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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The Climatology of Elevated Stratopause Events in the UA‐ICON Model and the Contribution of Gravity Waves
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The Climatology of Elevated Stratopause Events in the UA‐ICON Model and the Contribution of Gravity Waves

机译:UA-ICON模式中平流层顶事件的气候学与重力波的贡献

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Abstract The climatologies of the stratopause height and temperature in the UA‐ICON model are examined by comparing them to 17‐years (2005–2021) of Microwave Limb Sounder (MLS) observations. In addition, the elevated stratopause (ES) event occurrence, their main characteristics, and driving mechanisms in the UA‐ICON model are examined using three 30‐year time‐slice experiments. While UA‐ICON reasonably simulates the large‐scale stratopause properties similar to MLS observations, at polar latitudes in the Southern Hemisphere the stratopause is ∼8 K warmer and ∼3 km higher than observed. A time lag of about two months also exists in the occurrence of the tropical semiannual oscillation of the stratopause compared to the observations. ES events occur in ∼20% of the boreal winters, after major sudden stratospheric warmings (SSWs). Compared to the SSWs not followed by ES events (SSW‐only), the ES events are associated with the persistent tropospheric forcing and prolonged anomalies of the stratospheric jet. Our modeling results suggest that the contributions of both gravity waves (GW)s and resolved waves are important in explaining the enhanced residual circulation following ES events compared to the SSW‐only events but their contributions vary through the lifetime of ES events. We emphasize the role of the resolved wave drag in the ES formation as in the sensitivity test when the non‐orographic GW drag is absent, the anomalously enhanced resolved wave forcing in the mesosphere gives rise to the formation of the elevated stratopause at about 85 km.
机译:抽象的平流层顶的气候学高度和温度UA图标模型检查通过比较他们17年(2005 - 2021)的微波肢体测深仪(MLS)观察。平流层顶(ES)事件发生,他们的主特点和驱动机制UA图标应承担的模型研究了使用三个30年时间片的实验。模拟大尺度应承担的平流层顶属性类似于美国的观察,在极地纬度在南半球平流层顶∼8 K温度高于观察和∼3公里。大约两个月也存在的时滞出现的热带半年度振荡平流层顶的对比观察。ES事件发生在∼20%的北方的冬天,后主要突然平流层变暖(f)。量相比不跟着ES事件(f)应承担的相关事件持久的对流层迫使和长时间的异常的平流层的喷气机。结果表明,两者的贡献重力波(GW)和波解决重要的解释增强的残余循环后ES事件相比量只应承担的事件,但他们的贡献有所不同通过ES的生命周期事件。解决波阻的作用的时形成的敏感性测试非地理地形GW拖动缺席,不规则地增强解决波迫使在中间层引起高的形成平流层顶约85公里。

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