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LINEAR MODES AND STORM TRACKS IN A TWO-LEVEL PRIMITIVE EQUATION MODEL

机译:两层本原方程模型中的线性模式和风暴轨迹

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Linear stability analyses of three-dimensional time-mean flows in a two-level primitive equation model are presented. The model's stationary wave is generated by implementing idealized mountains at the lower boundary. Two sets of experiments are performed: the first with one mountain and the second with three mountains at equal distance from each other. Structures of streamfunctions and heat fluxes from the linearly unstable normal mode are compared with their bandpass transient counterparts in the nonlinear model simulation. The three-dimensional time-mean dow, about which the equations are linearized, is convectively unstable for both the one and three mountain cases. For the three mountain case, there is reasonable agreement between the linear mode and the bandpass transient eddies in terms of both the longitudinal location of the largest eddy amplitudes and the potential enstrophy budget, suggesting that the global mode can capture the correct structure of the climatological storm tracks for different reasons. For the one mountain case, however, the largest eddy amplitude of the linear mode extends farther downstream than that of the bandpass transient eddies. The reasonable correspondence between the linear modes and the bandpass eddies for the three mountain case appears to be due to the relative proximity of successive unstable regions. Between these successive unstable regions are diffluent flows, resulting in increased deformation and enhanced horizontal diffusion, which plays an important role in dissipating transient eddy enstrophy. It is suspected that this locally enhanced dissipation represents strained eddies by the deformation field. [References: 36]
机译:提出了两级原始方程模型中三维时均流的线性稳定性分析。该模型的驻波是通过在下边界实施理想化山脉产生的。进行了两组实验:第一组是一个山峰,第二组是三个山峰,彼此之间的距离相等。在非线性模型仿真中,将线性不稳定正常模式的流函数和热通量的结构与带通瞬态对应物进行了比较。对于一维和三维山峰情况,方程均被线性化的三维时间均值道对流不稳定。对于这三种山区情况,线性模式和带通瞬变涡流在最大涡流振幅的纵向位置和潜在的涡旋预算之间都存在合理的一致性,这表明整体模式可以捕获正确的气候结构风暴轨迹有不同的原因。但是,对于一个山地情况,线性模式的最大涡流幅度比带通瞬变涡流更向下游延伸。线性模式与带通涡旋在三个山区的情况之间的合理对应关系似乎是由于相继的不稳定区域的相对接近引起的。在这些连续的不稳定区域之间是扩散流,导致变形增加和水平扩散增强,这在消散瞬态涡流涡旋中起重要作用。怀疑这种局部增强的耗散通过变形场表示应变涡。 [参考:36]

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