Blachut Chantelle, Balasuriya Sanjeeva
School of Computer and Mathematical Sciences, University of Adelaide, Adelaide, SA, 5005, Australia.
School of Science, University of New South Wales, Canberra, ACT, 2600, Australia.
Sci Rep. 2025 Aug 12;15(1):28707. doi: 10.1038/s41598-025-12923-6.
The coherence and annual dissipation of the Southern Polar Vortex (SPV) are examined for anomalous behavior and trends, using data from the past 26 years, on four different levels in the Earth's atmosphere. In order to quantify the SPV's coherence in the sense of air masses moving collectively, a purely convection-based method which allows for the detection of spatial structures and their coherence is used. Having a quantitative method to define coherence allows for the detection of annual 'cessation dates' of the SPV. Trends in the cessation dates and coherence of the SPV at four levels in the atmosphere since 1999 are obtained. Hitherto unreported splitting events of the SPV-including in the most recent year 2024-are shown. Early cessation dates occur in known Sudden Stratospheric Warming years, but also in years in which spatial structures are seen to develop anomalously in the Southern Hemisphere or emanate from the tropics and impinge on the SPV. Consistently late cessation times in 2020-2022 are reported, and potential connections to weather events discussed.
利用过去26年地球大气中四个不同高度的数据,对南极极地涡旋(SPV)的连贯性和年消散情况进行了异常行为和趋势研究。为了从气团集体移动的角度量化SPV的连贯性,采用了一种基于纯对流的方法,该方法能够检测空间结构及其连贯性。拥有一种定量方法来定义连贯性,使得能够检测到SPV的年度“停止日期”。得出了自1999年以来大气中四个高度上SPV停止日期和连贯性的趋势。展示了此前未报告的SPV分裂事件,包括最近的2024年。早期停止日期出现在已知的平流层突然变暖年份,也出现在南半球空间结构异常发展或源自热带并影响SPV的年份。报告了2020 - 2022年持续较晚的停止时间,并讨论了与天气事件的潜在联系。