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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Stratospheric gravity wave characteristics and seasonal variations observed by lidar at the South Pole and Rothera, Antarctica
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Stratospheric gravity wave characteristics and seasonal variations observed by lidar at the South Pole and Rothera, Antarctica

机译:平流层的重力波和特征激光雷达观测的季节性变化南极和Rothera,南极洲

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摘要

We present an observational study of stratospheric gravity wave spectra and seasonal variations of potential energy density at the South Pole (90°S) and Rothera (67.51.5°S, 68.0°W), Antarctica. The gravity wave spectra are derived from the atmospheric relative density perturbation in the altitude range of 30-45 km measured by an iron Boltzmann lidar. The ground-relative wave characteristics obtained at each location are comparable, with an annual mean vertical wavelength of ~4.1 km, vertical phase speed of ~0.7 mand period of ~104 min. Approximately 44% of the observed waves showan upward phase progression while the rest display a downward phase progression in ground-based reference for both locations. Gravity wave potential energy density (GW-E_P) at Rothera is ~4 times higher than the South Pole in winter but is comparable in summer. Clear seasonal variations of GW-E_P are observed at Rothera with the winter average being 6 times larger than that of summer. The seasonal variations of GW-E_P at the South Pole are significantly smaller than those at Rothera. The absence of seasonal variations in wave sources and critical level filtering at the South Pole is likely to be responsible for the nearly constant GW-E_P. The minimum critical level filtering in winter at Rothera is likely to be a main cause for the winter enhanced GW-E_P, as this would allow more orography-generated waves to reach the 30 to 45 km range. The stratospheric jet streams may also contribute to the winter enhancement at Rothera.
机译:我们现在平流层的观察研究重力波光谱和季节性变化潜在的能量密度在南极(90°S)和Rothera(67.51.5°S, 68.0°W),南极洲。重力波光谱来自大气的相对密度扰动衡量一个铁高度范围30 - 45公里玻耳兹曼激光雷达。特征提取在每个位置可比,年平均垂直的波长的~ 4.1公里,垂直阶段的速度~ 0.7 ~ 104分钟。大约44%观察到的波showan上升阶段进展,其余的则显示一个向下的在地面参考阶段发展这两个位置。在Rothera密度(GW-E_P) ~ 4倍比南极冬天但具有可比性在夏天。观察与冬季平均Rothera吗夏天的6倍。在南极GW-E_P的季节性变化在Rothera显著小于。没有季节性波动的变化南源和临界水平过滤极可能是负责近常数GW-E_P。过滤在Rothera可能是一个在冬天主要原因冬天增强GW-E_P,这将允许更多的orography-generated波达到30到45公里范围。急流也可能导致冬天在Rothera增强。

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