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Determination of Transverse Dispersion Coefficients from Reactive Plume Lengths

机译:从反应羽流长度确定横向色散系数

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With most existing methods, transverse dispersion coefficients are difficult to determine. We present a new, simple, and robust approach based on steady-state transport of a reacting agent, introduced over a certain height into the porous medium of interest. The agent reacts with compounds in the ambient water. In our application, we use an alkaline solution injected into acidic ambient water. Threshold values of pH are visualized by adding standard pH indicators. Since aqueous-phase acid-base reactions can be considered practically instantaneous and the only process leading to mixing of the reactants is transverse dispersion, the length of the plume is controlled by the ratio of transverse dispersion to advection. We use existing closed-form expressions for multidimensional steady-state transport of conservative compounds in order to evaluate the concentration distributions of the react-ing compounds. Based on these results, we derive an easy-to-use expression for the length of the reactive plume; it is proportional to the injection height squared, times the velocity, and inversely proportional to the transverse dispersion coefficient. Solving this expression for the transverse dispersion coefficient, we can estimate its value from the length of the alkaline plume. We apply the method to two experimental setups of different dimension. The computed transverse dispersion coefficients are rather small. We conclude that at slow but realistic ground water velocities, the contribution of effective molecular diffusion to transverse dispersion cannot be neglected. This results in plume lengths that increase with increasing velocity.
机译:对于大多数现有方法,很难确定横向色散系数。我们提出了一种基于反应剂的稳态传输的新的,简单且可靠的方法,该方法以一定高度引入感兴趣的多孔介质中。该试剂与环境水中的化合物反应。在我们的应用中,我们使用注入酸性环境水中的碱性溶液。通过添加标准pH指示剂可以看到pH阈值。由于可以认为水相酸碱反应实际上是瞬时的,并且导致反应物混合的唯一方法是横向分散,因此羽流的长度由横向分散与对流的比率控制。为了评估保守化合物的浓度分布,我们将现有的封闭形式的表达式用于保守化合物的多维稳态传输。根据这些结果,我们得出了一个易于使用的反应羽长度的表达式。它与注入高度的平方成正比,乘以速度,与横向色散系数成反比。通过求解该表达式的横向弥散系数,我们可以从碱性羽流的长度估算其值。我们将该方法应用于两个不同尺寸的实验装置。计算出的横向色散系数很小。我们得出结论,在缓慢但现实的地下水速度下,有效分子扩散对横向扩散的贡献不可忽略。这导致羽状长度随速度增加而增加。

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