首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Intraseasonal vertical velocity variation caused by the equatorial wave in the central equatorial Indian Ocean
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Intraseasonal vertical velocity variation caused by the equatorial wave in the central equatorial Indian Ocean

机译:赤道中部印度洋赤道波引起的季节内垂直速度变化

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Intraseasonal vertical velocity variation in the central equatorial Indian Ocean was investigated using observations from the field experiment “Mirai Indian Ocean Cruise for the Study of the MJO‐convection Onset” and from the Research Moored Array for African‐Asian‐Australian Monsoon Analysis and Prediction, in October‐November 2006. Using an array of four subsurface moored acoustic Doppler current profilers, we estimated vertical velocity by applying the continuity equation. Results indicated alternating downwelling and upwelling episodes at around thermocline depth, with maximum amplitudes larger than 8.0 × 10~(-5) m s~(-1), or about 7 m per day. The vertical velocity variation was mainly produced by the divergence/convergence of meridional currents, with a quasi‐biweekly period of 11–16 days. The temporal changes in temperature around thermocline depth were consistent with variations in vertical velocity, whereas upwelling had less impact on the surface layer temperature. Intraseasonal variations in the ocean may be a part of biweekly fluctuations by remotely forced mixed Rossby‐gravity waves, which have a meridional current maximum at the equator, accompanied by divergence/convergence in the surface layer a few degrees from the equator.
机译:利用野外实验“ Mirai印度洋巡游研究MJO对流爆发”和非亚澳-澳大利亚季风分析与预测研究系泊阵列的观测资料,对赤道中部印度洋的季节内垂直速度变化进行了调查, 2006年10月至11月。我们使用四个地下系泊声多普勒电流剖面仪阵列,通过应用连续性方程估算了垂直速度。结果表明,在温跃层深度附近交替出现下降流和上升流,最大幅度大于8.0×10〜(-5)m s〜(-1),或每天约7 m。垂直速度变化主要是由子午流的发散/收敛引起的,准双周周期为11-16天。跃层深度附近温度的时间变化与垂直速度的变化一致,而上升流对表层温度的影响较小。海洋中的季节内变化可能是远程强迫混合的罗斯比重力波每两周波动的一部分,该波在赤道处具有子午电流最大值,并伴随着距赤道几度的表层发散/会聚。

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