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基于海面高度数据的全球海洋多核涡旋探测和统计
引用本文:崔伟,王伟,张杰,杨俊钢.基于海面高度数据的全球海洋多核涡旋探测和统计[J].海洋学报(英文版),2020,39(1):41-51.
作者姓名:崔伟  王伟  张杰  杨俊钢
作者单位:中国海洋大学海洋科学与技术青岛协同创新中心物理海洋实验室, 青岛, 266100;国家海洋局第一海洋研究所, 青岛, 266061,国家海洋局第一海洋研究所, 青岛, 266061,中国海洋大学海洋科学与技术青岛协同创新中心物理海洋实验室, 青岛, 266100,中国海洋大学海洋科学与技术青岛协同创新中心物理海洋实验室, 青岛, 266100
基金项目:The National Key Reasearch and Development Program of China under contract No. 2016YFC1401800; the National Natural Science Foundation of China under contract No. 41576176; the National Programme on Global Change and Air-Sea Interaction; Dragon 4 Project under contract No. 32292.
摘    要:This study produced a statistical analysis of multicore eddy structures based on 23 years' altimetry data in global oceans. Multicore structures were identified using a threshold-free closed-contour algorithm of sea surface height, which was improved for this study in respect of certain technical details. Meanwhile a more accurate definition of eddy boundary was used to estimate eddy scale. Generally, multicore structures, which have two or more closed eddies of the same polarity within their boundaries, represent an important transitional stage in their lives during which the component eddies might experience splitting or merging. In comparison with global eddies, the lifetimes and propagation distances of multicore eddies were found to be much smaller because of their inherent structural instability. However, at the same latitude, the spatial scale of multicore eddies was found larger than that of single-core eddies, i.e., the eddy area could be at least twice as large. Multicore eddies were found to exhibit some features similar to global eddies. For example, multicore eddies tend to occur in the Antarctic Circumpolar Current, some western boundary currents, and mid-latitude regions around 25°N/S, the majority(70%) of eddies propagate westward while only 30% propagate eastward, and large-amplitude eddies are restricted mainly to reasonably confined regions of highly unstable currents.

关 键 词:卫星高度计  中尺度涡  多核结构  涡旋识别  涡旋属性
收稿时间:2018/7/28 0:00:00

Identification and census statistics of multicore eddies based on sea surface height data in global oceans
Cui Wei,Wang Wei,Zhang Jie and Yang Jungang.Identification and census statistics of multicore eddies based on sea surface height data in global oceans[J].Acta Oceanologica Sinica,2020,39(1):41-51.
Authors:Cui Wei  Wang Wei  Zhang Jie and Yang Jungang
Institution:1.First Institute of Oceanography, Ministry of Natural Resources, Qingdao 266061, China2.Physical Oceanography Lab, Qingdao Collaborative Innovation Center of Marine Science and Technology, Ocean University of China, Qingdao 266100, China
Abstract:This study produced a statistical analysis of multicore eddy structures based on 23 years'' altimetry data in global oceans. Multicore structures were identified using a threshold-free closed-contour algorithm of sea surface height, which was improved for this study in respect of certain technical details. Meanwhile a more accurate definition of eddy boundary was used to estimate eddy scale. Generally, multicore structures, which have two or more closed eddies of the same polarity within their boundaries, represent an important transitional stage in their lives during which the component eddies might experience splitting or merging. In comparison with global eddies, the lifetimes and propagation distances of multicore eddies were found to be much smaller because of their inherent structural instability. However, at the same latitude, the spatial scale of multicore eddies was found larger than that of single-core eddies, i.e., the eddy area could be at least twice as large. Multicore eddies were found to exhibit some features similar to global eddies. For example, multicore eddies tend to occur in the Antarctic Circumpolar Current, some western boundary currents, and mid-latitude regions around 25°N/S, the majority (70%) of eddies propagate westward while only 30% propagate eastward, and large-amplitude eddies are restricted mainly to reasonably confined regions of highly unstable currents.
Keywords:satellite altimetry  mesoscale eddy  multicore structure  eddy identification  eddy characteristic
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