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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Meteor-radar observed mesospheric semi-annual oscillation (SAO) and quasi-biennial oscillation (QBO) over Maui, Hawaii
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Meteor-radar observed mesospheric semi-annual oscillation (SAO) and quasi-biennial oscillation (QBO) over Maui, Hawaii

机译:Meteor-radar观察气层半年度振荡(SAO)和quasi-biennial振荡(QBO)在毛伊岛,夏威夷

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We observed the variations of the semi-annual oscillation (SAO) in the menopause region of northern subtropics, and we describe its origin and forcing implications. Using the measurements of horizontal wind profiles made by the University of Illinois meteor radar in Maui, Hawaii (20.7°N, 156.3°W) from May 2002 to June 2007 and the European Centre for Medium-Range Weather Forecasts (ECMWF) interim data set, we find that the mesospheric SAO, with the winter westerly near 80-90 km clearly stronger than the summer westerly, is out of phase with the stratospheric SAO near 1 hPa (~50 km). The mesospheric SAO easterly is strong during the easterly phase and weak during the westerly phase of the stratospheric quasi-biennial oscillation (QBO) near 10 hPa (~30 km), suggesting the modulation of the mesospheric SAO by the stratospheric QBO. The mesospheric QBO has an amplitude of approximately 5 m/s near 80 km. It is in phase with the stratospheric QBO near 10 hPa and out of phase with the QBO-like oscillation near 1 hPa. The correlation of the gravity wave (GW) and the quasi-two-day wave (QTDW) activities with the mesospheric SAO and QBO suggests that the GW drags and the QTDW Eliassen-Palm flux divergences likely contribute to the QBO modulation of the mesospheric SAO. The winter easterly wind in the tropical upper stratosphere pushes further into the northern subtropics during the QBO westerly phase than during the easterly phase. This may have impacts on the upward propagation of westward-propagating GWs originated from the middle latitudes, and thus the westward GW forcing in the upper mesosphere of northern subtropics.
机译:我们观察半年度的变化振荡(SAO)更年期的地区亚热带北部,我们描述它的起源并强迫的影响。水平风概要文件了伊利诺伊大学流星雷达在毛伊岛,夏威夷(20.7°N, 156.3°W)从2002年5月到6月2007年,欧洲中程中心天气预报(ECMWF)临时数据集,我们发现气层圣,冬天西风附近明显强于80 - 90公里夏天的西风,阶段的平流层圣附近1 hPa(~ 50公里)。中间层圣伊斯特利强期间东风阶段和弱在西风阶段平流层quasi-biennial振荡(QBO)附近10 hPa(~ 30公里),暗示调制的中间层圣平流层QBO。振幅约80公里附近5米/秒。与附近的平流层QBO阶段10与QBO-like hPa的阶段1 hPa附近振荡。重力波(GW)和quasi-two-day波与中间层圣(QTDW)活动QBO表明GW拖QTDWEliassen-Palm通量差异可能的贡献中间层的QBO调制圣。冬天的东风在热带上平流层进一步推进北部亚热带的QBO西风阶段比在东风阶段。westward-propagating向上传播的名人来自中纬度地区,因此,西瓦上亚热带北部的中间层。

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