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Incoherent Nature of M_2 Internal Tides at the Hawaiian Ridge

机译:夏威夷海脊M_2内部潮汐的不连贯性

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摘要

Moored current, temperature, and conductivity measurements are used to study the temporal variability of M_2 internal tide generation above the Kaena Ridge, between the Hawaiian islands of Oahu and Kauai. The energy conversion from the barotropic to baroclinic tide measured near the ridge crest varies by a factor of 2 over the 6-month mooring deployment (0.5-1.1 W m~(-2)). The energy flux measured just off the ridge undergoes a similar modulation as the ridge conversion. The energy conversion varies largely because of changes in the phase of the perturbation pressure, suggesting variable work done on remotely generated internal tides. During the mooring deployment, low-frequency current and stratification fluctuations occur on and off the ridge. Model simulations suggest that these variations are due to two mesoscale eddies that passed through the region. The impact of these eddies on low-mode internal tide propagation over the ridge crest is considered. It appears that eddy-related changes in stratification and perhaps cross-ridge current speed contribute to the observed phase variations in perturbation pressure and hence the variable conversion over the ridge.
机译:系泊电流,温度和电导率测量值用于研究夏威夷瓦胡岛和考艾岛之间的Kaena山脊上方M_2内部潮汐的时间变化。在6个月的系泊部署期间(0.5-1.1 W m〜(-2)),在脊顶附近测得的从正压到斜压的能量转换变化了2倍。刚从山脊测得的能量通量经历与山脊转换相似的调制。由于摄动压力相位的变化,能量转换变化很大,这表明在遥远的内部潮汐上进行了可变的功。在系泊部署期间,低频电流和分层波动会在海脊上和海脊外发生。模型模拟表明,这些变化是由于穿过该区域的两个中尺度涡流造成的。考虑了这些涡流对脊顶低模内部潮汐传播的影响。看来,与涡流有关的分层变化以及跨脊电流速度可能会导致所观察到的摄动压力相位变化,从而导致跨脊的变量转换。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第11期|p.2021-2036|共16页
  • 作者单位

    Scripps In- stitution of Oceanography, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0230;

    University of Hawaii at Manoa, Honolulu, Hawaii;

    University of Hawaii at Manoa, Honolulu, Hawaii;

    University of Hawaii at Manoa, Honolulu, Hawaii;

    Oregon State University, Corvallis, Oregon;

    Scottish Association for Marine Science, Oban, United Kingdom;

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