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首页> 外文期刊>Oceanographic Literature Review >On Contributions of Multiscale Dynamic Processes to the Steric Height in the Northeastern South China Sea as Revealed by Moored Observations
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On Contributions of Multiscale Dynamic Processes to the Steric Height in the Northeastern South China Sea as Revealed by Moored Observations

机译:回暖观测揭示南海东北地区空间高度的多尺度动态流程的贡献

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摘要

Based on 2-year moored measurements in the northeastern South China Sea, contributions of multiscale dynamic processes to steric height (SH) at 60 m are quantified. It shows that on average, root-mean-squared (RMS) SHs of mesoscales, subme-soscales, diurnal and semidiurnal internal tides (ITs), and super-tidal internal gravity waves (IGWs) are 7.56, 1.01, 1.19, 2.84, and 1.46 cm. respectively, with their respective relative contributions of 53.8%, 7.2%, 8.5%, 20.2%, and 10.4%. The SHs of ITs and supertidal IGWs are dominated by stationary and nonstationary components, respectively. Seasonally, mesoscales and subme-soscales show larger RMS SHs in winter than summer but the opposite occurs for ITs and supertidal IGWs. Although the RMS SH of submesoscales exceeds nonstationary ITs in winter, it is much smaller than the sum of nonstationary ITs and supertidal IGWs. Therefore, to detect submesoscales using SWOT data, approaches to remove the SHs of nonstationary ITs and supertidal IGWs are called for.
机译:基于东北南海的2年系泊尔测量,量化了60米的多尺度动态过程对空间高度(SH)的贡献。它表明,平均介质,患有媒介均匀(rms)Shs,子阶段 - Soscales,Diancal和Semidiancal Internal Tides(IgWs)和超潮汐内重波(IgWs)为7.56,1.01,1.19,2.84,和1.46厘米。分别为各自的相对贡献53.8%,7.2%,8.5%,20.2%和10.4%。其和超级IGWS的SHS分别由静止和非营养部件支配。季节性地,Mesoscales和Imbe-Soscales在冬季显示较大的RMS SHS,但其与其超级IGWS发生相反。虽然李鼠的RMS SH超过其冬季的不稳定,但它远小于其其和超智能的非营养和超级IGW的总和。因此,要使用SWOT数据检测潜鼠所,请调用除去非营养和超前IGW的SHS的方法。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1887-1887|共1页
  • 作者

    M. Miao; Z. Zhang; B. Qiu;

  • 作者单位

    Physical Oceanography Laboratory/IAOS and Frontiers Science Center for Deep Ocean Multispheres and Earth System Ocean University of China Qingdao China;

    Physical Oceanography Laboratory/IAOS and Frontiers Science Center for Deep Ocean Multispheres and Earth System Ocean University of China Qingdao China;

    Physical Oceanography Laboratory/IAOS and Frontiers Science Center for Deep Ocean Multispheres and Earth System Ocean University of China Qingdao China;

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