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首页> 外文期刊>Journal of Physical Oceanography >Dynamics of Dense Water Descending a Continental Slope
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Dynamics of Dense Water Descending a Continental Slope

机译:浓水下降大陆坡的动力学

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A reduced-gravity model is used to examine the dynamics of dense water descending a continental slope. The model solves for the geostrophically adjusted state before it is subjected to significant frictional decay. For such bottom-mounted flow, it is argued that frictional torque would dominate the net vorticity balance to equalize the edge flows, resulting in double velocity cores. Constrained by the geostrophic balance, the dense water thus may settle only over a concave bottom and is sheetlike, covering typically the whole slope rise. As such, the adjustment is characterized by a spreading rather than sinking of the layer—with little descent of the upper edge but a swift downslope current propelling the lower edge. Through the mechanical energy balance, it is found in addition that a greater density anomaly would increase the total entrainment flux to more strongly dilute the original anomaly, yielding a product water that is less varied in the water-mass properties. Model predictions compare favorably with some observed dense outflows, in support of the entrainment and friction control of the geostrophic adjustment.
机译:减少重力模型用于检查从大陆坡降下的浓水的动力学。该模型可以解决地转调整后的状态,然后使其经受明显的摩擦衰减。对于这种底部安装的流动,有人认为摩擦转矩将主导净涡度平衡以平衡边缘流动,从而产生双速芯。因此,受地转平衡的约束,稠密的水只能沉降在凹形底部之上,并且呈片状,通常覆盖整个斜坡上升。这样,调整的特征在于层的扩展而不是下沉-上边缘的下降很少,但是快速的下坡电流推动了下边缘。通过机械能平衡,还发现更大的密度异常会增加总夹带通量,从而更强烈地稀释原始异常,从而产生水质性质变化较小的成品水。模型预测与某些观测到的密集流出相比具有优势,支持地转调整的夹带和摩擦控制。

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