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Evidence of damping and overturning of gravity waves in the Arctic mesosphere: Na lidar and OH temperature observations

机译:北极中层重力波的衰减和倾覆证据:激光雷达和OH温度观测

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摘要

Lidar observations of the mesospheric sodium (Na) layer have been made at Poker Flat Research Range, Chatanika, Alaska (65°N,147°W) over a 4-year period. Long-period oscillations have been observed routinely in the bottomside of the Na layer. Simultaneous hydroxyl airglow temperature measurements have confirmed that these oscillations are associated with upwardly propagating gravity waves. These lidar observations have yielded statistically significant measurements of upwardly propagating gravity waves on 24 occasions. A gravity-wave model with pseudo-steady-state chemistry is used to determine the characteristics of the waves. These 24 waves have an average observed period of 6.9 h, average vertical wavelength of 14.2 km, average temperature amplitude of 8 K, and average horizontal velocity amplitude of 30 m/s. These waves appear to be damped over the altitude of the Na layer with a growth length of 216 km. The waves do not appear to be damped by viscous dissipation or linear instabilities in the waves themselves. However, 20 of the 24 wave events are accompanied by overturning structures in the bottomside of the Na layer. These wave-overturning events have the same characteristics as those observed at Urbana, IL (40°N,88°W), that were interpreted as convective instabilities arising from the superposition of large- and small-scale waves. The current observations suggest that such convective instabilities are a relatively common feature at this high-latitude site and contribute to the damping of large-scale gravity waves.
机译:在4年的时间里,阿拉斯加Chatanika(65°N,147°W)的Poker Flat研究范围对中层钠(Na)层进行了激光雷达观测。在Na层的底部通常会观察到长时间振荡。同时进行的羟基气辉温度测量已经证实,这些振动与向上传播的重力波有关。这些激光雷达观测已经产生了24次向上传播的重力波的统计显着测量。具有伪稳态化学性质的重力波模型用于确定波的特性。这24个波的平均观测周期为6.9 h,平均垂直波长为14.2 km,平均温度幅值为8 K,平均水平速度幅值为30 m / s。这些波似乎在Na层的整个高度上被衰减,其增长长度为216 km。波浪似乎并未因波浪本身的粘性耗散或线性不稳定性而衰减。但是,在24个波浪事件中,有20个伴随着Na层底面的倾覆结构。这些波浪翻转事件具有与伊利诺伊州厄巴纳(40°N,88°W)观察到的特征相同的特征,这些特征被解释为由大尺度和小尺度波浪的叠加引起的对流不稳定性。当前的观察结果表明,这种对流不稳定性是该高纬度地区的一个相对普遍的特征,并且有助于大尺度重力波的衰减。

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