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Effect of low-permeability layers on spatial patterns of hyporheic exchange and groundwater upwelling

机译:低渗透层对低渗交换和地下水上升流的空间格局的影响

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Bed form-induced hyporheic interactions are characterized by a nested system of flow paths that continuously exchange water, solutes, momentum, and energy. At the local scale, sediment heterogeneity plays a key role in the hydrodynamics and potential for biogeochemical transformations within the hyporheic zone. This manuscript explores the role of low-permeability sedimentary layers on the interplay between bed form-induced hyporheic exchange and groundwater upwelling. A hydrodynamic conceptualization that sequentially couples fully-turbulent flow in the water column and Darcian flow in the sediment is used. Low-permeability layers are characterized by long residence times and solute accumulation. Furthermore, these layers induce hydrodynamic sequestration due to the relocation and, in some cases, emergence of new stagnation zones. Spatial patterns of residence time distributions and flushing intensities indicate that the interface of the low-permeability layers has the potential to be a hot spot for biogeochemical transformations and flow acceleration near such interface can increase the mobilization capacity for the products of redox chemical and microbial processes. A discussion about the possible implications that hydrodynamic changes have on the biogeochemistry of hyporheic zones is presented; however, further biogeochemical experimentation and modeling are needed to validate these arguments.
机译:床形诱导的流变相互作用的特征是嵌套的流路系统,不断交换水,溶质,动量和能量。在地方尺度上,沉积物的非均质性在水动力区和流变带内生物地球化学转变的潜力中起着关键作用。该手稿探讨了低渗透沉积层在河床形式引起的流变交换与地下水上升之间相互作用的作用。使用了一种水动力概念,该概念顺序地将水柱中的全湍流与沉积物中的达西流耦合。低渗透层的特点是停留时间长和溶质积聚。此外,这些层由于重新定位以及在某些情况下新的停滞区的出现而引起水动力固存。停留时间分布和冲洗强度的空间格局表明,低渗透层的界面有可能成为生物地球化学转化的热点,并且这种界面附近的流动加速可以增加氧化还原化学和微生物过程产品的动员能力。 。讨论了水动力变化对流变带生物地球化学的可能影响;然而,需要进一步的生物地球化学实验和建模来验证这些论点。

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