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Tidal and tidal current characteristics in the Guangxi Gulf of Tonkin, South China Sea

机译:汤海汤海湾广西海湾的潮汐和潮流特征

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摘要

The Guangxi Gulf of Tonkin (GXGT) is rich in mineral, oceanic energy, and biological resources; however, it has not attracted much attention. Based on ECOMSED, a high-resolution three-dimensional numerical model is constructed in this study, and the accuracy is validated using long-term observational data. The results showed that the GXGT is dominated by regular diurnal tide and mixed mainly diurnal tidal currents and some regions to the northwest and south of Weizhou Island are dominant by mixed mainly semi-diurnal tidal currents. Furthermore, the rotation direction of O-1 is found to be counter-clockwise and clockwise in the western and eastern domains, respectively, whereas the rotation directions of the other three tidal constituents are clockwise and counter-clockwise in the open sea and coastal bays, respectively. Similarly, the propagation direction of the tidal energy flux of O-1 (northwestward) is different from them of the other three tidal constituents (northeastward) in the western GXGT. On the other hand, the propagation directions of the four tidal constituents are all northeastward in the eastern GXGT. A comparison of the reference run with the summed-up effect of six runs, where each of the tidal constituents has been considered separately, revealed that the nonlinear effect due to the interaction of the six tidal constituents cannot be neglected in the GXGT, especially in the western GXGT. Interestingly, energy input from wind to O-1 is larger than that to M-2 whereas the tidal dissipation of O-1 is less than that of M-2 at BBL. Additionally, tidally induced residual currents mostly flow westward in the GXGT, with clockwise eddies present outside the Qinzhou Bay and Tieshan Port. Driven by the monsoon wind, the current structure and strength in the GXGT have obvious seasonal variation. And sensitive experiments show that the residual currents in the GXGT are deeply influenced by the monsoon wind and bottom topography.
机译:汤金(GXGT)的广西海湾富含矿物,海洋能源和生物资源;但是,它没有吸引很多关注。基于ECOMSED,在本研究中构建了高分辨率的三维数值模型,使用长期观测数据验证了准确度。结果表明,GXGT由常规昼夜潮汐主导,主要是沃州岛西北部和南北部的昼夜潮流和威州岛南部的一些地区由混合的半昼夜潮流占主导地位。此外,发现O-1的旋转方向分别在西部和东部域处于逆时针和顺时针方向,而另外三个潮汐成分的旋转方向在开放的海洋和沿海湾的旋转方向上是顺时针且逆时针, 分别。类似地,O-1(Northwestward)的潮能量通量的传播方向与西部GXGT中的其他三种潮汐成分(东北地区)不同。另一方面,四个潮汐成分的传播方向在东部GXGT中都是东北都。参考运行的比较六次运行的总结效应,其中每种潮汐成分分别考虑,显示由于六种潮汐成分的相互作用导致的非线性效应在GXGT中不能被忽略,特别是在西部GXGT。有趣的是,从风到O-1的能量输入大于M-2,而O-1的潮汐耗散小于BBL的M-2的潮汐散。此外,整个诱导的剩余电流主要在GXGT向西流动,顺时针漩涡存在于钦州湾和Tieshan端口外。由季风风驱动,目前的GXGT结构和强度具有明显的季节性变化。并且敏感的实验表明,GXGT中的残留电流深受季风风和底部地形的影响。

著录项

  • 来源
    《Ocean Dynamics》 |2019年第9期|1037-1051|共15页
  • 作者单位

    Nanning Normal Univ Minist Educ Key Lab Environm Change & Resources Use Beibu Gul Nanning 530001 Peoples R China|Guangxi Acad Sci Guangxi Coastal Key Lab Marine Environm Sci Nanning 530007 Peoples R China;

    Guangxi Acad Sci Guangxi Coastal Key Lab Marine Environm Sci Nanning 530007 Peoples R China;

    Nanning Normal Univ Minist Educ Key Lab Environm Change & Resources Use Beibu Gul Nanning 530001 Peoples R China;

    Nanning Normal Univ Minist Educ Key Lab Environm Change & Resources Use Beibu Gul Nanning 530001 Peoples R China;

    State Ocean Adm Inst Oceanog 4 Beihai Guangxi Peoples R China;

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

    Guangxi Gulf of Tonkin; Tide; Tidal current; Tidal energy; Residual current; Monsoon wind;

    机译:广西汤湾;潮;潮流;潮能;剩余电流;季风风;

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