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Investigating sediments and rock structures beneath a river using underwater ERT

机译:使用水下ERT研究河流下的沉积物和岩石结构

摘要

This article presents hydrogeophysical investigations performed in a well-developed, long-term hydrogeological gypsum karst research site where subsurface evaporite dissolution has led to the subsidence of a river dam and an adjacent highway; both constructed on gypsum-containing rock, southeast of Basel, Switzerland. An observation system was set up to improve the protection of surface and subsurface water resources during remedial construction measures of the highway and in order to understand the processes, as well as the temporal evolution, of rock water interaction (flow and dissolution). However, no detailed hydrogeological information beneath the river could be derived from the previous investigations. To supplement the basic knowledge on this area, underwater Electrical Resistivity Tomography (ERT) measurements were conducted in the river bed upstream of the dam. The ERT-data are interpreted together with drill-core information and a conceptual 3D-Model of the area behind the dam and beneath the river. Results help to delineate weathered zones, associated faults and the thickness of sediment deposits behind the dam, as well as to locate voids within the local karst system. The combination of the ERT and modeling allows the optimization of future site-specific remedial construction measures.
机译:本文介绍了在一个发达的长期水文地质石膏喀斯特研究现场进行的水文地球物理研究,该研究中心地下的蒸发物溶解导致了河坝和相邻公路的沉降。两者均建在瑞士巴塞尔东南部的含石膏岩石上。建立了一个观测系统,以在高速公路的补救性施工措施期间改善对地表和地下水资源的保护,并了解岩石水相互作用(流动和溶解)的过程以及时间演变。但是,先前的调查无法得出河底的详细水文地质信息。为了补充该领域的基础知识,在大坝上游的河床中进行了水下电阻层析成像(ERT)测量。 ERT数据与钻芯信息以及大坝后方和河底地区的概念性3D模型一起进行解释。结果有助于划定风化带,相关断层和大坝后方沉积物的厚度,以及确定局部岩溶系统内的空隙。 ERT和建模的结合可以优化将来针对特定地点的补救措施。

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