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Ocean feedback to pulses of the Madden–Julian Oscillation in the equatorial Indian Ocean

机译:海洋对赤道印度洋Madden-Julian涛动脉动的反馈

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摘要

Dynamical understanding of the Madden–Julian Oscillation (MJO) has been elusive, and predictive capabilities therefore limited. New measurements of the ocean's response to the intense surface winds and cooling by two successive MJO pulses, separated by several weeks, show persistent ocean currents and subsurface mixing after pulse passage, thereby reducing ocean heat energy available for later pulses by an amount significantly greater than via atmospheric surface cooling alone. This suggests that thermal mixing in the upper ocean from a particular pulse might affect the amplitude of the following pulse. Here we test this hypothesis by comparing 18 pulse pairs, each separated by <55 days, measured over a 33-year period. We find a significant tendency for weak (strong) pulses, associated with low (high) cooling rates, to be followed by stronger (weaker) pulses. We therefore propose that the ocean introduces a memory effect into the MJO, whereby each event is governed in part by the previous event.
机译:对Madden-Julian振荡(MJO)的动态理解是难以捉摸的,因此预测能力受到限制。新的海洋对强表面风和冷却的反应的测量值,由两个连续的MJO脉冲间隔了几周而得来,它们显示出持续不断的洋流和脉冲通过后的地下混合,从而将可用于后续脉冲的海洋热能减少了明显多于仅通过大气表面冷却。这表明特定脉冲在上层海洋中的热混合可能会影响下一个脉冲的幅度。在这里,我们通过比较在33年内测量的18个脉冲对(每个间隔<55天)来检验该假设。我们发现弱(强)脉冲与低(高)冷却速率相关的显着趋势是紧随其后的是较强(弱)脉冲。因此,我们建议海洋将记忆效应引入MJO,从而每个事件都部分由上一个事件控制。

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