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Induced Temperature Gradients to Examine Groundwater Flowpaths in Open Boreholes

机译:感应温度梯度来检查裸眼井中的地下水流动路径

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摘要

Techniques for characterizing the hydraulic properties and groundwater flow processes of aquifers are essential to design hydrogeologic conceptual models. In this study, rapid time series temperature profiles within open-groundwater wells in fractured rock were measured using fiber optic distributed temperature sensing (FO-DTS). To identify zones of active groundwater flow, two continuous electrical heating cables were installed alongside a FO-DTS cable to heat the column of water within the well and to create a temperature difference between the ambient temperature of the groundwater in the aquifer and that within the well. Additional tests were performed to examine the effects of pumping on hydraulic fracture interconnectivity around the well and to identify zones of increased groundwater flow. High- and low-resolution FO-DTS cable configurations were examined to test the sensitivities of the technique and compared with downhole video footage and geophysical logging to confirm the zones of active groundwater flow. Two examples are presented to demonstrate the usefulness of this new technique for rapid characterization of fracture zones in open boreholes. The combination of the FO-DTS and heating cable has excellent scope as a rapid appraisal tool for borehole construction design and improving hydrogeologic conceptual models.
机译:表征含水层水力特性和地下水流动过程的技术对于设计水文地质概念模型至关重要。在这项研究中,使用光纤分布式温度传感(FO-DTS)测量了裂隙岩石中的露天地下水井中的快速时间序列温度分布。为了确定活跃的地下水流区域,在FO-DTS电缆旁边安装了两条连续的电加热电缆,以加热井中的水柱,并在含水层中的地下水环境温度与地下水中的地下水环境温度之间产生温差。好。进行了其他测试,以检查抽水对井周围水力压裂互连性的影响,并确定地下水流量增加的区域。检查了高分辨率和低分辨率的FO-DTS电缆配置,以测试该技术的敏感性,并与井下视频素材和地球物理测井进行比较,以确认活跃的地下水流区域。给出了两个例子,以证明该新技术对于快速表征裸眼井眼中裂缝区域的有用性。 FO-DTS和加热电缆的组合具有出色的应用范围,可作为钻孔施工设计和改进水文地质概念模型的快速评估工具。

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  • 来源
    《Ground water》 |2014年第6期|943-951|共9页
  • 作者单位

    National Centre for Groundwater Research and Training, Flinders University, Adelaide, South Australia, Australia;

    National Centre for Groundwater Research and Training, Flinders University, Adelaide, South Australia, Australia;

    National Centre for Groundwater Research and Training, Flinders University, Adelaide, South Australia, Australia,CSIRO, Water for a Healthy Country National Research Flagship, CSIRO Land and Water, Urrbrae, South Australia, Australia;

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