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印度洋中尺度涡遥感调查和验证

崔伟 周超杰 李永 杨俊钢

数字海洋与水下攻防2024,Vol.7Issue(1):29-36,8.
数字海洋与水下攻防2024,Vol.7Issue(1):29-36,8.DOI:10.19838/j.issn.2096-5753.2024.07.004

印度洋中尺度涡遥感调查和验证

Investigation and Validation of Mesoscale Eddies in the Indian Ocean

崔伟 1周超杰 2李永 3杨俊钢4

作者信息

  • 1. 自然资源部第一海洋研究所,山东 青岛 266061
  • 2. 浙江大学 海南研究院,海南 三亚 572000
  • 3. 自然资源部海上丝路海洋资源环境组网观测技术创新中心,山东 青岛 266580||中国石油大学(华东) 海洋空间与信息学院,山东 青岛 266580
  • 4. 自然资源部第一海洋研究所,山东 青岛 266061||自然资源部海上丝路海洋资源环境组网观测技术创新中心,山东 青岛 266580
  • 折叠

摘要

Abstract

One of the fundamental structures of ocean turbulence is the presence of various scales of eddies,including numerous random small eddies which constitute a background flow and mesoscale eddies with coherent structure in the statistical sense.Focusing on the mesoscale eddies prevalent in the Indian Ocean,a remote sensing investigation and result validation of mesoscale eddies in the Indian Ocean are carried out using long-time series and spatially uniform satellite altimetry data.The results indicate that mesoscale eddies in the Indian Ocean are primarily distributed in the Antarctic Circumpolar Current region,the western waters of Australia,the Mozambique Channel in the Southern Indian Ocean,and the Arabian Sea and the Bay of Bengal in the northern Indian Ocean.In the northern Indian Ocean,due to the limitation of the spatial region,mesoscale eddies exhibit smaller lifetimes and shorter propagation distances.In contrast,in the southern Indian Ocean,there are a large number of mesoscale eddies with long lifetimes,and some of them can move across the entire southern Indian Ocean.Based on the ARGO in situ observation data and multi-observation ocean 3D reprocessing data,the remote sensing investigation results of mesoscale eddies are validated,and the remote sensing surface signals of mesoscale eddies show a good agreement with the underwater temperature signal.

关键词

中尺度涡/卫星高度计/印度洋/遥感调查

Key words

mesoscale eddies/satellite altimeter/the Indian Ocean/remote sensing investigation

分类

海洋科学

引用本文复制引用

崔伟,周超杰,李永,杨俊钢..印度洋中尺度涡遥感调查和验证[J].数字海洋与水下攻防,2024,7(1):29-36,8.

基金项目

海南省科技计划三亚崖州湾科技城联合项目"基于准实时海洋环境预报的水下无人移动平台自适应组网观测"(2021CXLH0019) (2021CXLH0019)

国家自然科学重点基金项目"基于海洋表层卫星遥感观测的海洋水下动力环境智能探测方法研究"(62231028). (62231028)

数字海洋与水下攻防

2096-5753

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