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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Processes influencing suspended sediment movement on the Malin-Hebrides shelf
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Processes influencing suspended sediment movement on the Malin-Hebrides shelf

机译:影响马林-赫布里底架上悬浮泥沙运动的过程

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A three-dimensional baroclinic model, including suspended sediment transport, is used in cross-sectional form to examine processes (tidal, along-shelf current, wind-waves, and wind) influencing suspended sediment transport off the west coast of Scotland. Sub-grid scale processes are parameterized using a turbulence energy model. Calculations using appropriate sediment types and tidal forcing for the region, show that the barotropic tide alone essentially cannot suspend bottom sediment in the area. However, when an along-shelf flow is added some sediment is suspended. An off-shelf net transport of sediment occurs in the bottom layer, with a weaker on-shelf transport in the surface region. This is consistent with recent measurements in the area which show the lack of tidal resuspension, and the importance of an along-shelf flow in sediment suspension. Observations reveal a weak off-shelf flow in the bottom boundary layer. The magnitude of this transport is increased by the presence of wind-waves, or by a reduction in the sediment settling velocity. Observations during a storm clearly show the importance of wind-waves in causing sediment resuspension particularly close to the shore. When density stratification was included, internal tides were generated with associated regions of enhanced bottom friction velocity u(*) and hence increased sediment resuspension. Although the dominant feature of the flow is similar to that found with the barotropic tide, this is modified by smaller scale currents due to the presence of the internal tide. Summer observations indicate that strong internal waves can enhance sediment suspension. However from the limited number of observations and the high spatial variability of the internal tide found in the model, the importance of the internal tide is difficult to assess from the measurements. When an upowelling favourable wind is added, the vertical density gradient in the near-bed region increases, which changes the internal tide and hence: its effect upon sediment suspension and transport. The presence of an along-shelf flow induced by the wind significantly increases the bed stress leading to enhanced sediment resuspension. Sediment transport is dominated by the wind-driven flow, with coastal upwelling moving sediment from the bottom boundary layer to the surface layer where it is advected off-shelf. Observations made during upwelling favourable winds, confirm this off-shelf advection of sediment in the upper part of the water column. Conversely with a downwelling favourable wind, the thickness of the bottom boundary layer is increased, and in the shelf edge region sediment is suspended to a greater height in the water column. In the near-coastal area, under downwelling conditions, the sediment is confined to the bottom boundary layer and is advected away from the shore in the near-bed region. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 64]
机译:包括悬浮泥沙运移的三维斜压模型以横截面形式用于检查影响苏格兰西海岸悬浮泥沙运移的过程(潮汐,沿潮流,风浪和风)。使用湍流能量模型对次网格规模过程进行参数化。使用该地区适当的沉积物类型和潮汐强迫进行的计算表明,仅正压潮基本上不能使该区域的底部沉积物悬浮。但是,当增加沿架流时,一些沉积物会悬浮。沉积物的现成净输送发生在底层,而在表层区域则发生较弱的现成输送。这与该地区最近的测量结果一致,该测量结果表明没有潮汐再悬浮,并且在沉积物悬浮中沿架流动很重要。观察结果表明,底部边界层的架空流动较弱。由于风波的存在或沉积物沉降速度的降低,这种迁移的幅度增加了。暴风雨期间的观测清楚地表明了风波在使沉积物特别是在海岸附近重新悬浮的重要性。当包括密度分层时,会产生内部潮汐,伴随着底部摩擦速度u(*)增强的相关区域,从而增加了泥沙的重悬。尽管水流的主要特征类似于正压潮,但由于内部潮汐的存在,这被较小尺度的水流所改变。夏季观测表明,强烈的内浪可以增强沉积物的悬浮。但是,从数量有限的观测结果和模型中发现的内部潮汐的高空间变异性来看,很难通过测量来评估内部潮汐的重要性。当增加向上的有利风时,近床区的垂直密度梯度增加,这将改变内潮,从而改变其对沉积物悬浮和运输的影响。风引起的沿架流的存在显着增加了床层应力,从而导致沉积物的重悬性增强。沉积物的运输以风流为主导,沿海上升流将沉积物从底部边界层移动到表层,并在此沉积到现成的位置。在上升的有利风中进行的观测证实了水柱上部这种沉积物的现成平流。相反地​​,随着顺风向下,底部边界层的厚度增加,并且在架子边缘区域中,沉积物在水柱中悬浮到更大的高度。在近海岸地区,在下涌条件下,沉积物被限制在底部边界层,并在近床区向远离海岸的方向平流。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:64]

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