极地研究 ›› 2021, Vol. 33 ›› Issue (4): 518-528.DOI: 10.13679/j.jdyj.20200075

• 研究论文 • 上一篇    下一篇

威德尔海海冰年际变化特征分析

刘境舟,赵亮,王圣,白雨   

  1. 天津科技大学海洋与环境学院, 天津 300457
  • 收稿日期:2020-11-23 修回日期:2021-01-18 出版日期:2021-12-31 发布日期:2021-12-16
  • 基金资助:
    国家海洋局极地考察办公室项目(RFSOCC2020-2022-No.18)

Interannual variation characteristics of sea ice in the Weddell Sea

Liu Jingzhou, Zhao Liang, Wang Sheng, Bai Yu   

  1. College of Marine and Environmental Sciences, Tianjin University of Science and Technology, Tianjin 300457, China
  • Received:2020-11-23 Revised:2021-01-18 Online:2021-12-31 Published:2021-12-16

摘要: 南大洋海冰在全球气候变化中扮演着重要的角色, 威德尔海作为南大洋最大的海湾更是研究南大洋海冰变化的热点地区。基于1993—2017年GLORYS12V1海冰密集度数据, 分析了威德尔海海冰分布和25年间的海冰面积的年际变化特征。研究结果表明, 威德尔海海冰密集度分布具有较强的季节性, 威德尔海海冰在南极半岛一侧堆积的重要成因是风场的分布差异, 毛德皇后地外海海冰向开阔大洋漂移进而消融, 具有“西高东低、近岸高远海低”的空间分布特征。威德尔海海冰面积存在27个月、35个月、75个月和120个月的周期, 春、秋、冬三季海冰面积变化趋势并不显著, 夏季海冰面积增加趋势显著, 约为0.15×105 km2·a–1。南极海冰面积的年际变化主要受到热力学因素的影响, 海表温度、气温和净太阳短波辐射与海冰面积的27个月、35个月、75个月的周期存在关联, 海冰面积与气温和海表面温度在春、夏、秋三季有较强的负相关关系, 与净太阳短波辐射在全年有较强的负相关关系。

关键词: 威德尔海, 海冰面积, 海表面温度, 气温, 净太阳短波辐射

Abstract: Sea ice of the Southern Ocean plays an important role in global climate change, making the Weddell Sea—the biggest bay in the Southern Ocean—a hot spot for studying sea ice change in this area. Based on GLORYS12V1 sea ice density data from 1993 to 2017, this study analyzed the sea ice distribution in the Weddell Sea and its interannual variation. A strong seasonality to the sea ice concentration distribution of the Weddell Sea was found. The distributional differences of the wind field are the main reason that sea ice piles up on one side of Antarctic Peninsula. Under wind effects, the Queen Maud Land’s broad ocean sea ice drifts into the open ocean and melts, producing a spatial distribution with “low west–high east” and “high nearshore–low offshore” sea-ice concentrations. Fluctuations in sea-ice area occur at intervals of 27 months, 35 months, 75 months and 120 months, respectively. Seasonal changes in sea-ice area are not very obvious in spring, fall and winter, but in summer, there is an outstanding increase of around 0.15×105 km2·a−1. The interannual variation of Antarctic sea ice area is mainly affected by thermodynamic factors, including sea surface temperature, as well as temperature and shortwave radiation cycles related to periods of 27 months, 35 months, and 75 months. The general sea ice area has strong negative correlations with temperature and sea surface temperature in spring, summer, and fall, and has a strong negative correlation with solar short-wave radiation over the whole year.

Key words: Weddell sea, sea ice area, sea surface temperature, temperature, net solar short-wave radiation