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Evolution and breaking of a propagating internal wave in stratified ocean

机译:分层海洋中正在传播的内波的演化和破裂

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摘要

The evolution and breaking of a propagating internal wave are directly numerically simulated using a pseudo-spectral method.The mechanism of PSI (parametric subharmonic instability) involved in the evolution is testified clearly.It dominates gradually in nonlinear resonant interactions.As a consequence,the energy cascades to a second plant wave packet which has lower frequencies and higher wavenumbers than that of the primary wave.With the growth of this wave packet,wave breaking occurs and causes strongly nonlinear regime,I.e.stratified turbulence.The strong mixing and intermittent of the turbulence can be learned from the evolution of the total energy and kurtosis of vortieity vs.time.Some statistic properties of the stratified turbulence are also ana- lyzed,including the spectra of KE (kinetic energy) and PE (potential energy).The results show that the PE spectra display a wavenumber range scaling as 0.2 N4k-3r(N is the Brunt-Vaisala frequency,ky is the vertical wavenumber),which is called buoyancy sub-range.However,the KE spectra cannot satisfy the negative cubic law of vertical wavenumber,which have a much larger downtrend than that of the PE spectra,for the potential energy is transferred more efficiently toward small scales than the ki-netic energy.The Cox number of diapycnal diffusivity is also calculated,and it shows a good consistency with the observations and deductions in the ocean interior,during the stage of the stratified turbulence maintaining a fairly active level.
机译:使用伪谱方法直接对传播的内波的演化和破裂进行了数值模拟,清楚地证明了参与演化的PSI(参数次谐波不稳定性)的机理,它在非线性共振相互作用中逐渐占主导地位。能量级联到第二个植物波包,该频率比主波的频率低,波数多。随着该波包的增长,发生了断波并引起强烈的非线性状态,扰动被估计。湍流的强烈混合和间歇性从总能量和峰度随时间变化的峰度中可以了解到湍流。还分析了分层湍流的一些统计特性,包括KE(动能)和PE(势能)的光谱。表明PE谱显示波数范围缩放为0.2 N4k-3r(N为Brunt-Vaisala频率,ky为垂直波数),其为然而,KE谱不能满足垂直波数的负立方定律,其下降趋势比PE谱大得多,因为势能比动能更有效地向小尺度转移还计算出了二向扩散系数的Cox数,它与分层的湍流阶段保持相当活跃的水平,与海洋内部的观测和推论显示出很好的一致性。

著录项

  • 来源
    《海洋学报(英文版)》 |2008年第1期|13-22|共10页
  • 作者单位

    Physical Oceanography Laboratory Polar Research Institute of China State Oceanic Administration Shanghai 200136 China;

    East China Sea Environment Monitoring State Oceanic Administration Shanghai 200137 China;

    Institute of Physical Oceanography Ocean University of China Qingdao 266003 China;

    Physical Oceanography Laboratory Polar Research Institute of China State Oceanic Administration Shanghai 200136 China;

    Physical Oceanography Laboratory Polar Research Institute of China State Oceanic Administration Shanghai 200136 China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 海洋学;
  • 关键词

    internal wave breaking,pseudo-spectral method,buoyancy sub-range,Cox number;

    机译:内部波浪破碎;伪谱法;浮力子范围;Cox数;
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