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Non-hydrostatic modeling of cohesive sediment transport associated with a subglacial buoyant jet in glacial fjords: A process-oriented approach

机译:与冰川峡湾下冰川浮力射流有关的粘性沉积物输运的非静水模型:一种面向过程的方法

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摘要

Fine sediment transport produced by a subglacial freshwater discharge is simulated with a 2D non-hydrostatic model. The circulation pattern revealed a buoyant jet issuing from the aperture representing the subglacial tunnel, a vertically buoyant plume and a surface gravity current forming part of an estuarine circulation. Momentum-dominated experiments are more sensitive to the presence of suspended sediment in the discharge. At low concentrations, the sediment stays in the vertical plume and surface gravity current, and its concentration is progressively decreased by mixing but no settling is observed through the water column. At high concentrations, the sediment settles in the far field and is transported back to the near field by the landward estuarine current. Sediment settled from the surface layer through convective sedimentation, a process that was more effective than flocculation to transport sediment vertically, and showed vertical velocities faster than 1.0 × ~(10 - 2)ms~(-1). Implications of these results are discussed.
机译:用二维非静水模型模拟了冰川下淡水排放产生的细沙沉积物。环流模式显示出从代表冰川下隧道的孔口发出的浮力射流,垂直浮力羽流和形成河口环流一部分的表面重力流。动量主导的实验对排放物中悬浮沉积物的存在更为敏感。在低浓度下,沉积物停留在垂直羽流和表面重力流中,并且通过混合逐渐降低其浓度,但在水柱中未观察到沉降。高浓度时,沉积物沉积在远处,并通过陆上河口流运回近处。沉积物通过对流沉降从表层沉降,这一过程比絮凝作用更有效地垂直传输沉积物,并且垂直速度快于1.0×〜(10-2)ms〜(-1)。讨论了这些结果的含义。

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