首页> 外文期刊>Journal of Physical Oceanography >The Surface Expression of Semidiurnal Internal Tides near a Strong Source at Hawaii. Part II: Interactions with Mesoscale Currents
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The Surface Expression of Semidiurnal Internal Tides near a Strong Source at Hawaii. Part II: Interactions with Mesoscale Currents

机译:夏威夷强震源附近半日潮内部潮汐的表面表达。第二部分:与中尺度电流的相互作用

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Observations of semidiurnal surface currents in the Kauai Channel, Hawaii, are interpreted in the light of the interaction of internal tides with energetic surface-intensified mesoscale currents. The impacts on internal tide propagation of a cyclone of 55-km diameter and ~ 100-m vertical decay scale, as well as of vorticity waves of ~100-km wavelength and 100-200-m vertical decay scales, are investigated using 3D ray tracing. The Doppler-shifted intrinsic frequency is assumed to satisfy the classic hydrostatic internal wave dispersion relation, using the local buoyancy frequency associated with the background currents through thermal-wind or gradient-wind balance. The M_2 internal tide rays with initial horizontal wavelength of 50 km and vertical wavelength of 0(1000 m) are propagated from possible generation locations at critical topographic slopes through idealized mesoscale currents approximating the observed currents. Despite the lack of scale separation between the internal waves and background state, which is required by the ray-tracing approximation, the results are qualitatively consistent with observations: the cyclone causes the energy of internal tide rays propagating through its core to increase near the surface (up to a factor of 15), with surfacing time delayed by up to 5 h (~150° phase lag), and the vorticity waves enhance or reduce the energy near the surface, depending on their phase. These examples illustrate the fact that, even close to their generation location, semidiurnal internal tides can become incoherent with astronomical forcing because of the presence of mesoscale variability. Internal tide energy is mainly affected by refraction through the inhomogeneous buoyancy frequency field, with Doppler shifting playing a secondary but not negligible role, inducing energy transfers between the internal tides and background currents. Furthermore, the vertical wavelength can be reduced by a factor of ft near the surface in the presence of the cyclone, which, combined with the energy amplification, leads to increased vertical shear within the internal tide rays, with implications for internal wave-induced mixing in the ocean.
机译:根据内部潮汐与高能表面增强的中尺度水流的相互作用,解释了夏威夷考艾岛海峡半日表面水流的观测结果。使用3D射线研究了直径为55 km且垂直衰减尺度为〜100 m的旋风分离器以及〜100 km波长和垂直衰减尺度为100-200 m的旋涡对内部潮汐传播的影响。追踪。假定多普勒频移的固​​有频率使用与通过热风或梯度风平衡的背景电流相关的局部浮力频率来满足经典的静水内波频散关系。初始水平波长为50 km,垂直波长为0(1000 m)的M_2内部潮汐射线通过近似观测电流的理想中尺度电流从临界地形坡度的可能生成位置传播。尽管射线追踪近似要求内部波和背景状态之间缺乏尺度分离,但结果在质量上与观察结果一致:旋风使内部潮汐射线通过其核心传播的能量在表面附近增加。 (最多15倍),堆焊时间最多延迟5小时(约150°相位滞后),并且涡旋波会根据其相位增加或减少表面附近的能量。这些例子说明了这样一个事实,即即使在接近其生成地点的情况下,由于存在中尺度变异性,半日内潮也会因天文强迫而变得不连贯。内部潮汐能量主要受非均匀浮力频率场折射的影响,多普勒频移起着次要但不可忽略的作用,引起内部潮汐和背景电流之间的能量转移。此外,在存在旋风分离器的情况下,垂直波长可以在表面附近减小ft英尺,这与能量放大相结合,会导致内部潮汐射线内的垂直剪切增加,这对内部波诱导的混合有影响。在海洋中。

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  • 来源
    《Journal of Physical Oceanography》 |2010年第6期|P.1180-1200|共21页
  • 作者单位

    School of Ocean and Earth Science and Technology, University of Hawaii at Manoa, Honolulu, Hawaii School of Environmental Sciences, University of East Anglia, Norwich NR4 7TJ, United Kingdom;

    rnSchool of Ocean and Earth Science and Technology, University of Hawaii at Manoa, Honolulu, Hawaii;

    rnSchool of Ocean and Earth Science and Technology, University of Hawaii at Manoa, Honolulu, Hawaii;

    rnInstitute of Oceanography, University of Hamburg, Hamburg, Germany;

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