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Scales of linear baroclinic instability and macroturbulence in dry atmospheres

机译:干燥大气中线性斜压不稳定性和大湍流的尺度

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摘要

Linear stability analyses are performed on a wide range of mean flows simulated with a dry idealized general circulation model. The zonal length scale of the linearly most unstable waves is similar to the Rossby radius. It is also similar to the energy-containing zonal length scale in statistically steady states of corresponding nonlinear simulations. The meridional length scale of the linearly most unstable waves is generally smaller than the energy-containing meridional length scale in the corresponding nonlinear simulations. The growth rate of the most unstable waves increases with increasing Eady growth rate, but the scaling relationship is not linear in general. The available potential energy and barotropic and baroclinic kinetic energies of the linearly most unstable waves scale linearly with each other, with similar partitionings among the energy forms as in the corresponding nonlinear simulations. These results show that the mean flows in the nonlinear simulations are baroclinically unstable, yet there is no substantial inverse cascade of barotropic eddy kinetic energy from the baroclinic generation scale to larger scales, even in strongly unstable flows. Some aspects of the nonlinear simulations, such as partitionings among eddy energies, can be understood on the basis of linear stability analyses; for other aspects, such as the structure of heat and momentum fluxes, nonlinear modifications of the waves are important.
机译:线性稳定性分析是使用干式理想化的一般循环模型模拟的各种平均流量进行的。线性最不稳定的波的纬向长度尺度类似于罗斯比半径。在相应的非线性模拟的统计稳定状态下,它也类似于含能的纬向长度尺度。线性最不稳定的波的子午线长度尺度通常小于相应的非线性模拟中包含能量的子午线长度尺度。最不稳定波的增长率随Eady增长率的增加而增加,但比例关系通常不是线性的。线性最不稳定的波的可用势能以及正压和斜压动能彼此成线性比例,并且在能量形式之间的分配与相应的非线性模拟中的分配类似。这些结果表明,非线性模拟中的平均流量是斜压不稳定的,但是即使在强烈不稳定的流量中,也没有从斜压产生尺度到较大尺度的正压涡流动能的逆级联。非线性仿真的某些方面,例如涡流能量之间的分配,可以根据线性稳定性分析来理解;对于其他方面,例如热和动量通量的结构,波浪的非线性修改很重要。

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