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Tropospheric and Stratospheric Causal Pathways Between the MJO and NAO

机译:MJO和NAO之间的对流层和平流层因果途径

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摘要

Previous work has shown that the Madden-Julian Oscillation (MJO) can influence the North Atlantic Oscillation (NAO) via a Rossby wave teleconnection that propagates through the troposphere (i.e., a tropospheric pathway). In addition, recent work suggests that the MJO can influence the stratospheric polar vortex, which is also known to influence the tropospheric NAO-thus, there likely exists a stratospheric pathway for MJO influence as well. Here, we apply two methods to shed more light on the pathways linking the MJO to the NAO. First, we use a traditional approach in climate science based on analyzing conditional probabilities. Second, we use methods from causal discovery theory based on probabilistic graphical models. Together, these two analysis approaches reveal that the MJO can impact the NAO via both a tropospheric and stratospheric pathway. The stratospheric pathway is shown to come about in two ways: First, both methods show that the MJO itself influences the strength of the stratospheric polar vortex on a timescale of similar to 10 days, and then 5 days later the vortex can drive changes in the NAO. Second, the state of the stratospheric polar vortex acts to condition the NAO to be conducive (or not) to MJO influence. When the vortex is in a state that opposes the expected NAO response to the MJO, we find little influence of the MJO on the NAO, however, when the vortex supports the expected NAO response, the NAO is up to 30 more likely to be in a particular state following active MJO periods.
机译:先前的研究表明,马登-朱利安振荡(MJO)可以通过通过对流层(即对流层通路)传播的罗斯比波遥联来影响北大西洋振荡(NAO)。此外,最近的研究表明,MJO可以影响平流层极地涡旋,这也被称为影响对流层NAO,因此,MJO影响也可能存在平流层途径。在这里,我们应用两种方法来更清楚地阐明将 MJO 与 NAO 联系起来的途径。首先,我们在气候科学中使用基于分析条件概率的传统方法。其次,我们使用基于概率图形模型的因果发现理论方法。总之,这两种分析方法表明,MJO可以通过对流层和平流层途径影响NAO。平流层路径以两种方式出现:首先,两种方法都表明MJO本身在类似于10天的时间尺度上影响平流层极地涡旋的强度,然后5天后涡旋可以驱动NAO的变化。其次,平流层极地涡旋的状态使NAO有利于(或不利于)MJO的影响。当涡旋处于与预期的 NAO 对 MJO 的响应相反的状态时,我们发现 MJO 对 NAO 的影响很小,但是,当涡旋支持预期的 NAO 响应时,NAO 在活跃的 MJO 周期后处于特定状态的可能性要高出 30%。

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