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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Persistence of a Kelvin-Helmholtz instability complex in the upper troposphere
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Persistence of a Kelvin-Helmholtz instability complex in the upper troposphere

机译:持久性的Kelvin-Helmholtz不稳定复杂的对流层上

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During the period of 7–14 September 1998 a multiple instrument campaign was conducted at the Jicamarca Radio Observatory (JRO) near Lima, Peru, using a 50-MHz VHF radar and radiosondes. In this paper we discuss the radar and in situ observations and interpret them with insight gained from high-resolution numerical simulations of the Kelvin-Helmholtz instability (KHI). Evidence is presented that a large-scale shear in the upper troposphere on 8 September 1998 becomes locally unstable due to ambient gravity wave activity. Isolated KHI events result and subsequently grow and merge to form a large 3-km mixing layer. A 3-km-deep potential-temperature step is observed at the same altitude at least a full day after the initial observations. Analysis indicates that neither turbulent mixing nor radiative cooling is capable of destroying the fully developed temperature step in the 21 hours available, which lends credence to the hypothesis that the structure persisted for this period of time. Alternately, the structure could be continuously generated by a standing wave associated with mountain wave forcing.
机译:1998年9月期间的7 - 14多个仪器运动是在进行的利马附近Jicamarca无线电天文台(JRO)秘鲁,使用50-MHz VHF雷达和无线电探空仪。在本文中,我们讨论了雷达和原位观察和解释它们与洞察力获得高分辨率数值模拟Kelvin-Helmholtz的不稳定(地块)。证据提出了大规模剪切对流层上层1998年9月8日由于周围的重力波局部不稳定活动。随后成长和合并,形成一个大的3公里混合层。一步是观察至少在同一高度天在最初的观察。表明,湍流混合和辐射冷却能够破坏充分发展温度21小时的一步可用,这让人们相信假说持续这段的结构时间。不断产生的驻波与山波迫使有关。

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