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首页> 外文期刊>Vadose Zone Journal >Multiple Tracing Experiments in Unsaturated Fractured Clayey Till
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Multiple Tracing Experiments in Unsaturated Fractured Clayey Till

机译:不饱和裂缝黏土耕层的多次示踪实验

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摘要

Current monitoring and sampling techniques in unsaturated fractured clay often fail to characterize fast preferential flow. To circumvent these problems, an isolated block (3.5 by 3.5 by 3.3 m) of unsaturated fractured clayey till was used for multiple tracing experiments. The setup allowed full control of the water balance in the block. Experiments at three different steady-state flow rates were performed. Multiple tracers with different diffusion coefficients were applied in each experiment to evaluate the influence of diffusive exchange between fractures and the matrix. The tracers included two halogen anions (Cl– and Br–), two fluorobenzoic acids (FBA) (2,3-DFBA and 2,6-DFBA), two fluorescent dyes (uranine and sulforhodamine B), and one colloidal tracer (0.5-µm latex particles). At high flow rates, the obtained tracer breakthrough showed a traditional asymmetrical behavior where a fast peak was followed by a long tailing period. At low flow rates, two of the applied tracers revealed a double peak breakthrough curve, whereas the tracer with the lowest molecular diffusion coefficient showed only one peak. The separation of the tracers was hypothesized to be influenced by extensive diffusion into stagnant areas by the tracers with the high diffusion coefficients. This was supported by the breakthrough curve obtained for the colloidal tracer, which showed earlier breakthrough and only one tracer peak.
机译:目前在不饱和裂隙 粘土中的监测和采样技术往往无法表征快速优先流动。为了避免这些问题,将孤立的不饱和 破裂黏土块(3.5 x 3.5 x 3.3 m)隔离块用于多次追踪实验。 The设置可以完全控制该区块中的水平衡。 在三种不同的稳态流量下的实验 。在每个实验中使用具有不同扩散系数 的多个示踪剂,以评估裂缝与基质之间的 扩散交换的影响。示踪物 包含两种卤素阴离子(Cl – 和Br – ),两种氟苯甲酸 酸(FBA)(2 ,3-DFBA和2,6-DFBA),两种荧光染料(尿素 和磺基若丹明B)和一种胶体示踪剂(0.5-μm 乳胶颗粒)。在高流速下,获得的示踪剂突破 显示出传统的不对称行为,其中快速峰 之后是长拖尾期。在低流速下,应用的两个示踪剂 显示了双峰穿透曲线, ,而分子扩散系数 最低的示踪剂仅显示一个峰。假设示踪剂的分离 受具有高扩散系数的示踪剂广泛扩散到停滞区域 的影响。 得到了胶体 示踪剂的穿透曲线的支持,该曲线显示了较早的突破,并且只有一个示踪剂 peak。

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  • 来源
    《Vadose Zone Journal 》 |2004年第2期| 634-634| 共1页
  • 作者单位

    Geological Institute, Copenhagen University, ?ster Voldgade 10, 1350 Copenhagen, Denmark|Previously at Environment & Resources, Technical University of Denmark, 2800 Lyngby, Denmark;

    Geological Institute, Copenhagen University, ?ster Voldgade 10, 1350 Copenhagen, Denmark|Previously at Environment & Resources, Technical University of Denmark, 2800 Lyngby, Denmark;

    Geological Survey of Denmark and Greenland (GEUS), ?ster Voldgade 10, 1350 Copenhagen, Denmark;

    Geological Survey of Denmark and Greenland (GEUS), ?ster Voldgade 10, 1350 Copenhagen, Denmark;

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