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Anomalous transport of colloids and solutes in a shear zone

机译:剪切带中胶体和溶质的异常输送

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Transport experiments with colloids and radionuclides in a shear zone were conducted during the Colloid and Radionuclide Retardation experiment (CRR) at Nagra's Grimsel Test Site. Breakthrough curves of bentonite colloids and uranine, a non-sorbing solute, were measured in an asymmetric dipole flow field. The colloid breakthrough is earlier than that of uranine. Both breakthrough curves show anomalously long late time tails and the slope of the late time tails for the colloids is slightly higher. Anomalous late time tails are commonly associated with matrix diffusion processes; the diffusive interaction of solutes transported in open channels with the adjacent porous rock matrix or zones of stagnant water. The breakthrough curves for different colloid size classes are very similar and show no signs of fractionation due to their (size-dependent) diffusivity. It is proposed that tailing of the colloids is mainly caused by the structure of the flow field and that for the colloid transport, matrix diffusion is of minor importance. This has consequences for the interpretation of the uranine breakthrough. Comparisons of experimental results with numerical studies and with the evaluation of the colloid breakthrough with continuous time random theory imply that the tailing in the conservative solute breakthrough in this shear zone is not only caused by matrix diffusion. Part of the tailing can be attributed to advective transport in fracture networks and advection in low velocity regions. Models based on the advection-dispersion equation and matrix diffusion do not properly describe the temporal and spatial evolution of colloid and solute transport in such systems with a consistent set of parameters.
机译:在Nagra的Grimsel试验场进行的胶体和放射性核素延迟试验(CRR)期间,在剪切区内进行了胶体和放射性核素的运输实验。在不对称偶极流场中测量了膨润土胶体和尿素(一种非吸附性溶质)的穿透曲线。胶体突破要早于尿酸。两条突破曲线均显示异常长的晚尾,而胶体的晚尾的斜率略高。异常的延迟时间尾部通常与矩阵扩散过程有关。在明渠中运输的溶质与相邻的多孔岩石基质或积水区域的扩散相互作用。不同胶体尺寸类别的穿透曲线非常相似,并且由于它们(与尺寸有关)的扩散性而没有显示分离迹象。有人提出,胶体的拖尾主要是由流场的结构引起的,对于胶体的运输,基质扩散的重要性不大。这对解释尿酸突破具有影响。将实验结果与数值研究进行比较,并通过连续时间随机理论对胶体突破进行评估,这表明该剪切区中保守溶质突破的拖尾不仅是由于基质扩散引起的。部分尾矿可归因于裂缝网络中的对流输运和低速区域中的对流。基于对流扩散方程和矩阵扩散的模型无法正确描述此类系统中具有一致参数集的胶体和溶质运移的时空演变。

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