On the longitudinal shifts of the Agulhas retroflection point

IF 1.4 3区 地球科学 Q3 OCEANOGRAPHY Acta Oceanologica Sinica Pub Date : 2024-07-27 DOI:10.1007/s13131-023-2295-x
Weiwei Zhang, Xiaoyi Yang, Wei Zhuang, Xiaohai Yan
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Abstract

The Agulhas system is the strongest western boundary current system in the Southern Hemisphere and plays an important role in modulating the Indian-to-Atlantic Ocean water exchange by the Agulhas leakage. It is difficult to measure in situ transport of the Agulhas leakage as well as the Agulhas retroflection position due to their intermittent nature. In this study, an innovative kinematic algorithm was designed and applied to the gridded altimeter observational data, to ascertain the longitudinal position of Agulhas retroflection, the stability of Agulhas jet stream, as well as its strength. The results show that the east-west shift of retroflection is related neither to the strength of Agulhas current nor to its stability. Further analysis uncovers the connection between the westward extension of Agulhas jet stream and an anomalous cyclonic circulation at its northern side, which is likely attributed to the local wind stress curl anomaly. To confirm the effect of local wind forcing on the east-west shift of retroflection, numerical sensitivity experiments were conducted. The results show that the local wind stress can induce a similar longitudinal shift of the retroflection as altimetry observations. Further statistical and case study indicates that whether an Agulhas ring can continuously migrate westward to the Atlantic Ocean or re-merge into the main flow depends on the retroflection position. Therefore, the westward retroflection may contribute to a stronger Agulhas leakage than the eastward retroflection.

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关于阿古哈斯逆转点的纵向移动
阿古哈斯洋流系统是南半球最强的西边界洋流系统,在通过阿古哈斯泄漏调节印度洋到大西洋的水交换方面发挥着重要作用。由于阿古哈斯漏流和阿古哈斯逆转位置具有间歇性,因此很难对其进行现场测量。本研究设计了一种创新的运动学算法,并将其应用于网格化高度计观测数据,以确定阿古哈斯回折的纵向位置、阿古哈斯喷流的稳定性及其强度。结果表明,回折的东西向移动既与阿古哈斯海流的强度无关,也与其稳定性无关。进一步分析发现,阿古哈斯喷射流向西延伸与其北侧的异常气旋环流之间存在联系,这很可能是当地风应力卷曲异常造成的。为了证实当地风力对东西向逆转的影响,进行了数值敏感性实验。结果表明,局地风应力可引起与测高仪观测结果类似的逆转纵移。进一步的统计和案例研究表明,阿古哈斯环能否持续向西迁移至大西洋或重新汇入主气流取决于倒转位置。因此,向西的逆转可能比向东的逆转造成更强的阿古哈斯泄漏。
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来源期刊
Acta Oceanologica Sinica
Acta Oceanologica Sinica 地学-海洋学
CiteScore
2.50
自引率
7.10%
发文量
3884
审稿时长
9 months
期刊介绍: Founded in 1982, Acta Oceanologica Sinica is the official bi-monthly journal of the Chinese Society of Oceanography. It seeks to provide a forum for research papers in the field of oceanography from all over the world. In working to advance scholarly communication it has made the fast publication of high-quality research papers within this field its primary goal. The journal encourages submissions from all branches of oceanography, including marine physics, marine chemistry, marine geology, marine biology, marine hydrology, marine meteorology, ocean engineering, marine remote sensing and marine environment sciences. It publishes original research papers, review articles as well as research notes covering the whole spectrum of oceanography. Special issues emanating from related conferences and meetings are also considered. All papers are subject to peer review and are published online at SpringerLink.
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