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Observed deep energetic eddies by seamount wake.


ABSTRACT: Despite numerous surface eddies are observed in the ocean, deep eddies (a type of eddies which have no footprints at the sea surface) are much less reported in the literature due to the scarcity of their observation. In this letter, from recently collected current and temperature data by mooring arrays, a deep energetic and baroclinic eddy is detected in the northwestern South China Sea (SCS) with its intensity, size, polarity and structure being characterized. It remarkably deepens isotherm at deep layers by the amplitude of ~120?m and induces a maximal velocity amplitude about 0.18?m/s, which is far larger than the median velocity (0.02?m/s). The deep eddy is generated in a wake when a steering flow in the upper layer passes a seamount, induced by a surface cyclonic eddy. More observations suggest that the deep eddy should not be an episode in the area. Deep eddies significantly increase the velocity intensity and enhance the mixing in the deep ocean, also have potential implication for deep-sea sediments transport.

SUBMITTER: Chen G 

PROVIDER: S-EPMC4663540 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Observed deep energetic eddies by seamount wake.

Chen Gengxin G   Wang Dongxiao D   Dong Changming C   Zu Tingting T   Xue Huijie H   Shu Yeqiang Y   Chu Xiaoqing X   Qi Yiquan Y   Chen Hui H  

Scientific reports 20151130


Despite numerous surface eddies are observed in the ocean, deep eddies (a type of eddies which have no footprints at the sea surface) are much less reported in the literature due to the scarcity of their observation. In this letter, from recently collected current and temperature data by mooring arrays, a deep energetic and baroclinic eddy is detected in the northwestern South China Sea (SCS) with its intensity, size, polarity and structure being characterized. It remarkably deepens isotherm at  ...[more]

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