的非均质情况下,SP与压降之间存在相关性。对于低导水率的区域,我们明确地定义了条带的两个边界。由于非均质层的高导水率和边界处的低水力梯度,带状层的外边界不固定。我们估计了非均质性水平厚度对SP分布的依赖性。研究结果可作为界定含水层非均质性的基础。
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Self-Potential signals produced by pumping test of heterogeneous aquifer
In this paper, we presented results of interpretation of Self-Potential (SP) signals produced by pumping test experiment of heterogeneous aquifer. Heterogeneity is represented by zone with low and high hydraulic conductivity in two types of configuration: planned boundary and strip-layer. We studied five models for each type of heterogeneity with two variants of hydraulic conductivity. We carried out three-dimensional modelling with the use of Modflow (for hydraulic heads and electrical potentials) and ElSources (for current source term). We obtained SP distributions Self-Potential produced by pumping test which indicate heterogeneity. We calculated the values of the anomalous field for a detailed study of the heterogeneties. We found a correlation between SP and drawdown for the case of heterogeneity with low hydraulic conductivity. We defined the both boundaries of the strip clearly for zone with low hydraulic conductivity. The outer boundary of the strip-layer was not fixed due to the high hydraulic conductivity of the heterogeneity and low hydraulic gradient at the boundary. We estimated dependence of horizontal thickness of heterogeneity on SP distribution. The results can serve as a base for defining the heterogeneties in the aquifer.
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