首页> 外文期刊>Ocean Dynamics >Difference between the Lagrangian trajectories and Eulerian residual velocity fields in the southwestern Yellow Sea
【24h】

Difference between the Lagrangian trajectories and Eulerian residual velocity fields in the southwestern Yellow Sea

机译:黄海西南部拉格朗日轨迹与欧拉残余速度场之间的差异

获取原文
获取原文并翻译 | 示例
           

摘要

The responses to tidal and/or wind forces of Lagrangian trajectories and Eulerian residual velocity in the southwestern Yellow Sea are investigated using a high-resolution circulation model. The simulated tidal harmonic constants agree well with observations and existing studies. The numerical experiment reproduces the long-range southeastward Eulerian residual current over the sloping bottom around the Yangtze Bank also shown in previous studies. However, the modeled drifters deployed at the northeastern flank of the Yangtze Bank in the simulation move northeastward, crossing over this strong southeastward Eulerian residual current rather than following it. Additional sensitivity experiments reveal that the influence of the Eulerian tidal residual currents on Lagrangian trajectories is relatively weaker than that of the wind driven currents. This result is consistent with the northeastward movement of ARGOS surface drifters actually released in the southwestern Yellow Sea. Further experiments suggest that the quadratic nature of the bottom friction is the crucial factor, in the southwestern Yellow Sea, for the weaker influence of the Eulerian tidal residual currents on the Lagrangian trajectories. This study demonstrates that the Lagrangian trajectories do not follow the Eulerian residual velocity fields in the shallow coastal regions of the southwestern Yellow Sea.
机译:使用高分辨率环流模型研究了拉格朗日轨迹对潮汐和/或风的响应以及西南黄海的欧拉残余速度。模拟的潮汐谐波常数与观测和现有研究非常吻合。数值实验再现了长江沿岸倾斜底部上方东南向的远距离欧拉剩余电流,这在先前的研究中也显示了出来。但是,在模拟中,部署在长江银行东北侧的建模漂流器向东北移动,越过这种强大的东南欧拉残余流,而不是跟随它。额外的灵敏度实验表明,欧拉潮汐残余电流对拉格朗日轨迹的影响相对弱于风驱动电流。这一结果与实际在西南黄海释放的ARGOS地表漂泊物向东北移动的现象是一致的。进一步的实验表明,对于欧拉潮汐残余流对拉格朗日轨迹的影响较弱的情况,在西南黄海,底部摩擦的二次性质是关键因素。这项研究表明,在西南黄海的浅海沿海地区,拉格朗日轨迹没有遵循欧拉残余速度场。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号