Spatial and Temporal Evolution of Seasonal Sea Ice Extent of Hudson Strait, Canada, 1971–2018

IF 3 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Climate Pub Date : 2024-07-15 DOI:10.3390/cli12070103
Sławomir Kowal, William A. Gough, Kenneth Butler
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Abstract

The temporal and spatial variation in seasonal sea ice in Hudson Strait is examined using time series and spatial clustering analyses. For the period from 1971 to 2018, a time series of sea ice breakup and freeze-up dates and ice-free season length at twenty-four grid points were generated from sea ice charts derived from satellite and other data. These data were analyzed temporally and spatially. The temporal analyses indicated an unambiguous response to a warming climate with statistically significant earlier breakup dates, later freeze-up dates, and longer ice-free seasons, that were statistically linked to coincident regional surface air temperatures. The rate of change in freeze-up dates and ice-free season length was particularly strong in the early 2000s and less so in the 2010s. There was evidence that breakup date behaviour was not only coincident with regional temperatures but likely with temperature and ice conditions of the previous year. Later freeze-up dates were directly linked to earlier breakup dates using detrended time series. Spatial clustering analysis on the Hudson Strait gridded sea ice data revealed distinctive signatures for Ungava Bay, Frobisher Bay, and for grid points close to the shore and a clear linkage to the underlying circulation of Hudson Strait.
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1971-2018 年加拿大哈德逊海峡季节性海冰面积的空间和时间演变
利用时间序列和空间聚类分析研究了哈德逊海峡季节性海冰的时空变化。根据卫星和其他数据绘制的海冰图,生成了 1971 年至 2018 年期间二十四个网格点的海冰破裂和冻结日期以及无冰季节长度的时间序列。对这些数据进行了时间和空间分析。时间分析表明,气候变暖会导致海冰破裂日期提前、冻结日期推迟和无冰季节延长,这在统计学上与区域地表气温有关。结冰期和无冰季节长度的变化率在 2000 年代早期尤为明显,而在 2010 年代则有所减弱。有证据表明,封冻日期的变化不仅与地区气温有关,而且很可能与前一年的气温和冰情有关。利用去趋势时间序列,较晚的冻结日期与较早的破裂日期直接相关。对哈德逊海峡网格海冰数据的空间聚类分析显示,昂加瓦湾、弗罗比舍湾和靠近海岸的网格点具有独特的特征,并与哈德逊海峡的基本环流有明显联系。
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来源期刊
Climate
Climate Earth and Planetary Sciences-Atmospheric Science
CiteScore
5.50
自引率
5.40%
发文量
172
审稿时长
11 weeks
期刊介绍: Climate is an independent, international and multi-disciplinary open access journal focusing on climate processes of the earth, covering all scales and involving modelling and observation methods. The scope of Climate includes: Global climate Regional climate Urban climate Multiscale climate Polar climate Tropical climate Climate downscaling Climate process and sensitivity studies Climate dynamics Climate variability (Interseasonal, interannual to decadal) Feedbacks between local, regional, and global climate change Anthropogenic climate change Climate and monsoon Cloud and precipitation predictions Past, present, and projected climate change Hydroclimate.
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