Dominant Inflation of the Arctic Ocean’s Beaufort Gyre in a Warming Climate

2025年1月20日·
Qiang Wang
舒启
舒启
,
Shizhu Wang
,
Xinyue Li
,
Sergey Danilov
,
Fangli Qiao
,
Zhenya Song
,
Fan Wang
,
Thomas Jung
· 0 分钟阅读时长
摘要
The Arctic Ocean’s Beaufort Gyre, the largest Arctic freshwater reservoir, plays a crucial role for climate and marine ecosystems. Understanding how it changes in a warming climate is therefore essential. Here, using high-resolution simulations and Coupled Model Intercomparison Project phase 6 data, we find that the Beaufort Gyre will increasingly accumulate freshwater, elevate sea level, and spin up its circulation as the climate warms. These changes, collectively referred to as inflation, are more pronounced in the Beaufort Gyre region than in other Arctic areas, amplifying the spatial asymmetry of the Arctic Ocean. The inflation is driven by increased surface freshwater fluxes and intensified surface stress from wind strengthening and sea ice decline. Current climate models tend to underestimate this inflation, which could be alleviated by high-resolution ocean models and improved atmospheric circulation simulations. The inflation of the Beaufort Gyre underscores its growing importance in a warming climate.
类型
出版物
Communications Earth & Environment
publications
舒启
Authors
特聘研究员
研究员,自然资源部高层次科技创新人才工程“青年科技人才”、自然资源部第一海洋研究所束星北青年学者,是山东省自然科学基金杰出青年基金获得者。主要从事极地海洋学和极地气候变领域的研究工作,围绕北极气候变化,在气候变化机理研究、气候模式评估与改进和气候预测预估等方面取得了系列创新成果, 主要包括:研究揭示了北冰洋大西洋化进程中海-(冰)-气热通量在冰区与非冰区的相反变化规律,发现了“北冰洋放大”现象,阐明了北冰洋的快速变暖机制;系统评估了气候模式对北极海冰和北冰洋的模拟能力,量化了气候模式在北冰洋快速气候变化模拟中的共性偏差,改进提升了自主气候模式在北极的模拟能力;研发了北极海冰短期气候预测系统,构建了北冰洋动力降尺度数据集,成功应用于我国北极科考和北极航道商业航运的保障与规划。在《Nature Communications》、《Science Advances》、《Geophysical Research Letters》、和《Journal of Geophysical Research: Oceans》等期刊发表研究论文90余篇。