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The Energy Cycle Associated to the Pacific Walker Circulation and Its Relationship to ENSO

机译:与太平洋沃克环流有关的能量循环及其与ENSO的关系

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In this paper we study the Lorenz energy cycle of the Walker circulation associated with ENSO. The robust formulation of the energetics allows drawing a clear picture of the global energy and conversion terms associated with the three dimensional domains appropriate to qualify the large scale transfers that influence, and are influenced by, the anomalies during ENSO. A clear picture has emerged in that El Nino and La Nina years have approximately opposite anomalous energy fluxes, regardless of a non-linear response identified in the potential energy fields (zonal and eddy). During El Ninos the tropical atmosphere is characterized by an increase of zonal available potential energy, decrease of eddy available potential energy and decrease of kinetic energy fields. This results in weaker upper level jets and a slowingdown of the overall Walker cell. During La Ninas reversed conditions are triggered, with an acceleration of the Walker cell as observed from the positive anomalous kinetic energy. The potential energy in the Walker circulation domain during the cold phase is also reduced. An equally opposite behavior is also experienced by the energy conversion terms according to the ENSO phase. The energetics-anomalous behavior seem to be triggered at about the same time when ENSO starts to manifest for both the positive and negative phases, suggesting a coupled mechanism in which atmospheric and oceanic anomalies interact and feed back onto each other.
机译:在本文中,我们研究了与ENSO相关的沃克循环的洛伦兹能量循环。强大的能量学公式可以清晰地描绘出与三维域相关的全局能量和转换项,这些条件适合限定ENSO期间影响异常并受异常影响的大规模传输。一个清晰的画面已经出现,厄尔尼诺和拉尼娜年具有近似相反的异常能量通量,而与势能场(区域和涡流)中识别出的非线性响应无关。在厄尔尼诺现象期间,热带大气的特征是区域可用势能增加,涡流可用势能减少和动能场减少。这导致较弱的高空射流和整个沃克单元的减速。在La Ninas期间,从正异常动能中观察到,Walker细胞的加速会触发反向条件。在冷态期间,沃克循环域中的势能也降低了。根据ENSO阶段,能量转换项也会经历同样相反的行为。高能异常行为似乎是在ENSO正相和负相开始出现的大约同一时间触发的,这表明大气和海洋异常相互作用并相互反馈的耦合机制。

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