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Modeling the westward transversal current in the southern Yellow Sea entrance: a case study in winter 2007

机译:建模南部黄海入口处的向西横向电流:2007年冬季案例研究

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摘要

The westward transversal current (TC) in the southern Yellow Sea entrance was investigated during winter 2007 using a numerical ocean model. The three-dimensional structures and dynamics of the westward TC were highlighted. The model-simulated monthly mean current fields showed that the strong westward TC was limited to the upper water column (shallower than 50 m) and extended westward from 126° E to 124° E. Momentum balance analysis indicated that the westward TC was mainly regulated by a quasi-geostrophic balance. Both the sea surface elevation-related barotropic pressure gradient force and the density-related baroclinic pressure gradient force controlled the intensity and direction of the westward TC. Sensitivity model experiments focusing on tide and wind demonstrated that the westward TC was intensified when tide was ignored and was greatly weakened when wind was excluded. Lagrangian particle tracking experiments were also performed, to investigate the relationship between the Yellow Sea Warm Current and the westward TC in the frontal region. The characteristics of the water in the Yellow Sea Warm Current were affected by the properties of the water in the frontal zone, especially in the sub-surface and lower layers. The westward TC might act as an important bridge, connecting the frontal zone with the Yellow Sea Warm Current flowing along the western Yellow Sea trough.
机译:2007年冬季使用数值海洋模型在南部黄海入口处向西横向电流(TC)。突出了向西TC的三维结构和动态。模型模拟的月平均电流字段表明,强向西TC仅限于上水柱(浅比50米),从126°E扩展到124°E.动量平衡分析表明西方TC主要受调节通过准滴度平衡。海面升高相关的波高压压力梯度力和密度相关的倒核压力梯度力控制了向西TC的强度和方向。关注潮汐和风的敏感性模型实验表明,当潮汐被忽略时,向西TC加剧,当被排除风时大大削弱。还进行了拉格朗日粒子跟踪实验,研究了前部区域的黄海暖流与向西TC之间的关系。黄海温热电流中的水的特性受前方水中水的性质的影响,特别是在亚表面和下层中。西方TC可能是一个重要的桥梁,将正面区域与沿西黄海槽的黄海温暖电流连接。

著录项

  • 来源
    《Ocean Dynamics》 |2020年第6期|803-825|共23页
  • 作者单位

    Key Laboratory of Physical Oceanography/Institute for Advanced Ocean Studies Ocean University of China and Qingdao National Laboratory for Marine Science and Technology Qingdao China;

    Key Laboratory of Physical Oceanography/Institute for Advanced Ocean Studies Ocean University of China and Qingdao National Laboratory for Marine Science and Technology Qingdao China College of Oceanic and Atmospheric Sciences Ocean University of China Qingdao China;

    College of Oceanic and Atmospheric Sciences Ocean University of China Qingdao China;

    College of Oceanic and Atmospheric Sciences Ocean University of China Qingdao China;

    Key Laboratory of Physical Oceanography/Institute for Advanced Ocean Studies Ocean University of China and Qingdao National Laboratory for Marine Science and Technology Qingdao China College of Oceanic and Atmospheric Sciences Ocean University of China Qingdao China;

    Key Laboratory of Physical Oceanography/Institute for Advanced Ocean Studies Ocean University of China and Qingdao National Laboratory for Marine Science and Technology Qingdao China College of Oceanic and Atmospheric Sciences Ocean University of China Qingdao China;

    QHD Marine Environmental Central Station of SOA Qinhuangdao Hebei China;

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

    Southern Yellow Sea; Thermohaline front; Frontal circulation; Westward transversal current; Yellow Sea Warm Current; Modeling study;

    机译:南黄海;热卤素前部;正面循环;向西横向电流;黄海温暖电流;建模研究;

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