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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Oceanic Kelvin waves and tropical Atlantic intraseasonal variability: 1. Kelvin wave characterization
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Oceanic Kelvin waves and tropical Atlantic intraseasonal variability: 1. Kelvin wave characterization

机译:海洋开尔文波和热带大西洋季节内变化:1.开尔文波表征

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Oceanic Kelvin waves from the equator to the West African coast are investigated in the framework of tropical Atlantic intraseasonal variability. In order to better highlight the wave propagations, a 25–95 day band-pass filter was applied to the sea surface height (SSH) product derived from the TOPEX/POSEIDON altimeter and an ocean general circulation model simulation for the 1993–2000 period. In addition to equatorial eastward propagations, our analysis reveals recurrent and continuous propagations distinguishable over thousands of kilometers poleward along the coasts as far as about 10°–15° latitude, a novel result with altimeter data. The variance of the filtered SSH signal goes from 1 cm at the equator to 2 cm at the African coast. Estimates of the phase speed range from 1.5 to 2.1 m/s along the equator and the West African coastline. Such values are very close to those of equatorial Kelvin wave propagations, likely dominated by the first two baroclinic modes, supporting the fact that the coastal propagations are coastally trapped Kelvin waves. In order to simplify the description of these Kelvin waves, we present an intraseasonal climatology which reveals regular boreal autumn–winter equator to coast propagations. An improved description is achieved thanks to the computation of an extended empirical orthogonal function for the boreal autumn–winter propagations. Lag correlation of SSH signals allows for a twofold quantification: the phase speed and the importance of remote forcing along the coast. The remote forcing effect of intraseasonal Kelvin waves is clearly evidenced over coastal upwelling regions as far as 10°–15° latitude. The physical mechanism associated with the forcing of the Kelvin waves and its impacts will be investigated in a future paper.
机译:在热带大西洋季节内变化的框架内研究了从赤道到西非海岸的海洋开尔文波。为了更好地突出波浪传播,对源自TOPEX / POSEIDON高度计的海面高度(SSH)产品应用了25-95天的带通滤波器,并对1993-2000年期间的海洋总环流模型进行了模拟。除了赤道向东的传播外,我们的分析还揭示了沿纬向数千公里沿海岸延伸至大约10°–15°的反复和连续传播,这是一个带有高度计数据的新结果。滤波后的SSH信号的方差从赤道的1 cm到非洲海岸的2 cm。沿赤道和西非海岸线的相速度估计范围为1.5至2.1 m / s。这样的值非常接近赤道开尔文波传播的值,很可能由前两个斜斜模控制,支持了这样的事实,即沿海传播是沿海捕获的开尔文波。为了简化对这些开尔文波的描述,我们提出了一个季节内气候学,揭示了定期的寒冬秋冬赤道到海岸的传播。由于对北方秋冬季传播进行了扩展的经验正交函数的计算,获得了改进的描述。 SSH信号的滞后关联可以实现双重量化:相速度和沿海岸的远程强迫作用的重要性。季内开尔文波的遥远强迫作用在北纬10°–15°的沿海上升地区得到了明显证明。将在以后的论文中研究与开尔文波强迫及其影响相关的物理机制。

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