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北太平洋海洋涡流的叶绿素环。

Chlorophyll Rings around Ocean Eddies in the North Pacific.

机构信息

Oceanic Modeling and Observation Laboratory, Nanjing University of Information Science and Technology, Nanjing, 210044, China.

State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, MNR, Hangzhou, 310012, China.

出版信息

Sci Rep. 2019 Feb 14;9(1):2056. doi: 10.1038/s41598-018-38457-8.

Abstract

Chlorophyll rings (CRs) are defined as elevated chlorophyll along eddy peripheries and have been observed in anticyclonic oceanic eddies occasionally. This study presents observations of CRs around both anticyclonic and cyclonic eddies from a large observational data set. An innovative algorithm is developed to identify CRs from satellite observations of sea level anomalies and near-surface chlorophyll concentration in the North Pacific Ocean between 2003 and 2010. The results show that only 1% of mesoscale eddies are associated with CRs, which implies the CRs are not ubiquitous. We propose two potential generation mechanisms for CRs: horizontal advection and wind-current interaction. The former dominates the formation of about two-thirds of the CRs. The CRs associated with both cyclones and anticyclones represents an important contribution to better understanding of mesoscale physical/biological coupled phenomena.

摘要

叶绿素环(CRs)是指在反气旋海洋涡流边缘升高的叶绿素,偶尔在反气旋海洋涡流中观察到。本研究通过一个大型观测数据集,展示了在反气旋和气旋涡流周围观察到的 CRs。开发了一种创新算法,用于从 2003 年至 2010 年北太平洋海平面异常和近表面叶绿素浓度的卫星观测中识别 CRs。结果表明,只有 1%的中尺度涡流与 CRs 有关,这意味着 CRs 并非无处不在。我们提出了两种形成 CRs 的潜在机制:水平平流和风生流相互作用。前者主导了约三分之二的 CRs 的形成。与气旋和反气旋相关的 CRs 对更好地理解中尺度物理/生物耦合现象做出了重要贡献。

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