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Madden-Julian Oscillation impacts on South American summer monsoon season: precipitation anomalies, extreme events, teleconnections, and role in the MJO cycle

机译:Madden-julian振荡对南美夏季季风季节的影响:降水异常,极端事件,电信连接和MJO周期中的作用

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The impacts of the Madden Julian Oscillation (MJO) on the South American monsoon season are analyzed in the global context of the MJO propagating anomalies of convection and circulation. Unexplored aspects, such as the continental-scale daily precipitation anomalies in the MJO frequency band and changes in the frequency of extreme rainfall events, are disclosed throughout its cycle. Among other effects, the MJO increases the average daily precipitation by more than 30% of the climatological value and doubles the frequency of extreme events over central-east South America (SA), including the South Atlantic Convergence Zone (SACZ). The evolution of the most intense precipitation anomalies depends on the interplay between tropics-tropics and tropics-extratropics teleconnections, and the topography over central-east SA seems to play a role in enhancing low-level convergence. The maximum anomalies are produced by a tropics-extratropics wave train. It not only favors precipitation anomalies over the SACZ and subtropical SA, but also strengthens the anomalies over tropical SA when the system propagates northeastward. Influence function analysis and simulations of the responses to different components of upper-level anomalous divergence associated with the MJO anomalous convection indicate the probable origin of the anomalous circulation leading to the main precipitation anomalies over SA. It is triggered by secondary anomalous convection, while the main tropical anomalous circulation is produced by the strongest equatorial convection anomalies. There are indications that MJO-related anomalies over SA contribute to the impacts on other regions and to the initiation of the MJO in the Indian Ocean.
机译:在MJO传播对流和流通的全球范围内的全球范围内分析了Madden Julian振荡(MJO)对南美季风季节的影响。在其周期上公开了未开发的方面,例如MJO频带中的大陆日常降水异常以及极端降雨事件的频率变化,在其周期中公开。在其他效果之外,MJO增加了占气候值的30%以上的平均每日降水量,并使中东南美洲(SA)的极端事件的频率加倍,包括南大西洋汇聚区(SACZ)。最强烈的降水异常的演变取决于热带热带地区和热带地区 - 卓越电信连接的相互作用,中央东SA的地形似乎在提高低级收敛方面发挥作用。最大的异常由热带卓越的波动火车生产。它不仅有利于SACZ和亚热带SA上的降水异常,而且当系统向东北传播时,还增强了热带SA上的异常。影响与MJO异常对流相关的上层异常分歧的不同组分的响应的函数分析和模拟表明,异常循环的可能起源导致SA上的主要沉淀异常。它是由二次异常对流引发的,而主要的热带异常循环是由最强的赤道对流异常产生的。有迹象表明,SA上的MJO相关的异常有助于对其他地区的影响以及印度洋中MJO的启动。

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