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The effect of seafloor topography in the Southern Ocean on tabular iceberg drifting and grounding
被引:0
|作者:
Tian Li
Yan Liu
Xiao Cheng
LunXi Ouyang
XinQing Li
JiPing Liu
Mohammed Shokr
FengMing Hui
Jing Zhang
JiaHong Wen
机构:
[1] Beijing Normal University,State Key Laboratory of Remote Sensing Science, College of Global Change and Earth System Science
[2] Joint Center for Global Change and China Green Development,Department of Atmospheric and Environmental Sciences
[3] University at Albany,Science and Technology Branch
[4] State University of New York,Department of Geography
[5] Environment Canada,undefined
[6] Shanghai Normal University,undefined
来源:
关键词:
Bedmap-2;
Seafloor topography;
Iceberg grounding;
Antarctica;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Antarctic tabular icebergs are important active components in the ice sheet-ice shelf-ocean system. Seafloor topography is the key factor that affects the drifting and grounding of icebergs, but it has not been fully investigated. This study analyzes the impact of seafloor topography on the drifting and grounding of Antarctic tabular icebergs using Bedmap-2 datasets and iceberg route tracking data from Brigham Young University. The results highlight the following points. (1) The quantitative distributions of iceberg grounding events and the tracking points of grounded icebergs are mainly affected by iceberg draft and reach their peak values in sea water with depths between 200 m and 300 m. The peak tracking point number and linear velocity of free-drifting icebergs are found in the Antarctic Slope Front (water depth of approximately 500 m). (2) The area of possible grounding regions of small-scale icebergs calved from ice shelf fronts accounts for 28% of the sea area at water depths less than 2000 m outside the Antarctic coastline periphery (3.62 million km2). Their spatial distribution is mainly around East Antarctica and the Antarctic Peninsula. The area of possible grounding regions of large tabular icebergs with long axes larger than 18.5 km (in water depths of less than 800 m) accounts for 74% of the sea area. (3) The iceberg drifting velocity is positively correlated with ocean depth in areas where the depth is less than 2000 m (R=0.85, P<0.01). This result confirms the effect of water depth variations induced by seafloor topography fluctuations on iceberg drifting velocity.
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页码:697 / 706
页数:9
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