Joint Effects of Winds and Tides on Near-Inertial Internal Waves in the Northern South China Sea: A Three-Dimensional Numerical Study

IF 2.8 2区 地球科学 Q1 OCEANOGRAPHY Journal of Physical Oceanography Pub Date : 2024-02-21 DOI:10.1175/jpo-d-23-0182.1
Y. Gong, Zhiwu Chen, Ruixiang Zhao, Jiexin Xu, Juan Li, Jiesuo Xie, Yinghui He, X. Zhu, Yuhan Sun, Shuqun Cai
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Abstract

Joint effects of winds and tides on near-inertial internal waves (NIWs) are numerically investigated via a series of three-dimensional quasi-realistic simulations in the northern South China Sea (NSCS). Model results demonstrate that in the presence of wind-induced NIWs, more tidal energy is transferred to NIWs, while in the presence of tide-induced NIWs, the extreme wind (cyclone) would inject less near-inertial kinetic energy (NIKE). The interaction between wind-induced and tide-induced NIWs produces total NIKE more (or less) than a linear superposition of that generated by wind and tide forcing alone at different sites in the NSCS. Specifically, near the Luzon Strait, both tides and winds make positive contributions to the local near-inertial energy input, resulting in more than 30% enhancement of total NIKE (>0.5 kJ m−2). However, in some deep-water regions along the cyclone paths, energy is transferred from cyclones to NIWs and also from NIWs to internal tides. Due to this “energy pipeline” effect, tide- and wind-induced NIWs contribute to weakening of total NIKE (∼0.3 kJ m−2 or 30%). Additionally, sensitivity experiments with varying initial tidal phases indicate that the interaction between wind-induced NIKE and tide-induced NIKE is robust in most model domain (over 80%) under different phase alignments between wind- and tide-induced NIWs. From the perspective of cyclones, tide-induced NIKE is comparable to wind-induced NIKE in the Luzon Strait before the arrival of cyclones, while tide-induced NIKE is two orders of magnitude smaller than wind-induced NIKE in most of the NSCS after the arrival of cyclones. Overall, our results highlight the joint effects of wind and tide forcing on the local NIW dynamics in the NSCS.
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风和潮汐对南海北部近惯性内波的共同影响:三维数值研究
通过在中国南海北部(NSCS)进行一系列三维准现实模拟,对风和潮汐对近惯性内波(NIWs)的共同影响进行了数值研究。模型结果表明,在风致近惯性内波存在的情况下,更多的潮汐能被转移到近惯性内波上,而在潮致近惯性内波存在的情况下,极端风(气旋)注入的近惯性动能(NIKE)较少。在 NSCS 的不同地点,风引起的近惯性动能和潮汐引起的近惯性动能之间的相互作用所产生的总近惯性动能要大于(或小于)风和潮汐单独作用所产生的近惯性动能的线性叠加。具体来说,在吕宋海峡附近,潮汐和风都对当地的近惯性能量输入做出了积极贡献,使总 NIKE 增加了 30% 以上(>0.5 kJ m-2)。然而,在气旋路径沿线的一些深水区域,能量从气旋转移到近惯性风,也从近惯性风转移到内潮。由于这种 "能量管道 "效应,潮汐和风引起的 NIWs 会削弱总 NIKE(∼0.3 kJ m-2 或 30%)。此外,不同初始潮汐相位的敏感性实验表明,在风导 NIKE 和潮导 NIKE 的不同相位排列下,风导 NIKE 和潮导 NIKE 之间的相互作用在大多数模式域(超过 80%)是稳健的。从气旋的角度来看,在气旋到来之前,吕宋海峡的潮汐诱导 NIKE 与风力诱导 NIKE 相当,而在气旋到来之后,在大多数 NSCS 区域,潮汐诱导 NIKE 比风力诱导 NIKE 小两个数量级。总之,我们的研究结果凸显了风力和潮汐对 NSCS 局地 NIW 动态的共同影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.40
自引率
20.00%
发文量
200
审稿时长
4.5 months
期刊介绍: The Journal of Physical Oceanography (JPO) (ISSN: 0022-3670; eISSN: 1520-0485) publishes research related to the physics of the ocean and to processes operating at its boundaries. Observational, theoretical, and modeling studies are all welcome, especially those that focus on elucidating specific physical processes. Papers that investigate interactions with other components of the Earth system (e.g., ocean–atmosphere, physical–biological, and physical–chemical interactions) as well as studies of other fluid systems (e.g., lakes and laboratory tanks) are also invited, as long as their focus is on understanding the ocean or its role in the Earth system.
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