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Annular variability and eddy-zonal flow interactions in a simplified atmospheric GCM. Part 1: Characterization of high and low frequency behaviour

机译:简化的大气GCM中的环形变异性和涡流-纬向流相互作用。第1部分:高频和低频行为的表征

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摘要

Experiments have been performed using a simplified, Newtonian forced, global circulation model to investigate how variability of the tropospheric jet can be characterized by examining the combined fluctuations of the two leading modes of annular variability. Eddy forcing of this variability is analyzed in the phase space of the leading modes using the vertically integrated momentum budget. The nature of the annular variability and eddy forcing depends on the time scale. At low frequencies the zonal flow and baroclinic eddies are in quasi equilibrium and anomalies propagate poleward. The eddies are shown primarily to reinforce the anomalous state and are closely balanced by the linear damping, leaving slow evolution as a residual. At high frequencies the flow is strongly evolving and anomalies are initiated on the poleward side of the tropospheric jet and propagate equatorward. The eddies are shown to drive this evolution strongly: eddy location and amplitude reflect the past baroclinicity, while eddy feedback on the zonal flow may be interpreted in terms of wave breaking associated with baroclinic life cycles in lateral shear.udud
机译:已经使用简化的牛顿强迫全局循环模型进行了实验,以研究对流层射流的可变性如何通过检查两种主要的环状可变模式的组合波动来表征。使用垂直积分动量预算在主导模式的相空间中分析了这种可变性的涡流强迫。环形可变性和涡强迫的性质取决于时间尺度。在低频时,纬向气流和斜压涡旋处于准平衡状态,并且异常向极点传播。涡流主要表现为增强异常状态,并通过线性阻尼紧密平衡,从而使缓慢的演变成为残余。在高频率下,流动强烈发展,并且异常现象在对流层射流的极侧开始并向赤道传播。涡流显示出强烈地推动了这一演化:涡流的位置和幅度反映了过去的斜压,而对纬向气流的涡流反馈可以用与横向剪切中斜压生命周期相关的波浪破碎来解释。

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