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Mapping potential vorticity dynamics on saturn: Zonal mean circulation from Cassini and Voyager data

机译:绘制土星潜在涡度动态图:来自卡西尼号和旅行者号数据的区域平均环流

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Maps of Ertel potential vorticity on isentropic surfaces (1PV) and quasi-geostrophic potential vorticity (QGPV) are well established in dynamical meteorology as powerful sources of insight into dynamical processes involving 'balanced' flow (i.e. geostrophic or similar). Here we derive maps of zonal mean IPV and QGPV in Saturn's upper troposphere and lower stratosphere by making use of a combination of velocity measurements, derived from the combined tracking of cloud features in images from the Voyager and Cassini missions, and thermal measurements from the Cassini Composite Infrared Spectrometer (CIRS) instrument. IPV and QGPV are mapped and compared for the entire globe between latitudes 89"S-82CN. As on Jupiter, profiles of zonally averaged PV show evidence fora step-like "staircase" pattern suggestive of local PV homogenisation, separated by strong PV gradients in association with eastward jets. The northward gradient of PV (IPV or QGPV) is found to change sign in several places in each hemisphere, however, even when baroclinic contributions are taken into account. The stability criterion with respect to Arnol'd's second stability theorem may be violated near the peaks of westward jets. Visible, near-IR and thermal-IR Cassini observations have shown that these regions exhibit many prominent, large-scale eddies and waves, e.g. including 'storm alley'. This suggests the possibility that at least some of these features originate from instabilities of the background zonal flow.
机译:等熵表面(1PV)上的Ertel势涡和准地转势势涡(QGPV)的地图在动态气象学中得到了很好的确立,作为深入了解涉及``平衡''流(即地转或类似)的动力学过程的强大资源。在这里,我们利用速度测量的组合得出了土星上对流层和平流层下层的区域平均IPV和QGPV的地图,这些速度测量是从Voyager和Cassini任务的图像中云特征的组合跟踪和Cassini的热测量得出的复合红外光谱仪(CIRS)仪器。对IPV和QGPV进行了映射,并在89“ S-82CN纬度之间对整个地球进行了比较。在木星上,区域平均PV的分布图显示出阶梯状“阶梯”模式的迹象,表明局部PV均质化,被强PV梯度隔开即使考虑到斜压作用,PV(IPV或QGPV)的北向梯度也会在每个半球的多个位置改变符号,即使考虑到斜压贡献也是如此。卡西尼号的可见,近红外和热红外观测表明,这些区域表现出许多显着的,大范围的涡流和波浪,例如包括“风暴小巷”。这些特征中至少有一些是源于背景纬向流的不稳定性。

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