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Combined influences of viscous fingering and solvent effect on the distribution of adsorbed solutes in porous media

机译:粘性指法和溶剂效应对多孔介质中吸附溶质分布的综合影响

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摘要

The displacement of two fluids in a porous medium can be affected by a viscous fingering instability (VF) that arises at the interface between the fluids when their viscosities are different. In parallel, one of the fluids may contain solutes that reversibly adsorb on the porous matrix at a rate that depends on the composition of the two-fluid mixture, a so-called solvent strength effect. In some systems encountered for instance in liquid chromatographic columns or in underground flows in environmental applications, both VF and solvent strength effects may combine to influence the spatio-temporal distribution of solutes. Here, a computational investigation of such dynamics is performed. The distribution of the solute in the porous medium is affected by the combined effects of VF and solvent strength. A three component system (displacing fluid, sample solvent and solute) is modeled using Darcy's law for the fluid flow velocity coupled to a convection-diffusion equation for the sample solvent and a mass balance equation for the solute in the mobile and stationary phases. The sample solvent is assumed to have a larger solvent strength than the displacing fluid, in which the retention parameter due to the linear adsorption of the solute depends exponentially on the concentration of the sample solvent. A parametric study of the influences of the factors controlling the VF and solvent strength effects on the displacement velocity of the fronts of solute zone and on its width along the porous medium has been performed by direct numerical simulation of the governing equations. While each of the two effects (VF and solvent strength effects) distorts and significantly increases the broadening of the solute zone, the simulations reveal that, when they are acting in combination, these solute zone perturbations are reduced. This journal is © the Partner Organisations 2014.
机译:两种流体在多孔介质中的置换可能会受到粘性指法不稳定性(VF)的影响,当流体的粘度不同时,这种粘度会在流体之间的界面处产生。并行地,一种流体可以包含以取决于两种流体混合物的组成的速率可逆地吸附在多孔基质上的溶质,即所谓的溶剂强度效应。在某些系统中,例如在液相色谱柱中或在环境应用中的地下流动中,VF和溶剂强度效应可能会结合在一起影响溶质的时空分布。在此,进行这种动力学的计算研究。溶质在多孔介质中的分布受VF和溶剂强度的综合影响。使用流体流动速度的达西定律,样品溶剂的对流扩散方程和溶质在流动相和固定相中的质量平衡方程,结合达西定律对三组分系统(置换流体,样品溶剂和溶质)进行建模。假定样品溶剂比置换液具有更大的溶剂强度,其中由于溶质的线性吸附而导致的保留参数与样品溶剂的浓度成指数关系。通过直接对控制方程进行数值模拟,对控制VF和溶剂强度影响因素对溶质区前沿移动速度及其沿多孔介质宽度的影响进行了参数研究。虽然两种效应(VF和溶剂强度效应)中的每一种都扭曲并显着增加了溶质区的展宽,但模拟显示,当它们共同作用时,这些溶质区的扰动会减少。该期刊为©合作伙伴组织2014。

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