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Estimation of eddy heat transport in the global ocean from Argo data
作者姓名:ZHANG Zhiwei  ZHONG Yisen  TIAN Jiwei  YANG Qingxuan  ZHAO Wei
作者单位:Key Laboratory of Physical Oceanography, Ocean University of China, Qingdao 266100, China;School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta 30332, USA;Key Laboratory of Physical Oceanography, Ocean University of China, Qingdao 266100, China;Key Laboratory of Physical Oceanography, Ocean University of China, Qingdao 266100, China;Key Laboratory of Physical Oceanography, Ocean University of China, Qingdao 266100, China
基金项目:The Major Program of the National Natural Science Foundation of China under contact No. 40890153; The National High Technology Research and Development Program of China (863 Program) under contact No. 2008AA09A402.
摘    要:The Argo data are used to calculate eddy(turbulence)heat transport(EHT)in the global ocean and analyze its horizontal distribution and vertical structure.We calculate the EHT by averaging all the v′,T′profiles within each 2×2 bin.The velocity and temperature anomalies are obtained by removing their climatological values from the Argo"instantaneous"values respectively.Through the Student’s t-test and an error evaluation,we obtained a total of 87%Argo bins with significant depth-integrated EHTs(D-EHTs).The results reveal a positive-and-negative alternating D-EHT pattern along the western boundary currents(WBC)and Antarctic Circumpolar Current(ACC).The zonally-integrated D-EHT(ZI-EHT)of the global ocean reaches 0.12 PW in the northern WBC band and–0.38 PW in the ACC band respectively.The strong ZI-EHT across the ACC in the global ocean is mainly caused by the southern Indian Ocean.The ZI-EHT in the above two bands accounts for a large portion of the total oceanic heat transport,which may play an important role in regulating the climate.The analysis of vertical structures of the EHT along the 35 N and45 S section reveals that the oscillating EHT pattern can reach deep in the northern WBC regions and the Agulhas Return Current(ARC)region.It also shows that the strong EHT could reach 600 m in the WBC regions and 1 000 m in the ARC region,with the maximum mainly located between 100 and 400 m depth.The results would provide useful information for improving the parameterization scheme in models.

关 键 词:Argo资料  全球海洋  热传输  涡流  估计  垂直结构  南极绕极流  参数化方案
收稿时间:2012/9/27 0:00:00
修稿时间:2013/3/11 0:00:00

Estimation of eddy heat transport in the global ocean from Argo data
ZHANG Zhiwei,ZHONG Yisen,TIAN Jiwei,YANG Qingxuan,ZHAO Wei.Estimation of eddy heat transport in the global ocean from Argo data[J].Acta Oceanologica Sinica,2014,33(1):42-47.
Authors:ZHANG Zhiwei  ZHONG Yisen  TIAN Jiwei  YANG Qingxuan and ZHAO Wei
Affiliation:1.Key Laboratory of Physical Oceanography, Ocean University of China, Qingdao 266100, China2.School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta 30332, USA
Abstract:The Argo data are used to calculate eddy (turbulence) heat transport (EHT) in the global ocean and analyze its horizontal distribution and vertical structure. We calculate the EHT by averaging all the v',T' profiles within each 2°× 2° bin. The velocity and temperature anomalies are obtained by removing their climatological values from the Argo "instantaneous" values respectively. Through the Student's t-test and an error evaluation, we obtained a total of 87% Argo bins with significant depth-integrated EHTs (D-EHTs). The results reveal a positive-and-negative alternating D-EHT pattern along the western boundary currents (WBC) and Antarctic Circumpolar Current (ACC). The zonally-integrated D-EHT (ZI-EHT) of the global ocean reaches 0.12 PW in the northern WBC band and -0.38 PW in the ACC band respectively. The strong ZI-EHT across the ACC in the global ocean is mainly caused by the southern Indian Ocean. The ZI-EHT in the above two bands accounts for a large portion of the total oceanic heat transport, which may play an important role in regulating the climate. The analysis of vertical structures of the EHT along the 35°N and 45°S section reveals that the oscillating EHT pattern can reach deep in the northern WBC regions and the Agulhas Return Current (ARC) region. It also shows that the strong EHT could reach 600 m in the WBC regions and 1 000min the ARC region, with themaximum mainly located between 100 and 400 mdepth. The results would provide useful information for improving the parameterization scheme inmodels.
Keywords:eddy heat transport  Argo  mesoscale eddy  global ocean
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