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首页> 外文期刊>Journal of Physical Oceanography >Subinertial Response of a Density-Driven Eastern Boundary Poleward Current to Wind Forcing
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Subinertial Response of a Density-Driven Eastern Boundary Poleward Current to Wind Forcing

机译:密度驱动的东部边界极向电流对风力的亚惯性响应

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A high-resolution primitive equation numerical model is used to generate a poleward flow along a meridionally oriented eastern boundary slope/shelf system by imposing an along-coast density gradient as the forcing mechanism. Wind forcing is applied to the resulting quasi-steady current system, and the subinertial response is analyzed. Parallel experiments with no slope-poleward flow are conducted for comparison. Moderately strong upwelling- and downwelling-favorable, week-to-month-scale wind events modify the poleward flow but do not significantly change the density-driven current structure at the slope. The alongshore transport within the slope region is reduced by 0.2-0.3 Sv (from 1.2 Sv, where Sv ≡ 10~6 m~3 s~(-1)), under the influence of either downwelling or upwelling winds. Independent of the wind direction, the density-driven poleward flow always remains surface intensified. Wind-driven shelf currents develop with a considerable degree of independence from the slope-poleward circulation. On the shelf, the density field is modified by cross-shelf buoyancy advection within the boundary layers and by strong vertical mixing. The presence of the poleward flow over the slope constitutes an important factor in the behavior of the bottom boundary layer at the shelf break and for the patterns of cross-slope circulation.
机译:通过将沿海岸的密度梯度作为强迫机制,使用高分辨率的原始方程数值模型来生成沿子午线取向的东部边界坡/架系统的极流。将风强迫应用于所得的准稳态电流系统,并分析了惯性响应。进行无斜率极向流动的平行实验进行比较。适度强的上升流和下降流有利的,按周至按月规模的风事件改变了极向流,但并未显着改变斜率处密度驱动的电流结构。在下风或上风的影响下,斜坡区域内的近岸运输量降低了0.2-0.3 Sv(从1.2 Sv降低,其中Sv≡10〜6 m〜3 s〜(-1))。与风向无关,密度驱动的极向流始终保持表面增强。风驱动的层流与斜极环流有很大的独立性。在架子上,通过边界层内的跨架浮力平流和强力垂直混合来改变密度场。斜坡上的极向流的存在是影响架子断裂处底部边界层的行为以及横坡循环方式的重要因素。

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