Comparing the Impacts of Tropical SST Variability and Polar Stratospheric Ozone Loss on the Southern Ocean Westerly Winds*

2015年12月1日·
David P. Schneider
,
Clara Deser
樊婷婷
樊婷婷
· 0 分钟阅读时长
摘要
Westerly wind trends at 850 hPa over the Southern Ocean during 1979–2011 exhibit strong regional and seasonal asymmetries. On an annual basis, trends in the Pacific sector (40°–60°S, 70°–160°W) are 3 times larger than zonal-mean trends related to the increase in the southern annular mode (SAM). Seasonally, the SAM-related trend is largest in austral summer, and many studies have linked this trend with stratospheric ozone depletion. In contrast, the Pacific sector trends are largest in austral autumn. It is proposed that these asymmetries can be explained by a combination of tropical teleconnections and polar ozone depletion. Six ensembles of transient atmospheric model experiments, each forced with different combinations of time-dependent radiative forcings and SSTs, support this idea. In summer, the model simulates a positive SAM-like pattern, to which ozone depletion and tropical SSTs (which contain signatures of internal variability and warming from greenhouse gasses) contribute. In autumn, the ensemble-mean response consists of stronger westerlies over the Pacific sector, explained by a Rossby wave originating from the central equatorial Pacific. While these responses resemble observations, attribution is complicated by intrinsic atmospheric variability. In the experiments forced only with tropical SSTs, individual ensemble members exhibit wind trend patterns that mimic the forced response to ozone. When the analysis presented herein is applied to 1960–2000, the primary period of ozone loss, ozone depletion largely explains the model’s SAM-like zonal wind trend. The time-varying importance of these different drivers has implications for relating the historical experiments of free-running, coupled models to observations.
类型
出版物
Journal of Climate
publications
樊婷婷
Authors
讲师
2015年10月至2019年8月在中国海洋大学物理海洋教育部重点实验室从事博士后研究工作.2021年起任青岛科技大学物理系讲师,2024年仍在该校任教.青岛科技大学物理系讲师,主要从事海气相互作用及CESM应用研究。她在教学领域表现突出,先后获得山东省第七届高校青年教师教学比赛一等奖(2020年)、第六届’超星杯’教学比赛复赛资格(2024年).科研方面,其主持的2024年国家自然科学基金青年项目获批.指导学生方面,2022-2023学年担任应用物理专业6名本科生导师