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Γ0 resistivity monitoring for environmental and engineering applications

机译:γ0环境和工程应用的电阻率监测

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Resistivity imaging has become widely used in engineering and environmental applications thanks to enhanced capabilities in the past couple of decades. A problem is ambiguities in the geological interpretation due to similar resistivity or insufficient contrast between different materials. Monitoring, or time-lapse, resistivity investigations can overcome some of these problems, as it makes it possible to separate change in resistivity due to for example chemical composition of pore fluid from the spatial variation due to the geology. The presented results demonstrate that resistivity monitoring is a powerful tool to trace changes in the ground that occur as a result of variation in water, ion or gas content, or temperature. The results show a strong potential for resistivity monitoring in 2D and 3D for engineering and environmental applications. This includes natural or man-induced movement of fluids or gas in natural ground as well as man-made structures, and change in material properties by for example internal erosion. The method can be used not only to monitor transport of water and solutes in the ground, but also to study e.g. the development of plant root systems.
机译:由于过去几十年来,电阻率成像已经广泛用于工程和环境应用中的工程和环境应用。由于不同材料之间的相似电阻率或对比度不充分的对比度,问题是地质解释中的歧义。监测或延时,电阻率调查可以克服这些问题中的一些问题,因为它使得由于例如由于地质的空间变化的孔隙流体的化学成分而分离电阻率的变化。所提出的结果表明,电阻率监测是一种强大的工具,用于追踪由于水,离子或气体含量或温度变化而发生的地面的变化。结果表明,2D和3D用于工程和环境应用的电阻率监测潜力很大。这包括天然或人诱导的天然地或天然气的气体运动以及人造结构,并通过例如内部侵蚀改变材料特性。该方法不仅可以在地面上监测水和溶质的运输,还可以研究。植物根系的发展。

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