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Quasi-Biennial Oscillation of Wind in the Low-Latitude Stratosphereand the Winter Wave Activity of the Atmospherein the Northern Hemisphere

机译:低纬平流层中风的准两年一次振荡和北半球大气的冬季波活动

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摘要

According to the Holton-Tan hypothesis [1], oscillations of the equatorial stratospheric wind change the conditions of the vertical and meridional propagation of planetary waves in extratropical regions, which can cause quasi-biennial oscillations (QBOs) at middle and polar latitudes. To verify the Holton-Tan hypothesis, the intensity of the winter wave activity of the atmosphere in the Northern Hemisphere was estimated at different phases of the quasi-biennial oscillation of the equatorial stratospheric zonal wind. As it turned out, a higher level of the wave activity expected at the easterly phase of the equatorial QBO is characteristic only of the period when the winter circulation is established. At the end of winter a higher level of the wave activity is observed at the westerly QBO phase, which contradicts the Holton-Tan hypothesis. Small but nevertheless noticeable distinctions in the wave activity at low tropospheric levels suggest that the quasi-biennial periodicity of the wave activity at middle latitudes can be caused by oscillations of synoptic processes between the predominantly zonal and meridional forms of the circulation, as was indicated by Pogosyan and Pavlovskaya [2, 3].
机译:根据Holton-Tan假说[1],赤道平流层风的振荡改变了温带地区行星波垂直和子午传播的条件,这可能会在中纬度和纬度引起准两年一次的振荡(QBO)。为了验证Holton-Tan假说,估计了北半球大气在冬季每两年一次的赤道平流纬向风准两年振荡的强度。事实证明,在赤道QBO的东风阶段预期的更高水平的波活动仅是建立冬季循环的时期的特征。在冬季末期,在西风QBO阶段观测到较高水平的波活动,这与Holton-Tan假设相反。在低对流层水平上,波活动的微小但很明显的区别表明,在中纬度地区,波活动的准两年周期是由主要纬向和子午环流形式之间的天气过程振荡引起的,这表明Pogosyan和Pavlovskaya [2,3]。

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