Ground-based Remote Sensing of Aerosol, Clouds, Dynamics, and Precipitation in Antarctica —First results from the one-year COALA campaign at Neumayer Station III in 2023

IF 6.9 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Bulletin of the American Meteorological Society Pub Date : 2024-06-14 DOI:10.1175/bams-d-22-0285.1
M. Radenz, R. Engelmann, Silvia Henning, Holger Schmithüsen, Holger Baars, Markus M. Frey, Rolf Weller, J. Bühl, Cristofer Jiménez, Johanna Roschke, Lukas Ole Muser, Nellie Wullenweber, S. Zeppenfeld, H. Griesche, U. Wandinger, P. Seifert
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Abstract

Novel observations of aerosol and clouds by means of ground-based remote sensing have been performed in Antarctica over the Ekström ice shelf on the coast of Dronning Maud Land at Neumayer Station III (70.67°S, 8.27°W) from January to December 2023. The deployment of OCEANET-Atmosphere remote-sensing observatory in the framework of the Continuous Observations of Aerosol-cLoud interAction (COALA) campaign brought ACTRIS aerosol and cloud profiling capabilities next to meteorological and air chemistry in-situ observations at the Antarctic station. We present an overview of the site, the instrumental setup and data analysis strategy and introduce 3 scientific highlights from austral fall and winter, namely: 1. Observations of a persistent mixed-phase cloud embedded in a plume of marine aerosol. Remote-sensing-based retrievals of cloud-relevant aerosol properties and cloud microphysical parameters confirm that the free-tropospheric mixed phase cloud layer formed in an aerosol-limited environment. 2. Two extraordinary warm air intrusions. One with intense snowfall produced the equivalent of 10% of the yearly snow accumulation, a second one with record-breaking maximum temperatures and heavy icing due to supercooled drizzle. 3. Omnipresent aerosol layers in the stratosphere. Our profiling capabilities could show that 50% of the 500-nm aerosol optical depth of 0.06 was caused by stratospheric aerosol, while the troposphere was usually pristine. As demonstrated by these highlights, the one-year COALA observations will serve as a reference dataset for the vertical structure of aerosol and clouds above the region, enabling future observational and modeling studies to advance understanding of atmospheric processes in Antarctica.
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对南极洲的气溶胶、云层、动力学和降水进行地基遥感 - 2023 年在 Neumayer III 站开展的为期一年的 COALA 项目的首批成果
2023 年 1 月至 12 月,在南极洲德龙宁毛德地海岸埃克斯特伦冰架上空的 Neumayer III 站(南纬 70.67 度,西经 8.27 度)通过地面遥感对气溶胶和云层进行了新的观测。在气溶胶-云相互作用连续观测(COALA)活动框架内部署的 OCEANET-大气遥感观测站将 ACTRIS 的气溶胶和云剖面能力与南极站的气象和空气化学原位观测结合在一起。我们介绍了站点概况、仪器设置和数据分析策略,并介绍了南极秋冬季的三个科学亮点,即1.观测到海洋气溶胶羽流中的持续混合相云。基于遥感技术的云相关气溶胶特性和云微物理参数检索证实,自由对流层混合相云层是在气溶胶有限的环境中形成的。2.2. 两次非同寻常的暖空气入侵。一次是强降雪,降雪量相当于全年积雪量的 10%;另一次是破纪录的最高气温和过冷细雨造成的严重结冰。3.平流层中无处不在的气溶胶层。我们的剖面分析能力可以显示,500 纳米气溶胶光学深度 0.06 的 50%是由平流层气溶胶造成的,而对流层通常是纯净的。正如这些亮点所显示的,为期一年的 COALA 观测将成为该地区上空气溶胶和云垂直结构的参考数据集,使未来的观测和建模研究能够促进对南极洲大气过程的了解。
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来源期刊
CiteScore
9.80
自引率
6.20%
发文量
231
审稿时长
6-12 weeks
期刊介绍: The Bulletin of the American Meteorological Society (BAMS) is the flagship magazine of AMS and publishes articles of interest and significance for the weather, water, and climate community as well as news, editorials, and reviews for AMS members.
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