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Quasi-stationary planetary waves in late winter Antarctic stratosphere temperature as a possible indicator of spring total ozone

机译:冬季末准静止行星波南极平流层温度可能是春季总臭氧的指标

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pstrongAbstract./strong Stratospheric preconditions for the annual Antarctic ozone hole are analyzed using the amplitude of quasi-stationary planetary waves in temperature as a predictor of total ozone column behaviour. It is found that the quasi-stationary wave amplitude in August is highly correlated with Septembera??November total ozone over Antarctica with correlation coefficient (ir/i) as high as 0.83 indicating that quasi-stationary wave effects in late winter have a persisting influence on the evolution of the ozone hole during the following three months. Correlation maxima are found in both the lower and middle stratosphere. These likely result from the influence of wave activity on ozone depletion due to chemical processes, and ozone accumulation due to large-scale ozone transport, respectively. Both correlation maxima indicate that spring total ozone tends to increase in the case of amplified activity of quasi-stationary waves in late winter. Since the stationary wave number one dominates the planetary waves that propagate into the Antarctic stratosphere in late austral winter, it is largely responsible for the stationary zonal asymmetry of the ozone hole relative to the South Pole. Processes associated with zonally asymmetric ozone and temperature which possibly contribute to differences in the persistence and location of the correlation maxima are discussed./p.
机译:> >摘要。使用温度的准平稳行星波振幅作为总臭氧柱行为的预测指标,分析了南极年度臭氧洞的平流层前提。研究发现,八月份的准平稳波振幅与南极洲的9月-11月总臭氧高度相关,相关系数( r )高达0.83,表明后期准准波效应在接下来的三个月中,冬季对臭氧空洞的演变有持续的影响。在平流层下部和中部都发现了相关最大值。这些可能分别是由于波活动对由于化学过程引起的臭氧消耗和由于大规模臭氧传输引起的臭氧积累的影响。两个相关最大值都表明,在冬季后期准静态波放大活动的情况下,春季总臭氧量倾向于增加。由于固定波一号主导了南极冬季后期传播到南极平流层的行星波,因此,它是臭氧空洞相对于南极的固定纬向不对称的主要原因。讨论了与区域不对称臭氧和温度有关的过程,这些过程可能导致相关最大值的持久性和位置的差异。

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