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Analytical solutions for co- and counter-current imbibition of sorbing, dispersive solutes in immiscible two-phase flow

机译:不混溶两相流中吸附和分散溶质的并流和逆流吸收的解析解决方案

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We derive a set of analytical solutions for the transport of adsorbing solutes in an immiscible, incompressible two-phase system. This work extends recent results for the analytical description for the movement of inert tracers due to capillary and viscous forces and dispersion to the case of adsorbing solutes. We thereby obtain the first known analytical expression for the description of the effect of adsorption, dispersion, capillary forces and viscous forces on solute movement in two-phase flow. For the purely advective transport, we combine a known exact solution for the description of flow with the method of characteristics for the advective transport equations to obtain solutions that describe both co- and spontaneous counter-current imbibition and advective transport in one dimension. We show that for both cases, the solute front can be located graphically by a modified Welge tangent. For the dispersion, we derive approximate analytical solutions by the method of singular perturbation expansion. The solutions reveal that the amount of spreading depends on the flow regime and that adsorption diminishes the spreading behavior of the solute. We give some illustrative examples and compare the analytical solutions with numerical results.
机译:我们得出了一套在不混溶,不可压缩的两相系统中运输溶质的分析解决方案。这项工作扩展了最近的结果,用于分析描述由于毛细管和粘滞力以及分散到吸附溶质的惰性示踪剂的运动。因此,我们获得了第一个已知的解析表达式,用于描述吸附,分散,毛细作用力和粘性作用力对两相流中溶质运动的影响。对于纯对流输运,我们将用于描述流的已知精确解与对流输运方程的特征方法相结合,以获得描述一维同时和自发逆流吸收和对流输运的解决方案。我们表明,对于这两种情况,可以通过修改的Welge切线以图形方式定位溶质前沿。对于色散,我们通过奇异摄动展开法得出近似解析解。该解决方案表明,扩散量取决于流动状态,吸附减少了溶质的扩散行为。我们给出一些说明性的例子,并将解析解与数值结果进行比较。

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