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Experimental investigation of solute transport in unsaturated fractured rock

机译:非饱和裂隙岩溶质运移实验研究

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摘要

An experiment is designed to perform tracer tests in an unsaturated fractured rock with a horizontal fracture. Data from an intact and an artificial sandstone sample was collected and used to discuss the effect of the fracture on tracer migration. The delay time of the tracer in the fracture was further determined in terms of the fracture aperture involved. An alternative electrical conductivity (or electrical resistance) method was developed to measure the change in the tracer concentration with time and space. The method causes no disturbance to the flow and concentration fields, and is convenient to use. The test results show the fluctuations in the tracer concentrations and there were 2-3 peak values of concentration in the monitored sections related to the heterogeneity of the water content and pore distribution. Also, the fracture was found to delay migration of the tracer before it is filled with the tracer solution and quicken the velocity of migration afterwards. This results in accumulation of the tracer near the fracture. Furthermore, the delay time of the tracer increases with fracture aperture in a nonlinear manner.
机译:设计了一个实验来对具有水平裂缝的非饱和裂缝岩石进行示踪剂测试。收集了完整和人造砂岩样品的数据,并将其用于讨论裂缝对示踪剂迁移的影响。示踪剂在裂缝中的延迟时间进一步根据所涉及的裂缝孔径来确定。开发了另一种电导率(或电阻)方法来测量示踪剂浓度随时间和空间的变化。该方法对流场和浓度场无干扰,使用方便。测试结果表明示踪剂浓度的波动,并且在受监测区域中存在2-3个浓度峰值,这与含水量和孔隙分布的不均匀性有关。同样,发现裂缝在示踪剂溶液充满示踪剂之前延迟了其迁移,并加快了之后的迁移速度。这导致示踪剂在裂缝附近堆积。此外,示踪剂的延迟时间随着裂缝孔径的增加而非线性增加。

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