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首页> 外文期刊>Advances in Water Resources >Reaction Rates And Effective Parameters In Stratified Aquifers
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Reaction Rates And Effective Parameters In Stratified Aquifers

机译:分层含水层中的反应速率和有效参数

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摘要

Chemical species are advected by water and undergo mixing processes due to effects of local diffusion and/or dispersion. In turn, mixing causes reactions to take place so that the system can locally equilibrate. In general, a multicomponent reactive transport problem is described through a system of coupled nonlinear partial differential equations. Under instantaneous chemical equilibrium, a complex geochemical problem can be highly simplified by fully defining the system in terms of conservative quantities, termed master species or components, and the space-time distribution of reaction rates. We investigate the parameters controlling reaction rates in a heterogeneous aquifer at short distances from the source. Hydraulic conductivity at this scale is modeled as a random process with highly anisotropic correlation structure. In the limit for very large horizontal integral scales, the medium can be considered as stratified. Upon modeling transport by means of an ADE (Advection Dispersion Equation), we derive closed-form analytical solutions for statistical moments of reaction rates for the particular case of negligible transverse dispersion. This allows obtaining an expression for an effective hydraulic conductivity, K_(eff)~R, as a representative parameter describing the mean behavior of the reactive system. The resulting K_(eff)~R is significantly smaller than the effective conductivity representative of the flow problem. Finally, we analyze numerically the effect of accounting for transverse local dispersion. We show that transverse dispersion causes no variation in the distribution of (ensemble) moments of local reaction rates at very short travel times, while it becomes the dominant effect for intermediate to large travel times.
机译:由于局部扩散和/或分散的影响,化学物质会被水输送并经历混合过程。反过来,混合会使反应发生,从而使系统可以局部平衡。通常,通过耦合的非线性偏微分方程组来描述多组分反应输运问题。在瞬时化学平衡下,可以通过根据保守量,称为主要物种或主要成分以及反应速率的时空分布完全定义系统,从而高度简化复杂的地球化学问题。我们研究了在距源头很短距离的非均质含水层中控制反应速率的参数。在这个规模上的水力传导率被建模为具有高度各向异性相关结构的随机过程。在非常大的水平积分比例的极限中,可以将介质视为分层介质。在通过ADE(对流弥散方程)对输运进行建模时,我们得出了可忽略的横向弥散情况下反应速率统计矩的闭式解析解。这允许获得有效水力传导率的表达式K_(eff)〜R,作为描述反应性系统平均性能的代表参数。所得的K_(eff)〜R明显小于代表流动问题的有效电导率。最后,我们通过数值分析考虑横向局部色散的影响。我们表明,横向色散在很短的行程时间内不会引起局部反应速率的(整体)矩的分布变化,而对于中等到较大的行程时间则成为主要作用。

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