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On the magnitude of upwelling fluxes in shelf-break canyons

机译:陆架折断峡谷上升流通量的大小

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A hydrodynamic model is employed to derive the magnitude of on-shelf fluxes through a shelf-break canyon for a wide range of canyon sizes and ambient oceanic conditions. Predicted canyon-upwelling fluxes are of the order of 0.05-0.1 Sv (1 Sv = 1 million m (3)/S), being several orders of magnitude greater than upslope fluxes in the bottom Ekman layer on the ambient continental slope. On the basis of similar to 150 simulations conducted, a bulk formula of upwelling flux in a submarine canyon is derived. For typical conditions, the upwelling flux varies quadratically with forcing strength (speed of incident flow), linearly with canyon depth, and is inversely proportional to the buoyancy frequency of the density stratification inside the canyon. Other parameters such as density stratification above shelf-break depth and bottom friction are found to have minor influences on the resultant canyon-upwelling flux. (c) 2007 Elsevier Ltd. All rights reserved.
机译:使用流体力学模型来推导出在大范围的峡谷尺寸和周围海洋条件下,通过陆架断裂峡谷的架上通量的大小。预计的峡谷上升流通量约为0.05-0.1 Sv(1 Sv = 1百万m(3)/ S),比周围大陆坡上底部埃克曼层的上升坡通量大几个数量级。在类似于进行的150次模拟的基础上,得出了海底峡谷中上升流通量的整体公式。在典型条件下,上升流通量随强迫强度(入射流速度)呈二次方变化,随峡谷深度呈线性变化,并且与峡谷内部密度分层的浮力频率成反比。发现其他参数(例如,超过破裂深度的密度分层和底部摩擦)对所得的峡谷上升流有较小的影响。 (c)2007 Elsevier Ltd.保留所有权利。

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