Maclennan Michelle L, Lenaerts Jan T M, Shields Christine, Wille Jonathan D
Department of Atmospheric and Oceanic Sciences University of Colorado Boulder Boulder CO USA.
National Center for Atmospheric Research Boulder CO USA.
Geophys Res Lett. 2022 Sep 28;49(18):e2022GL100585. doi: 10.1029/2022GL100585. Epub 2022 Sep 14.
Atmospheric rivers (ARs) are efficient mechanisms for transporting atmospheric moisture from low latitudes to the Antarctic Ice Sheet (AIS). While AR events occur infrequently, they can lead to extreme precipitation and surface melt events on the AIS. Here we estimate the contribution of ARs to total Antarctic precipitation, by combining precipitation from atmospheric reanalyses and a polar-specific AR detection algorithm. We show that ARs contribute substantially to Antarctic precipitation, especially in East Antarctica at elevations below 3,000 m. ARs contribute substantially to year-to-year variability in Antarctic precipitation. Our results highlight that ARs are an important component for understanding present and future Antarctic mass balance trends and variability.
大气河流(ARs)是将大气水汽从低纬度地区输送到南极冰盖(AIS)的有效机制。虽然AR事件很少发生,但它们可能导致AIS上的极端降水和地表融化事件。在这里,我们通过结合大气再分析的降水数据和一种极地特定的AR检测算法,来估算ARs对南极总降水量的贡献。我们发现,ARs对南极降水有很大贡献,特别是在南极东部海拔低于3000米的地区。ARs对南极降水的年际变化有很大贡献。我们的结果表明,ARs是理解当前和未来南极质量平衡趋势及变化的重要组成部分。