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首页> 外文期刊>Advances in Water Resources >Characterizing hyporheic transport processes - Interpretation of electrical geophysical data in coupled stream-hyporheic zone systems during solute tracer studies
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Characterizing hyporheic transport processes - Interpretation of electrical geophysical data in coupled stream-hyporheic zone systems during solute tracer studies

机译:表征流变输运过程-在溶质示踪剂研究期间解释流-流变耦合带系统中的电地球物理数据

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摘要

Quantifying hyporheic solute dynamics has been limited by our ability to assess the magnitude and extent of stream interactions with multiple domains: mobile subsurface storage (MSS, e.g., freely flowing pore water) and immobile subsurface storage (ISS, e.g., poorly connected pore water). Stream-tracer experiments coupled with solute transport modeling are frequently used to characterize lumped MSS and ISS dynamics, but are limited by the ability to sample only "mobile" water and by window of detection issues. Here, we couple simulations of near-surface electrical resistivity (ER) methods with conservative solute transport to directly compare solute transport with ER interpretations, and to determine the ability of ER to predict spatial and temporal trends of solute distribution and transport in stream-hyporheic systems. Results show that temporal moments from both ER and solute transport data are well correlated for locations where advection is not the dominant solute transport process. Mean arrival time and variance are especially well-predicted by ER interpretation, providing the potential to estimate rate-limited mass transport (i.e. diffusive) parameters from these data in a distributed domain, substantially increasing our knowledge of the fate and transport of subsurface solutes.
机译:定量流变溶质动力学受到我们评估与多个区域的流相互作用的大小和程度的能力的限制:流动的地下存储(MSS,例如自由流动的孔隙水)和固定的地下存储(ISS,例如连通性差的孔隙水) 。流示踪剂实验与溶质运移模型相结合经常用于表征集总MSS和ISS动力学,但受到仅对“流动”水采样的能力和检测问题窗口的限制。在这里,我们将近地电阻率(ER)方法的模拟与保守的溶质运移相结合,以直接比较溶质运移与ER解释,并确定ER预测流-液流中溶质分布和运移的时空趋势的能力系统。结果表明,对于平流不是主要溶质运移过程的位置,来自ER和溶质运移数据的瞬时矩具有很好的相关性。平均到达时间和方差可以通过ER解释得到很好的预测,从而有可能从分布域中的这些数据中估算速率受限的物质传输(即扩散)参数,从而大大增加了我们对地下溶质的命运和传输的了解。

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  • 来源
    《Advances in Water Resources》 |2010年第11期|p.1320-1330|共11页
  • 作者单位

    Department of Civil and Environmental Engineering, The Pennsylvania State University, 212 Sackett Building, University Park, PA 16802, USA;

    Department of Civil and Environmental Engineering, The Pennsylvania State University, 212 Sackett Building, University Park, PA 16802, USA;

    Department of Geosciences, The Pennsylvania State University, University Park, PA 16802, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hyporheic; hydrogeophysics; electrical resistivity; stream solute;

    机译:流泪水文地球物理电阻率流溶质;

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