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A field assessment of high-resolution aquifer characterization based on hydraulic travel time and hydraulic attenuation tomography

机译:基于水力行进时间和水力衰减层析成像的高分辨率含水层表征现场评估

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[1] In this study the potential of an inversion approach based on hydraulic travel time and hydraulic attenuation tomography was assessed. Both hydraulic travel time and hydraulic attenuation tomography are based on the transformation of the transient groundwater flow equation into the eikonal equation using an asymptotic approach. The eikonal equation allows the calculation of pressure propagation and attenuation along trajectories, which is computationally efficient. The attenuation and travel time-based inversion approaches are naturally complementary: hydraulic travel times are determined by the hydraulic diffusivity, a combination of hydraulic conductivity and specific storage, whereas the attenuation is determined solely by specific storage. The potential of our hydraulic tomographical approach was investigated at a well-characterized sand and gravel aquifer located in the Leine River valley near Gottingen, Germany. The database for the hydraulic inversion consists of 392 cross-well slug interference tests performed between five wells, in which the positions of the sources (injection ports) and the receivers (observation ports), isolated with double packer systems, were varied between tests. The results have shown that the combination of hydraulic travel time and hydraulic attenuation tomography allows the reconstruction of the diffusivity and storage distribution in two and three dimensions with a resolution and accuracy superior to that possible with type curve analysis.
机译:[1]在本研究中,评估了基于液压行程时间和液压衰减层析成像的反演方法的潜力。水力行进时间和水力衰减层析成像都基于采用渐近方法将瞬态地下水流量方程式转换为有效方程式的基础。该方程式可以计算沿轨迹的压力传播和衰减,从而提高了计算效率。衰减和基于行进时间的反演方法自然是互补的:水力行进时间由水力扩散率,水力传导率和特定存储量决定,而衰减仅由特定存储量决定。我们在德国哥廷根附近的莱因河谷地的一个特征明确的砂砾石含水层中研​​究了我们的液压层析成像方法的潜力。液压反演的数据库包括在五个井之间进行的392口跨井段塞干扰测试,其中两次封隔器系统隔离的震源(注入口)和接收器(观测口)的位置在测试之间有所不同。结果表明,将液压行程时间和液压衰减层析成像技术相结合,可以重建二维和三维中的扩散率和存储分布,其分辨率和精度要优于类型曲线分析所能达到的。

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  • 来源
    《Water resources research》 |2011年第3期|p.37-48|共12页
  • 作者单位

    Geoscientific Centre, University of Gottingen, Gottingen, Germany.,Now at Department of Earth Sciences, ETH Zurich, Zurich, Switzerland;

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

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

    Geoscientific Centre, University of Gottingen, Gottingen, Germany;

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