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Dynamical Mechanism for the Increase in Tropical Upwelling in the Lowermost Tropical Stratosphere during Warm ENSO Events

机译:ENSO高温事件期间最热带低空平流层热带上升流增加的动力学机制

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摘要

The Brewer–Dobson circulation strengthens in the lowermost tropical stratosphere during warm El Nino– Southern Oscillation (ENSO) events. Dynamical analyses using the most recent version of the Whole Atmosphere Community Climate Model show that this is due mainly to anomalous forcing by orographic gravity waves, which maximizes in the Northern Hemisphere subtropics between 18 and 22 km, especially during the strongest warm ENSO episodes. Anomalies in the meridional gradient of temperature in the upper troposphere and lower stratosphere (UTLS) are produced during warm ENSO events, accompanied by anomalies in the location and intensity of the subtropical jets. This anomalous wind pattern alters the propagation and dissipation of the parameterized gravity waves, which ultimately force increases in tropical upwelling in the lowermost stratosphere. During cold ENSO events a similar signal, but of opposite sign, is present in the model simulations. The signals in ozone and water vapor produced by ENSO events in the UTLS are also investigated.
机译:在厄尔尼诺-南方涛动(ENSO)温暖的事件中,最低的热带平流层中的布鲁尔-多布森环流增强。使用最新版本的《整个大气社区气候模型》进行的动力学分析表明,这主要是由于地形重力波引起的异常强迫,在北半球副热带地区,在18至22 km之间,这尤其是在ENSO最强的暖期发生时,异常强。在温暖的ENSO事件中,对流层高层和平流层较低层(UTLS)的子午温度梯度出现异常,同时副热带急流的位置和强度也出现异常。这种异常的风型改变了参数化重力波的传播和消散,最终使平流层最低层的热带上升流中的力增加。在ENSO冷事件期间,模型仿真中会出现类似但信号相反的信号。还研究了UTLS中ENSO事件产生的臭氧和水蒸气中的信号。

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