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Seasonal variations of coastal trapped waves (CTWs)’ propagation in the south China sea

机译:南海沿海受困波 (CTW) 传播的季节变化

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? 2024 Elsevier LtdCoastal trapped waves (CTWs) are sub-inertial waves with energy confined to the continental shelf and play a crucial role in the coastal dynamics. In this study, we focus on analyzing the seasonal characteristics of CTWs in the South China Sea shelf region by using observations from tide gauges and reanalysis data. Our findings reveal significant seasonal variations in both the phase speed and amplitude of CTWs in the South China Sea. It is shown that phase speed tends to be higher during the winter, followed by spring and autumn, and with less distinct propagation characteristics during the summer. In terms of amplitude, apart from seasonal variations, the CTW amplitudes on the narrower Vietnam shelf are relatively smaller. Drawing on classical theories, we analyze the Kelvin wave mode, the first shelf wave mode, and the second shelf wave mode in CTWs, and investigate the effects of winds, background currents, and stratification. Results indicate that the winds have a significant impact on the generation of CTWs, and the greatest influence of winds occurs upstream relative to the direction of CTW propagation. Background currents can have a significant impact on the phase speed of CTWs, and the seasonal variations of CTWs are closely linked to the background circulations. Additionally, we discuss the influence of seawater stratification on the phase speed of CTWs (measured by Burger number, Bu). Under conditions of strong stratification in the summer, the Bu is larger and leads to higher phase speed of CTWs, particularly when the Bu reaches its maximum on the continental slope. This study provides a better understanding of the CTWs dynamics in the South China Sea shelf region. Our findings can be useful for predicting and managing coastal hazards in the region.
机译:?2024 Elsevier Ltd沿海俘获波 (CTW) 是能量局限于大陆架的亚惯性波,在沿海动力学中起着至关重要的作用。在本研究中,我们专注于利用潮汐仪的观测和再分析数据来分析南海大陆架地区 CTW 的季节性特征。我们的研究结果揭示了南海 CTW 的相位速度和振幅的显着季节性变化。结果表明,冬季相位速度往往较高,其次是春季和秋季,夏季的传播特性不太明显。就振幅而言,除了季节变化外,较窄的越南大陆架上的 CTW 振幅相对较小。借鉴经典理论,我们分析了 CTW 中的开尔文波模式、第一架波模式和第二架波模式,并研究了风、背景流和分层的影响。结果表明,风对 CTW 的产生有显著影响,相对于 CTW 传播方向,风的影响最大发生在上游。背景电流对 CTW 的相速有重大影响,而 CTW 的季节性变化与背景环流密切相关。此外,我们还讨论了海水分层对 CTW 相速的影响(通过 Burger 数 Bu 测量)。在夏季强分层的条件下,Bu 更大,导致 CTW 的相位速度更高,特别是当 Bu 在大陆斜坡上达到最大值时。本研究为了解南海大陆架地区的 CTW 动态提供了更好的理解。我们的研究结果可用于预测和管理该地区的沿海灾害。

著录项

  • 来源
    《Estuarine coastal and shelf science》 |2024年第7期|1.1-1.19|共19页
  • 作者

    Hu S.; Yu X.; Gong W.Li Y.;

  • 作者单位

    School of Marine Sciences Sun Yat-sen University||Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai)||Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering;

    School of Marine Sciences Sun Yat-sen UniversitySchool of Marine Sciences Sun Yat-sen University||Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering;

    ||State Key Laboratory of Tropical Oceanography Key Laboratory of Science and Technology on Operational Oceanography South China Sea Institute of Oceanology Chinese Academy of SciencesSchool of Marine Sciences Sun Yat-sen University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 海洋学;
  • 关键词

    Coastal trapped waves; Phase speed; Seasonal variations; South China sea;

    机译:沿海被困的海浪;相位速度;季节性变化;南中国海;

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