...
首页> 外文期刊>Tellus, Series A. Dynamic meteorology & oceanography >Occurrence and drivers of wintertime temperature extremes in Northern Europe during 1979–2016
【24h】

Occurrence and drivers of wintertime temperature extremes in Northern Europe during 1979–2016

机译:1979 - 2016年北欧冬季冬季温度极值的发生和驱动因素

获取原文
           

摘要

Applying the daily ERA-interim reanalysis data from 1979 to 2016, we found that widespread cold (warm) wintertime extreme events in Northern Europe occurred most frequently in winter 1984–1985 (2006–2007). These events often persisted for multiple days, and their primary drivers were the pattern of atmospheric large-scale circulation, the direction of surface wind and the downward longwave radiation. Widespread cold extremes were favoured by the Scandinavian Pattern and Ural Blocking, associated with advection of continental air-masses from the east, clear skies and negative anomalies in downward longwave radiation. In the case of widespread warm extremes, a centre of low pressure was typically located over the Barents Sea and a centre of high pressure over Central Europe, which caused south-westerly winds to dominate over Northern Europe, bringing warm, cloudy air masses to Northern Europe. Applying Self-Organizing Maps, we found out that thermodynamic processes explained 80% (64%) of the decreasing (increasing) trend in the occurrence of extreme cold (warm) events. The trends were due to a combined effect of climate warming and internal variability of the system. Changes in cases with a high-pressure centre over Iceland were important for the decreased occurrence of cold extremes over Northern Europe, with contribution from increasing downward long-wave radiation and south-westerly winds. The largest contribution to the increased occurrence of widespread warm extremes originated from warming and increased occurrence of the Icelandic low.
机译:从1979年到2016年的每日时代再分析数据应用,我们发现,北欧的广泛感冒(温暖)冬季最常见于1984-1985(2006-2007)最常见的是最常见的。这些事件通常持续多天,他们的主要司机是大气大规模循环的模式,表面风的方向和向下的长波辐射。斯堪的纳维亚图案和尿布阻断的广泛冷极端受到青睐,与向下的龙波辐射中的东部,清澈的天空和阴性异常的平流有关。在温暖的极端温暖的情况下,低压中心通常位于诸如中欧的低压和高压的中心,这导致南方北方占据北欧,为北方提供温暖,多云的空气群众欧洲。应用自组织地图,我们发现热力学过程解释了极端寒冷(温暖)事件发生的80%(越来越多)趋势的80%(64%)。趋势是由于气候变暖和系统内部可变性的综合影响。冰岛高压中心的案例变化对于北欧的冷极端失极发生的造成减少,贡献增加了下行的长波辐射和南风风的贡献。最大的贡献对普遍的温暖极端的发生源于暖和的冰岛的变暖和增加。

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