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Use of tandem circulation wells to measure hydraulic conductivity without groundwater extraction

机译:使用串联循环井测量水力传导率而无需抽取地下水

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摘要

Conventional methods to measure the hydraulic conductivity of an aquifer on a relatively large scale (10-100 m) require extraction of significant quantities of groundwater. This can be expensive, and otherwise problematic, when investigating a contaminated aquifer. In this study, innovative approaches that make use of tandem circulation wells to measure hydraulic conductivity are proposed. These approaches measure conductivity on a relatively large scale, but do not require extraction of groundwater. Two basic approaches for using circulation wells to measure hydraulic conductivity are presented; one approach is based upon the dipole-flow test method, while the other approach relies on a tracer test to measure the flow of water between two recirculating wells. The approaches are tested in a relatively homogeneous and isotropic artificial aquifer, where the conductivities measured by both approaches are compared to each other and to the previously measured hydraulic conductivity of the aquifer. It was shown that both approaches have the potential to accurately measure horizontal and vertical hydraulic conductivity for a relatively large subsurface volume without the need to pump groundwater to the surface. Future work is recommended to evaluate the ability of these tandem circulation wells to accurately measure hydraulic conductivity when anisotropy and heterogeneity are greater than in the artificial aquifer used for these studies.
机译:在较大规模(10-100 m)上测量含水层水力传导率的常规方法需要抽取大量地下水。在调查受污染的含水层时,这可能会很昂贵,否则会带来问题。在这项研究中,提出了利用串联循环井测量水力传导率的创新方法。这些方法可在较大范围内测量电导率,但不需要抽取地下水。提出了两种使用循环井测量水力传导率的基本方法:一种方法是基于偶极子流测试方法,而另一种方法是依靠示踪剂测试来测量两个循环井之间的水流。这些方法在相对均匀且各向同性的人造含水层中进行测试,其中将两种方法测得的电导率相互比较,并与先前测得的含水层的水力传导率进行比较。结果表明,这两种方法都有潜力在相对较大的地下体积中准确测量水平和垂直水力传导率,而无需将地下水泵送到地表。当各向异性和非均质性大于用于这些研究的人工含水层时,建议未来的工作来评估这些串联循环井准确测量水力传导率的能力。

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