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Time-lapse electrical resistivity tomography of a water infiltration test on Johannishus Esker, Sweden

机译:瑞典Johannishus Esker渗水试验的延时电阻层析成像

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摘要

Managed aquifer recharge (MAR) is an efficient way to remove organic matter from raw water and, at the same time, reduce temperature variation. Two MAR sites were constructed by Karlskrona municipality on Johannishus Esker in Sweden. One of these sites, VAyenng, was monitored for electrical conductivity and electrical resistivity (using electrical resistivity tomography - ERT) during a 9-week tracer infiltration test. The aim of the monitoring was to map the pathways of the infiltrated water, with the overall goal to increase the efficiency of the MAR. ERT proved useful in determining both the nature of the esker formation and the water migration pathways. In VAyenng, the esker ridge follows a tectonically controlled paleo-valley. The fault/fracture zone in the bedrock along this paleo-valley was mapped. During the tracer test, the infiltrated water was detected in the area close to the infiltration ponds, whereas far-situated observation wells were less affected. For sequential infiltration and recharge periods in MAR, the timing of the well pumping is another important factor. Natural groundwater flow direction was a determinant in the infiltration process, as expected. ERT measurements provide supplementary data for site selection, for monitoring the functionality of the MAR sites, and for revealing the geological, hydrogeological and structural characteristics of the site.
机译:有管理的含水层补给(MAR)是一种有效的方法,可以从原水中去除有机物,同时减少温度变化。 Karlskrona市政府在瑞典的Johannishus Esker建造了两个MAR站点。在9周的示踪剂渗透测试中,对其中一个地点VAyenng进行了电导率和电阻率监测(使用电阻率层析成像-ERT)。监测的目的是绘制渗透水的路径,总体目标是提高MAR的效率。事实证明,ERT有助于确定聚醚形成的性质和水迁移路径。在瓦扬格(VAyenng),埃斯克(Esker)山脊遵循构造控制的古河谷。沿着该古谷绘制了基岩中的断层/断裂带。在示踪剂测试期间,在靠近渗透池的区域中检测到渗透水,而位于远处的观察井受到的影响较小。对于MAR中的连续渗透和补给期,抽井时间是另一个重要因素。如所预期的那样,天然地下水的流动方向是渗透过程的决定因素。 ERT测量为站点选择,监测MAR站点的功能以及揭示站点的地质,水文地质和结构特征提供了补充数据。

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