首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Water vapour variability in the high-latitude upper troposphere – Part 2: Impact of volcanic eruptions
【24h】

Water vapour variability in the high-latitude upper troposphere – Part 2: Impact of volcanic eruptions

机译:高纬度上层对流层的水蒸汽变异 - 第2部分:火山喷发的影响

获取原文
           

摘要

The impact of volcanic eruptions on water vapour in the high-latitude upper troposphere is studied using deseasonalized time series based on observations by the Atmospheric Chemistry Experiment (ACE) water vapour sensors, namely MAESTRO (Measurements of Aerosol Extinction in the Stratosphere and Troposphere Retrieved by Occultation) and the Fourier Transform Spectrometer (ACE-FTS). The two eruptions with the greatest impact on the high-latitude upper troposphere during the time frame of this satellite-based remote sensing mission are chosen. The Puyehue–Cordón Caulle volcanic eruption in June 2011 was the most explosive in the past 24 years and is shown to be able to account for the observed (50?±?12)?% increase in water vapour in the southern high-latitude upper troposphere in July 2011 after a minor adjustment for the simultaneous influence of the Antarctic oscillation. Eyjafjallaj?kull erupted in the spring of 2010, increasing water vapour in the upper troposphere at northern high latitudes significantly for a period of ?~??1 month. These findings imply that extratropical volcanic eruptions in windy environments can lead to significant perturbations to high-latitude upper tropospheric humidity mostly due to entrainment of lower tropospheric moisture by wind-blown plumes. The Puyehue–Cordón Caulle eruption must be taken into account to properly determine the magnitude of the trend in southern high-latitude upper tropospheric water vapour over the last decade.
机译:基于大气化学实验(ACE)水蒸气传感器的观测,使用止吐时间序列研究了高纬度上层对流层中水蒸气的影响,即MAESTRO(STRATOLE和对流层中的流层和对流层中的气溶胶灭绝测量)掩星和傅立叶变换光谱仪(ACE-FTS)。选择了在基于卫星的遥感任务的时间框架期间对高纬度上层对流层产生最大影响的两次爆发。 2011年6月的Puyehue-cordónCaulle火山爆发是过去24年的最爆炸性,被证明能够考虑观察到的(50?±12)?南部高纬度鞋面中的水蒸气增加对流层在2011年7月进行了轻微调整,同时对南极振荡的影响。 Eyjafjallaj?kull在2010年春天爆发,增加了北方高纬度的上层对流层中的水蒸气大幅度为一段时间?〜?? 1个月。这些发现意味着刮风环境中的额外火山喷发可能导致高纬度上层对流层湿度的显着扰动,主要是由于挤压漏羽毛较低的对流层水分。必须考虑Puyehue-cordón颗粒爆发,以适当地确定南部高纬度上层对流层水蒸气趋势的程度。

著录项

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