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A numerical study of transport dynamics and seasonal variability of the Yellow River sediment in the Bohai and Yellow seas

机译:渤海和黄海黄河泥沙输移动态和季节变化的数值研究。

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摘要

A sediment numerical model was embedded into a wave-tide-circulation coupled model to simulate the transport processes of the Yellow River-derived sediment considering the wave-induced vertical mixing (Bv) and the wave-current coupled bottom shear stress (BSS). Numerical results show that the main stream of the Yellow River-derived sediment moves first eastward off the northern Shandong Peninsula and then southward into the South Yellow Sea all year round. In spring, the sediment moves northeastward in the Bohai Sea. In summer, there is a northeastward branch of sediment in the Bohai Sea off the west coast of the Liaodong Peninsula, while the main part goes eastward to the Yellow Sea. The Yellow River-derived sediment transport from the Bohai Sea to the North Yellow Sea across the Bohai Strait is mainly limited to the top 10 m, and with a maximum centered at 37.9°N in summer. The transport from the North Yellow Sea to the South Yellow Sea across the transect of 37°N is mainly in the 0-30 m layer with a maximum around 123.7°E in autumn. The simulated Yellow River-discharged sediment deposits along the Shandong Peninsula and between 20 and 30 m isobaths in the Yellow Sea, which is consistent with observation. If surface waves are not considered in the model, the sediment deposits westward to the nearshore area in the South Yellow Sea. The sediment would deposit further southward in the numerical experiment results without wind influence. In the numerical experiment of no tide, there is hardly any sediment deposited on the Yellow Sea floor, while in the Bohai Sea most of the sediment is transported southward and northwestward around the river mouth instead of eastward as in the Control Run, indicating the tides play a key role in forming the deposition pattern.
机译:将泥沙数值模型嵌入潮汐-循环耦合模型中,以模拟黄河源性泥沙在考虑波浪引起的垂直混合(Bv)和波流耦合底部切应力(BSS)的情况下的输运过程。数值结果表明,黄河源性泥沙的主要来源是从山东半岛北部向东移动,然后全年向南进入南黄海。春季,沉积物在渤海中向东北移动。夏季,在辽东半岛西海岸外的渤海有一个沉积物的东北分支,而主要部分向东到达黄海。黄河源于渤海到北黄海的跨渤海海峡的输沙主要限制在前10 m,夏季最大集中在37.9°N。从北黄海到南黄海的37°N横断面运输主要在0-30 m层,秋季最高约123.7°E。沿山东半岛和黄海等深线20至30 m之间模拟的黄河排沙沉积物与观测结果一致。如果在模型中未考虑表面波,则沉积物向西沉积到南黄海的近岸区域。在数值试验结果中,沉积物将进一步向南沉积,而不受风的影响。在无潮的数值试验中,黄海底几乎没有沉积物,而在渤海中,大部分沉积物是绕着河口向南和向西北输送的,而不是像对照运行那样向东输送的,这说明了潮汐在形成沉积图案中起关键作用。

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  • 来源
    《Estuarine Coastal and Shelf Science》 |2011年第1期|p.39-51|共13页
  • 作者单位

    College of Physical and Environmental Oceanography, Ocean University of China, Ojngdao 266100, China,Key Lab of Marine Science and Numerical Modeling, First Institute of Oceanography, State Oceanic Administration, 6 Xian-xia-ling Road, Ojngdao, 266061, China;

    Key Lab of Marine Science and Numerical Modeling, First Institute of Oceanography, State Oceanic Administration, 6 Xian-xia-ling Road, Ojngdao, 266061, China;

    School of Physical, Environmental and Mathematical Sciences, University of New South Wales at Australian Defence Force Academy Canberra, ACT 2600, Australia;

    Key Lab of Marine Science and Numerical Modeling, First Institute of Oceanography, State Oceanic Administration, 6 Xian-xia-ling Road, Ojngdao, 266061, China;

    Key Lab of Marine Science and Numerical Modeling, First Institute of Oceanography, State Oceanic Administration, 6 Xian-xia-ling Road, Ojngdao, 266061, China;

    Key Lab of Marine Science and Numerical Modeling, First Institute of Oceanography, State Oceanic Administration, 6 Xian-xia-ling Road, Ojngdao, 266061, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sediment dynamics; suspended sediments; deposition; seasonal variations; vertical mixing; china; yellow sea; bohai sea; yellow river;

    机译:沉积物动力学悬浮沉积物;沉积季节变化;垂直混合;中国;黄海渤海黄河;

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