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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Quasi-biennial oscillation influence on long-period planetary waves in the Antarctic upper mesosphere
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Quasi-biennial oscillation influence on long-period planetary waves in the Antarctic upper mesosphere

机译:准两年一次振荡对南极上层中层行星的长周期波的影响

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摘要

[1] Long-period planetary wave data derived from meteor wind observations recorded over a 12-year period with the SuperDARN radar at Halley, Antarctica, are presented and Compared with the phase of the quasi-biennial oscillation (QBO) throughout the equatorial stratosphere. Enhanced planetary wave activity in the Antarctic upper mesosphere is found during the summer months, when the QBO in the equatorial upper stratosphere is westerly, and during the late winter, when the QBO in the upper stratosphere is easterly. These quasi-biennial enhancements in planetary wave activity coincide with a reduction in strength, by up to 30%, of the late-winter eastward winds in the Antarctic upper mesosphere. In addition, when the QBO is in the correct phase for enhanced planetary wave activity in the upper mesosphere above Halley, planetary wave activity measured in the upper mesosphere of the high-latitude Northern Hemisphere is reduced (and vice versa). These results clearly indicate significant interhemispheric propagation of planetary waves from the winter to summer hemispheres. Observational evidence that the stratospheric QBO induces a strong enough QBO in the equatorial upper mesosphere to act as a gate to the interhemispheric propagation of these long-period waves is discussed in light of these results.
机译:[1]给出了从南极州哈雷的SuperDARN雷达在12年期间记录的流星风观测数据得出的长周期行星波数据,并将其与整个赤道平流层的准两年一次振荡(QBO)的相位进行了比较。 。在夏季,当赤道上平流层的QBO为西风时,在南极中层中层的行星波活动增强;而在冬季后期,当平流层上层的QBO为东风时,则发现了南极上层中层的行星波活动增强。这些准两年一次的行星波活动增强与南极中层中层冬季晚些时候向东风的强度降低多达30%相吻合。此外,当QBO处于正确的相位以增强哈雷上方的中层中层行星波活动时,在高纬度北半球上层中层层中测得的行星波活动会减少(反之亦然)。这些结果清楚地表明,从冬季到夏季半球,行星波在半球之间有明显的传播。鉴于这些结果,讨论了平流层QBO在赤道上层中层层引起足够强的QBO以充当这些长周期波在半球间传播的闸门的观测证据。

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