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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the Importance of Interactive Ozone Chemistry in Earth-System Models for Studying Mesophere-Lower Thermosphere Tidal Changes during Sudden StratosphericWarmings
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On the Importance of Interactive Ozone Chemistry in Earth-System Models for Studying Mesophere-Lower Thermosphere Tidal Changes during Sudden StratosphericWarmings

机译:论突然平流层升温过程中跨系统模型中交互式臭氧化学在地球系统模型的重要性

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We use the CESM2-Whole Atmosphere Community Climate Model, to study the importance of ozone in the vertical coupling between lower and upper atmosphere during sudden stratospheric warmings (SSWs). During SSWs, the build up of stratospheric ozone concentrations at tropical latitudes and its increased asymmetrical distribution carries the potential to affect the generation of migrating and nonmigrating semidiurnal solar tides. Much of the upper atmospheric variability associated with SSWs is known to be driven by large changes in the vertically propagating semidiurnal migrating (SW2) and nonmigrating (SW1 and SW3) solar tides. In this study, we investigate the effect of stratospheric ozone variability during SSWs on these solar tides. For this purpose, a case study of the 2009 SSW event is carried out using theWACCMwith two distinct simulation setups. In the first setup, the ozone concentrations are interactively calculated in the model and resemble the ozone observations during the 2009 SSW event, while in the second setup, the ozone concentrations are specified using zonal mean values.We constrain both of the simulations to the Modern-Era Retrospective Analysis for Research and Applications-2 reanalysis so that the background atmosphere through which the solar tides propagate are almost identical in each case. Following the onset of the SSW, we find that in the vicinity of the peak enhancements of SW1, SW2, and SW3 in the mesosphere-lower thermosphere (MLT), the amplitudes of these semidiurnal solar tides are approximately about 15-50% larger for the simulation with interactive ozone as compared with the one with prescribed ozone, indicating that the stratospheric ozone variability plays an important role in driving semidiurnal solar tidal changes during SSWs.
机译:我们使用CESM2-全氛围社区气候模型,研究臭氧在突然平流层暖温(SSW)期间下层和高层垂直耦合的重要性。在SSW期间,热带纬度地区的平流层臭氧浓度的积聚及其增加的不对称分布带来了影响迁移和非迁移的半阳光潮汐产生的潜力。已知与SSW相关联的大部分大气变异性是通过垂直传播的半峰值迁移(SW2)和非侵略性(SW1和SW3)太阳潮汐的大变化驱动。在这项研究中,我们在这些太阳潮汐上调查了SSWS期间平流层臭氧变异性的影响。为此,使用TheWaccMwith两个不同的模拟设置来执行2009 SSW事件的案例研究。在第一个设置中,臭氧浓度在模型中以交互方式计算,并且在2009 SSW事件期间类似于臭氧观测,而在第二个设置中,使用区域平均值指定臭氧浓度。我们将两者的模拟都限制为现代的模拟研究和应用研究和应用-2重新分析的焦点分析,使得在每种情况下,太阳潮汐传播的背景大气在其上几乎相同。在SSW的开始之后,我们发现,在Messe圈 - 较低的热层(MLT)中SW1,SW2和SW3的峰值增强附近,这些半月太阳潮汐幅度的幅度约为15-50%与交互式臭氧的模拟与具有规定臭氧的臭氧相比,表明Stratospheric臭氧变异性在SSWS期间驾驶半月太阳潮汐变化起着重要作用。

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