首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Intraseasonal meridional current variability in the eastern equatorial Indian Ocean
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Intraseasonal meridional current variability in the eastern equatorial Indian Ocean

机译:东部赤道印度洋的季节性经济目的变异性

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摘要

Intraseasonal variability in meridional current in the eastern equatorial Indian Ocean is investigated by use of results from a high-resolution ocean general circulation model. Both the simulated and observed meridional current variability demonstrate energy peaks in two distinct time-scales; one in the biweekly (6–8 d) period above the thermocline and the other in lower frequency band (20–70 d) within the subsurface layer. In addition, the intraseasonal current variability can be seen even in the deep ocean at 2000 m and 4000 m depths. Composite analysis of the biweekly current field demonstrates that the horizontal structure is consistent with the one for the Mixed Rossby-gravity wave, with the phase speed and wavelength close to theoretical values of the Mixed Rossby-gravity wave at 15-d period. This meridional current variability shows large coherence with the local meridional wind stress, suggesting the upper-ocean responses to the local wind-forcing. A part of the energy of the biweekly variability penetrates into the deeper layer along the raypath of the 15-d Mixed Rossby-gravity wave, causing the intraseasonal variability observed in the current meter data at 4000 m depth. On the other hand, the lower frequency intraseasonal variability in the subsurface layer is also captured in the model simulation forced by climatological winds. Large barotropic energy conversion rate appears during boreal autumn and early winter in a region southeast of Sri Lanka, suggesting importance of instability due to the seasonally changing current systems to generate mesoscale eddy-like disturbances that result in the subsurface meridional current variability.
机译:通过使用高分辨率海洋一般循环模型的结果来研究东部赤道印度洋中的子午线的渗透变异。模拟和观察到的经常变量均在两个不同的时间尺度中展示能量峰值;一个在热割机上方的两周(6-8天),另一个在地下层内的下频带(20-70d)。此外,即使在2000米和4000米深度的深海中,也可以看到季节性电流变化。双周电流场的复合分析表明,水平结构与混合rossby - 重力波的一致性,相位速度和波长接近在15-d时段处的混合罗斯比重力波的理论值。这种经络电流变异性显示出局部经络压力大的一致性,暗示了对当地风迫的高海洋反应。沿着15-D混合罗斯比重力波的射线路径,双周变异性的一部分能量穿入更深层,导致在4000米深度下观察到当前仪表数据中观察到的季节性可变性。另一方面,在气候风中强制的模型模拟中也捕获了地下层中的较低频季季节性变异性。在斯里兰卡东南部的北部和初冬出现大的波奇波波特能源转换率,这表明由于季节性变化的当前系统产生了不稳定性的重要性,以产生导致地下经常可变性的Messcale涡织物。

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