Evaluation of Electrical and Electromagnetic Geophysical Techniques to Inspect Earthen Dam and Levee Structures in Arkansas

IF 1 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL
R. Adams, B. Miller, W. Kress, S. Ikard, Jason D. Payne, Walter H. Killion
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Abstract

Within the State of Arkansas, there is an increasing number of aging dams and levees that have little to no documentation concerning their construction or composition. Surface geophysical surveys offer a non-intrusive method for investigating these structures to describe their lithologic makeup, evaluate the materials constructed upon, and identify potential flow paths through them. Techniques such as electrical resistivity tomography, seismic refraction, and electromagnetic induction have been used to image dams and levees. They require additional information from geologic outcrops, geotechnical borings, or drill cores to make informed geologic interpretations of the geophysical models. These geologic models then allow the owners of these structures to make more informed decisions about their operation and maintenance. Between 2011 and 2018, the U.S. Geological Survey conducted geophysical and geotechnical investigations of three earthen structures in Arkansas. Electrical and electromagnetic geophysical data were used to develop lithologic models of these structures and characterize the underlying geology. Self-potential surveys were utilized to detect the movement of water through these structures and identify any possible seepage pathways. Geotechnical methods such as electric and hydraulic direct-push well logs and cores acted as a control on the geophysical interpretations and a confirmation of anomalies. This integrated approach detected the lack of an impermeable core within a levee, imaged a change in lithology of the bedrock forming the seal beneath a gravity dam, and identified a potential seepage feature within the core of an earthen dam. These results further support that this method of extending known lithologic features via surface and borehole geophysics is a useful approach for characterizing earthen water-control structures.
阿肯色州土坝和堤坝结构检测的电、电磁地球物理技术评价
在阿肯色州,有越来越多的老化水坝和防洪堤,几乎没有关于它们的建造或组成的文件。地面地球物理测量提供了一种非侵入式的方法来研究这些结构,以描述它们的岩性组成,评估其上的物质,并确定通过它们的潜在流动路径。诸如电阻率层析成像、地震折射和电磁感应等技术已被用于对水坝和堤坝进行成像。他们需要从地质露头、岩土工程钻孔或钻芯中获得额外的信息,以便对地球物理模型做出明智的地质解释。这些地质模型允许这些结构的所有者对其操作和维护做出更明智的决策。2011年至2018年期间,美国地质调查局对阿肯色州的三个土质结构进行了地球物理和岩土工程调查。利用电和电磁地球物理数据建立了这些构造的岩性模型,并描述了下伏地质特征。利用自电位测量来探测水通过这些结构的运动,并确定任何可能的渗透途径。岩土工程方法,如电力和水力直推测井和岩心,可以控制地球物理解释和异常确认。这种综合方法可以检测到堤坝内缺乏防渗岩心,对重力坝下形成密封层的基岩岩性变化进行成像,并识别土坝岩心内潜在的渗流特征。这些结果进一步证明,这种通过地面和钻孔地球物理扩展已知岩性特征的方法是表征土控水构造的有效方法。
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来源期刊
Journal of Environmental and Engineering Geophysics
Journal of Environmental and Engineering Geophysics 地学-地球化学与地球物理
CiteScore
2.70
自引率
0.00%
发文量
13
审稿时长
6 months
期刊介绍: The JEEG (ISSN 1083-1363) is the peer-reviewed journal of the Environmental and Engineering Geophysical Society (EEGS). JEEG welcomes manuscripts on new developments in near-surface geophysics applied to environmental, engineering, and mining issues, as well as novel near-surface geophysics case histories and descriptions of new hardware aimed at the near-surface geophysics community.
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