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首页> 外文期刊>Oceanographic Literature Review >Effects of Buoyancy Flux on Upper-Ocean Turbulent Mixing Generated by Non-Breaking Surface Waves Observed in the South China Sea
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Effects of Buoyancy Flux on Upper-Ocean Turbulent Mixing Generated by Non-Breaking Surface Waves Observed in the South China Sea

机译:浮力通量对南海观察到的非破碎表面波产生的高海啸混合的影响

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摘要

The surface waves are the most energetic motions, which have great contribution to the turbulent mixing in the upper ocean. In this study, a novel turbulent mixing scheme is proposed in terms of the non-breaking wave velocity shear module with the buoyancy flux. In the scheme, the mixing coefficients can be calculated empirically from the significant wave height, the wave number, the wave frequency, the buoyancy frequency, and the turbulence Prandtl number. The buoyancy fluxes, as well as the non-breaking wave velocity shear production, are important for the upper-ocean turbulent mixing, and make the calculated turbulence dissipation rate closer to in situ observations, which are provided by the "Responses of Marine Hazards to Climate Change in the Western Pacific (ROSE)" Project. The effects of the buoyancy flux on the turbulent mixing are examined based on three numerical experiments using the MASNUM ocean model. In the experiments, the topography, the lateral boundaries, initialization conditions, and the surface forcing fluxes are taken from the GEBCO, HYCOM/NCODA, and ERA5 data, respectively. Comparing to the AVHRR remote sensing sea surface temperature (SST) products and in situ observations, the simulated results with the non-breaking wave-generated turbulent mixing gain significant improvement in the SST, upper-ocean temperature structure, and the mixed layer compared with the classic Mellor-Yamada scheme. The results show that the buoy- ancy flux is able to suppress the enhanced non-breaking wave-generated turbulent mixing, so that the improved model simulates the observations better than that without the buoyancy effects.
机译:表面波是最精力充沛的运动,对上海的湍流混合有很大的贡献。在该研究中,根据具有浮力通量的非破坏波速剪切模块,提出了一种新颖的湍流混合方案。在该方案中,混合系数可以从显着波高,波数,波频,浮力频率和湍流普朗特数来凭经验地计算。浮力通量以及非断裂波速剪切生产对于上海湍流混合很重要,并使计算出的湍流耗散速度更接近于原位观察,这是由“海洋危害的反应来实现的西太平洋(玫瑰)的气候变化。基于使用Masnum海洋模型的三个数值实验,检查了浮力通量对湍流混合的影响。在实验中,地形,横向边界,初始化条件和表面强制助熔剂分别从Gebco,Hycom / Ncoda和ErA5数据中获取。与AVHRR遥感海表面温度(SST)产品与原位观察相比,模拟结果与非断裂波产生的湍流混合在SST,高海洋温度结构和混合层中产生显着改善经典的Mellor-yamada计划。结果表明,浮标助焊剂能够抑制增强的非断裂波产生的湍流混合,从而改进模型模拟了比没有浮力效应的观察结果。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1446-1446|共1页
  • 作者

    Z. Zhuang; Y. Yuan; Q. Zheng;

  • 作者单位

    First Institute of Oceanography Ministry of Natural Resources Qingdao China;

    First Institute of Oceanography Ministry of Natural Resources Qingdao China;

    First Institute of Oceanography Ministry of Natural Resources Qingdao China;

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  • 正文语种 eng
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