首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Intra- and inter-tidal variability of the vertical current structure in the Marsdiep basin
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Intra- and inter-tidal variability of the vertical current structure in the Marsdiep basin

机译:马斯迪普盆地垂直潮流结构的潮内和潮间变化

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The vertical structure of the along-stream current in the main channel of the periodically-stratified estuarine Marsdiep basin is investigated by combining velocity measurements collected during three different seasons with a one-dimensional water column model. The observed vertical shears in the lowest part of the water column are greater during ebb than during flood due to an asymmetry in drag coefficient (i.e. bed friction), which is most likely determined by the surrounding complex bathymetry. This asymmetry is usually not incorporated in models. Furthermore, a mid-depth velocity maximum is observed and simulated during early and late flood which is generated by along-stream and cross-stream tidal straining, respectively. Negative shears are present in the upper part of the water column during flood, which correlate well with the along-stream salinity gradient. The mid-depth velocity maximum during late flood results in an early current reversal in the upper part of the water column. The elevated vertical shears during ebb are able to reduce vertical stratification induced by along-stream tidal straining, whereas cross-stream tidal straining during late flood promotes the generation of vertical stratification. The simulations suggest that these processes are most important during spring tide conditions. This study has demonstrated that an asymmetry in bed friction and the presence of density gradients both have a strong impact on the vertical structure of along-stream velocity in the Marsdiep basin. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过将三个不同季节收集的速度测量结果与一维水柱模型相结合,研究了周期性分层河口马斯迪普盆地主河道中沿流的垂直结构。由于阻力系数的不对称性(即床层摩擦力)的不对称性,退潮期间在水柱最下部观察到的垂直剪切力比洪水时要大,这很可能是由周围的复杂测深法确定的。这种不对称性通常不会纳入模型中。此外,在早期和晚期洪水期间,分别观察到中深速度最大值并进行模拟,这分别是沿潮汐流和横流潮汐应变产生的。洪水期间水柱的上部存在负剪切力,这与沿流盐度梯度密切相关。后期洪水期间的中深度速度最大值导致水柱上部的早期逆流。退潮期间竖向剪切力的升高能够减少沿潮汐应变引起的垂直分层,而后期洪水期间的横流潮汐应变则促进了垂直分层的产生。模拟表明,这些过程在春季潮汐条件下最为重要。这项研究表明,床层摩擦力的不对称性和密度梯度的存在都对Marsdiep盆地沿流速度的垂直结构有很大的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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