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The 16-day variation in the mean flow at Grahamstown (33.3° S, 26.5° E)

机译:Grahamstown(33.3°S,26.5°E)的平均流量16天变化

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Data from the Grahamstown (33.3° S, 26.5° E) meteor radar have been used to study the short-term variations of the mean flow at ~ 90 km altitude. The results show considerable variation characterised by a superposition of fluctuations on different planetary time scales. Wavelet multi-resolution and spectral techniques reveal that the quasi-16-day oscillation dominates the wave spectrum in the ~ 2–20-day period range. This quasi-16-day oscillation, which is thought to be related to a similar oscillation in the lower atmosphere, is found to be dominant in winter and the equinoxes. However, it is sometimes significant in summer, which could be due to cross-equatorial ducting and the selective transmissivity of gravity waves.Key words. Meteorology and atmospheric dynamics (waves and tides)
机译:来自格雷厄姆斯敦(33.3°S,26.5°E)流星雷达的数据已用于研究〜90 km高度的平均流量的短期变化。结果显示出很大的变化,其特征在于不同行星时间尺度上的波动叠加。小波多分辨率和频谱技术显示,准16天振荡在〜2–20天周期范围内占主导地位。这种准16天的振荡被认为与低层大气中的类似振荡有关,在冬季和春分时占主导地位。但是,有时在夏季很重要,这可能是由于跨赤道风道和重力波的选择性透射率所致。 关键词。 气象和大气动力学(波浪和潮汐)

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