首页> 外文期刊>Atmospheric and oceanic science letters >Sub seasonal variations of weak stratospheric polar vortex in December and its impact on Eurasian air temperature
【24h】

Sub seasonal variations of weak stratospheric polar vortex in December and its impact on Eurasian air temperature

机译:十二月平流层极弱涡的亚季节变化及其对欧亚气温的影响

获取原文
       

摘要

Weak stratospheric polar vortex (WPV) events during winter months were investigated. WPV events were identified as being weakest in December, accompanied by the most dramatic increase in geopotential height over the polar region. After the onset of a December WPV event, the dynamic processes influencing Eurasian temperature can be split into two separate periods. Period I (lag of 0–25 days) is referred to as the stratosphere–troposphere interactions period, as it is mainly characterized by stratospheric signals propagating downwards. In Period I, a stratospheric negative Northern Annular Mode (NAM) pattern associated with the WPV propagates downwards, inducing a negative NAM in the troposphere. The anomalous low centers over the Mediterranean and North Pacific bring cold advection to northern Eurasia, resulting in a north-cold–south-warm dipole pattern over Eurasia. The zero line between negative and positive temperature anomalies moves southwards during days 5–20. Stratospheric cold anomalies at midlatitudes propagate downwards to high latitudes in the troposphere and contribute to the dipole structure. During Period Ⅱ (lag of 25–40 days), as downward signals from the stratosphere have vanished, the dynamic processes mainly take place within the troposphere. Specifically, a wave train is initiated from the North Atlantic region to northern Europe. The propagation of wave activity flux intensifies a cyclonic anomaly over northern Europe, which brings cold advection to Scandinavia and warm advection to central Asia. Therefore, a northwest-cold–southeast-warm dipole structure occupies Eurasia and migrates southeastwards during this period.
机译:研究了冬季平流层极弱涡(WPV)事件。 WPV事件被确定为12月最弱的事件,同时极地地区的地势高度也有最大的增加。在12月WPV事件开始后,影响欧亚温度的动态过程可以分为两个不同的时期。 I期(0-25天的滞后)被称为平流层-对流层相互作用期,因为它的主要特征是平流层信号向下传播。在时期I中,与WPV相关的平流层负北环空模式(NAM)向下传播,在对流层中引起负NAM。地中海和北太平洋上空的异常低中心使欧亚大陆北部出现冷平流,导致欧亚大陆上北冷南暖偶极子格局。负温度异常和正温度异常之间的零线在5-20天向南移动。中纬度的平流层冷异常在对流层向下传播到高纬度,并形成偶极子结构。在Ⅱ期(滞后25-40天),由于来自平流层的下行信号消失了,动力学过程主要发生在对流层内。具体来说,从北大西洋地区到北欧开始了波浪列车。波活动通量的传播加剧了北欧的气旋异常,这使斯堪的纳维亚半岛出现冷平流,而中亚地区出现热平流。因此,在此期间,西北-东南-东南-温暖的偶极子结构占据了欧亚大陆并向东南迁移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号