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Effects of sorption on transverse mixing in transient flows

机译:吸附对瞬态流动中横向混合的影响

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Transverse mixing has been identified as a potentially limiting factor for natural attenuation of plumes originating from continuously emitting sources. Under steady-state flow conditions, dispersion is the only process leading to lateral mixing. This process is very slow and cannot explain the lateral spread of plumes observed in the field. When the flow direction fluctuates with time, transverse dispersion is slightly enhanced, but not very pronounced. Under these flow conditions, however, sorption can contribute to mixing into the mean transverse direction. If the reacting compounds differ in their strength of sorption, chromatographic mixing and separation alternate in time-periodic flows. For instantaneous sorption, the plumes may overlap within a stripe of fixed width. In contrast to sorption in local equilibrium, kinetic sorption contributes to mixing also for compounds with identical sorption strength. I derive an analytical expression for the equivalent transverse dispersion coefficient of a kinetically sorbing compound in a spatially uniform flow field undergoing sinusoidal fluctuations in time. This expression may be used for reactive transport calculations in an equivalent domain with constant flow. The effects are the strongest for compounds with a dimensionless partitioning coefficient of about unity, slow sorption kinetics, and slowly fluctuating velocities. For realistic parameters, kinetic sorption contributes to transverse mixing in the same range as heterogeneity.
机译:横向混合已被确定为源自连续发射源的羽流自然衰减的潜在限制因素。在稳态流动条件下,分散是导致侧向混合的唯一过程。这个过程非常缓慢,无法解释在野外观察到的羽流的横向扩散。当流动方向随时间波动时,横向分散会稍微增强,但不是很明显。但是,在这些流动条件下,吸附会有助于混合到平均横向方向上。如果反应化合物的吸附强度不同,则色谱混合和分离会在时间周期内交替进行。为了瞬时吸附,羽流可以在固定宽度的条带内重叠。与局部平衡下的吸附相反,动力学吸附也有助于混合具有相同吸附强度的化合物。我导出了在时间上正弦波动的空间均匀流场中,动态吸附化合物的等效横向色散系数的解析表达式。该表达式可用于恒定流量的等效域中的反应输运计算。对于具有约1的无因次分配系数,缓慢的吸附动力学和缓慢波动的速度的化合物,效果最强。对于实际参数,动力学吸附在与异质性相同的范围内有助于横向混合。

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