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Rapid field application of hydraulic tomography for resolving aquifer heterogeneity in unconsolidated sediments

机译:水力层析成像技术在野外快速解决非固结沉积物中含水层的非均质性

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摘要

A new framework is introduced for hydraulic tomography application and validation in the field. Our motivation is the need for methods that are both efficient and expressive for resolving the spatial distribution of heterogeneous hydraulic properties in aquifers. The presented strategy involves time-efficient field experiments and a computationally efficient inversion scheme. By exploiting the early travel time diagnostics of the hydraulic pressure pulses recorded during tomographic cross-well tests, and new application of attenuation inversion, only short-term pumping tests are required. Many of these can be conducted in one day. The procedure is developed by a numerical experiment with a highly heterogeneous aquifer analogue and then applied to a field case with a shallow, unconsolidated sedimentary aquifer, the Stegemuehle site in Germany. It is demonstrated that the performance of a suite of tomographic short-term pumping tests, data processing and inversion for the reconstruction of heterogeneous diffusivity and specific storage distribution is possible within one day. Additionally, direct-push injection logging is performed at the field site, and the obtained field data is utilized for successful validation of the hydraulic tomograms. We also compare both methods with respect to the necessary requirements, time demand in the field and complexity of interpretation.
机译:引入了一种新的框架,用于液压层析成像技术的应用和现场验证。我们的动力是需要有效和富于表现力的方法来解决含水层中非均质水力特性的空间分布。提出的策略涉及时间高效的现场实验和计算有效的反演方案。通过利用层析断层井测试中记录的液压脉冲的早期行程时间诊断以及衰减反演的新应用,仅需要进行短期泵送测试。其中许多可以在一天内进行。该程序是通过对高度非均质含水层类似物进行的数值实验开发的,然后应用于德国Stegemuehle站点的浅层,非固结沉积含水层的现场案例。结果表明,在一天之内就可以进行一系列层析X线摄影短期抽气测试,数据处理和反演,以重建异构扩散系数和特定的存储分布。另外,在现场现场进行直接推注测井,并将获得的现场数据用于水力层析成像的成功验证。我们还比较了两种方法的必要要求,现场时间要求和解释的复杂性。

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  • 来源
    《Water resources research》 |2013年第4期|2013-2024|共12页
  • 作者单位

    Department of Earth Sciences, ETH Zurich, Sonneggstrasse 5, Zurich CH-8092, Switzerland;

    Geoscientific Centre, University of Gottingen, Gottingen, Germany;

    Geoscientific Centre, University of Gottingen, Gottingen, Germany;

    Department of Earth Sciences, ETH Zurich, Zurich, Switzerland;

    Department of Earth Sciences, ETH Zurich, Zurich, Switzerland;

    Helmholtz Centre for Environmental Research (UFZ), Department Monitoring and Exploration Technologies, Leipzig, Germany,Center of Applied Geoscience, University of Tubingen, Tubingen, Germany;

    Geoscientific Centre, University of Gottingen, Gottingen, Germany;

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