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Observations, simulations, and dynamics of jet stream variability and annular modes.

机译:喷射流可变性和环形模式的观察,模拟和动力学。

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The characteristics of the dominant pattern of extratropical variability (the so-called annular modes) are examined in the context of the theory that eddy-driven jets are self-maintaining. It is shown that there is genuine hemispheric symmetry in the variation of the zonal wind in the Southern Hemisphere but not the Northern Hemisphere. The annular mode is shown to be baroclinic in nature; it is associated with changes in the baroclinic eddy source latitude, and the latitude of the eddy source region is organized by the mean flow. This behavior is expected if there is a baroclinic feedback that encourages the maximum baroclinic instability to be coincident with the maximum zonal wind speed, and discourages the meridional vacillation of the eddy-driven jet stream. It is shown that the strength of the thermally indirect circulation that gives rise to the baroclinic feedback appears to influence the time scale of the annular mode. When the thermally indirect circulation is stronger the annular mode has a longer e-folding time in a simplified GCM. Preliminary results indicate that the same dynamics are important in the real atmosphere.Digital Object Identifier http://dx.doi.org/10.1175/2010JCLI3235.1
机译:在涡流驱动射流是自我维持的理论的背景下,研究了温带变异性的主导模式(所谓的环形模式)的特征。结果表明,南半球纬向风的变化具有真正的半球对称性,而北半球则没有。环形模式本质上是斜压的;它与斜压涡流源纬度的变化有关,涡流源区域的纬度由平均流量来组织。如果存在斜压反馈,这种反馈会鼓励最大的斜压不稳定性与最大的纬向风速同时出现,并且会阻止涡流喷射流的子午波动,那么这种行为是可以预期的。结果表明,引起斜压反馈的热间接循环强度似乎会影响环形模式的时间尺度。当热间接循环更强时,在简化的GCM中,环形模式的e-i-折叠时间更长。初步结果表明,相同的动力学在真实大气中也很重要。数字对象标识符http://dx.doi.org/10.1175/2010JCLI3235.1

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