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首页> 外文期刊>Journal of Physical Oceanography >Phase Speed Cross Spectra of Eddy Heat Fluxes in the Eastern Pacific
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Phase Speed Cross Spectra of Eddy Heat Fluxes in the Eastern Pacific

机译:东太平洋涡流通量的相速度互谱

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This study investigates the observed spectral character of eddy heat fluxes near the ocean surface, focusing on the distribution in wavenumber and phase speed space. Eddy heat fluxes in the eastern Pacific are calculated from concurrent satellite sea surface height and sea surface temperature data. A high-resolution coupled climate model is also analyzed in order to verify the physical mechanisms involved and to validate the model against observations. Wavenumber, frequency, and phase speed power spectra and cross spectra are constructed and presented as a function of latitude. These spectra reveal the dominance of coherent mesoscale eddies in both the length scale and phase speed of eddy heat fluxes. The breadths of the spectra are characterized via spectral moments; these moments show that the eddy fluxes are relatively concentrated around the dominant wavenumber and phase speed. Good agreement is found between the model and the observed spectra. The integrated heat transport and corresponding eddy diffusivity are shown to compare well with previous studies, but the results give a deeper insight into what determines the heat flux. Implications for eddy parameterization are discussed.
机译:这项研究调查了海洋表面附近涡流通量的频谱特征,重点是波数和相速度空间的分布。根据同时发生的卫星海面高度和海面温度数据计算东太平洋的涡流通量。还对高分辨率耦合气候模型进行了分析,以验证所涉及的物理机制并针对观测结果验证该模型。构造了波数,频率和相速度功率谱和交叉谱,并将其表示为纬度的函数。这些光谱揭示了相干中尺度涡旋在涡旋热通量的长度尺度和相速度上的优势。频谱的宽度通过频谱矩来表征。这些时刻表明,涡流相对集中在主导波数和相速度附近。在模型和观察到的光谱之间发现了很好的一致性。图中显示了集成的热传输和相应的涡流扩散率,可以很好地与以前的研究进行比较,但是结果可以更深入地了解决定热通量的因素。讨论了涡流参数化的含义。

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