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Identifying two steps in the internal wave energy cascade.

机译:识别内部波能级联中的两个步骤。

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摘要

In addition to their own convective breaking, the energetic baroclinic tides at a generation site stimulate the weaker non-linear interactions that might comprise the more-typical open ocean energy cascade. Observations of two classes of nonlinear interactions are presented. The first transfers energy from the semidiurnal tide to near-diurnal subharmonics. The second transfers energy from low-frequency, high-shear waves to high frequencies.;Evidence is shown for wave-wave interactions between the low-mode, semidiurnal tide and high-mode, near-inertial motions. Profiles of velocity and density were collected aboard the Research Platform FLIP, at two sites during the Hawaii Ocean Mixing Experiment (HOME). In HOME Nearfield, significant bicoherences are observed between the dominant low-mode semidiurnal tide and opposing pairs of near-diurnal waves of vertical scale ≈100 m. Growth rates of diurnal waves during each fortnightly cycle agree with theoretical predictions for the Parametric Subharmonic Instability (PSI) mechanism. At the Farfield location, 430 km from the generation site, near-diurnal waves are also observed but are not significantly bicoherent with the semidiurnal tide.;Triple correlations between low frequency vertical shears and high frequency Reynolds stresses, -⟨uiw dUi/dz⟩, are used at both HOME sites to estimate energy transfers from low frequencies, including both wind-generated motions and PSI subharmonics, to high frequencies. Energy bispectra show significant energy transfers to pairs of waves with nearly identical frequency. However, wavenumber resonances do not fit either the Induced Diffusion (ID) or eikonal models of interaction.;Peak transfer rates in the Nearfield are of order 1 x 10 -7 W kg-1, while transfer rates in the Farfield are 3--4x smaller. Nearfield energy transfers are larger than local turbulence dissipation, but fall within an order of magnitude. Farfield energy transfers and turbulence dissipation agree within a factor of 3 throughout the measurement profile.;The suggestion is that the HOME observations of energy transfer from the semidiurnal tide to near-diurnal waves via PSI, and subsequently from low to high frequency waves, represent a skeleton of the open-ocean energy cascade.
机译:除了自身的对流破裂以外,发电地点的高气压斜潮还刺激了较弱的非线性相互作用,这可能包括更典型的开放海洋能级联。提出了两类非线性相互作用的观察结果。第一次将能量从半日潮转换为近日次谐波。第二个将能量从低频高剪切波转换为高频。;显示了低模半日潮和高模近惯性运动之间的波-波相互作用的证据。在夏威夷海洋混合实验(HOME)期间,在两个地点的研究平台FLIP上收集了速度和密度的分布图。在HOME近场中,在主要的低模半日潮和垂直尺度≈ 100 m的近日相对波对之间观察到明显的双相干性。在每个两周周期中,昼夜波的增长率与参数次谐波不稳定性(PSI)机制的理论预测一致。在距发电场430 km的法菲尔德(Farfield)位置,也观察到近日波,但与半日潮没有明显的双相干性;低频垂直切变与高频雷诺应力之间的三重相关性,在两个HOME站点都使用来估计从低频(包括风力运动和PSI次谐波)到高频的能量传输。能量双谱显示出显着的能量转移到频率几乎相同的波对。但是,波数共振既不适合诱导扩散(ID)也不适合相互作用的模型。;近场中的峰值传输速率约为1 x 10 -7 W kg-1,而远场中的传输速率约为3--小4倍。近场能量传递大于局部湍流耗散,但在一个数量级内。整个测量过程中,远场能量传递和湍流耗散在3的因数内一致。;建议是,HOME观测通过PSI将能量从半日潮波传递到近日波,然后从低频波传递到高频波海洋能量级联的骨架。

著录项

  • 作者

    Sun, Oliver Ming-Teh.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Physical Oceanography.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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