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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Seasonal persistence of ozone and zonal wind anomalies in the equatorial stratosphere
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Seasonal persistence of ozone and zonal wind anomalies in the equatorial stratosphere

机译:季节性的臭氧和纬向风在赤道平流层异常

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摘要

Analysis of the variability of equatorial ozone profiles in the Satellite Aerosol and Gas Experiment-corrected Solar Backscatter Ultraviolet data set demonstrates a strong seasonal persistence of interannual ozone anomalies, revealing a seasonal dependence to equatorial ozone variability. In the lower stratosphere (40-25 hPa) and in the upper stratosphere (6-4 hPa), ozone anomalies persist from approximately November until June of the following year, while ozone anomalies in the layer between 16 and 10 hPa persist from June to December. Analysis of zonal wind fields in the lower stratosphere and temperature fields in the upper stratosphere reveals a similar seasonal persistence of the zonal wind and temperature anomalies associated with the quasi-biennial oscillation (QUO), Thus, the persistence of interannual ozone anomalies in the lower and upper equatorial stratosphere, which are mainly associated with the well-known QBO ozone signal through the QBO-induced meridional circulation, is related to a newly identified seasonal persistence of the QBO itself. The upper stratospheric QUO ozone signal is argued to arise from a combination of QBO-induced temperature and NO_x perturbations, with the former dominating at 5 hPa and the latter at 10 hPa. Ozone anomalies in the transition zone between dynamical and photochemical control of ozone (16-10 hPa) are less influenced by the QUO signal and show a quite different seasonal persistence compared to the regions above and below.
机译:赤道的可变性分析臭氧配置文件在卫星气溶胶和天然气Experiment-corrected太阳能后向散射紫外线数据集展示了强劲季节性年际臭氧的持久性异常现象,揭示季节性的依赖赤道臭氧变化。平流层(40-25 hPa)和上平流层(6 - 4 hPa)、臭氧异常持续存在大约11月到6月的第二年,而臭氧异常层16和hPa持续从6月到10之间12月。低平流层和温度场平流层上层揭示了一个类似的季节性持久性的纬向风和温度异常与quasi-biennial有关振荡(现状),因此,持久性的臭氧年际异常低,主要是上赤道平流层与著名的QBO臭氧信号有关通过QBO-induced经向环流,有关新发现的季节吗持久性QBO本身。平流层臭氧现状信号出现从QBO-induced温度和的组合NO_x扰动,前者主导5 hPa hPa 10点,后者。在动力和之间的过渡区hPa)为何光化学控制臭氧(取得16胜10负更少的影响现状信号和显示季节性持久性相比有很大不同区域上方和下方。

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