Variability in upper-ocean salinity stratification in the tropical Pacific Ocean

被引:0
|
作者
Wei Duan
Xuhua Cheng
Xiuhua Zhu
Tian Ma
机构
[1] Hohai University,College of Oceanography
[2] Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai),Center for Earth System and Sustainability
[3] University of Hamburg,undefined
来源
Acta Oceanologica Sinica | 2021年 / 40卷
关键词
Brunt-Väisälä frequency; salinity stratification; seasonal and interannual variations; gravity wave;
D O I
暂无
中图分类号
学科分类号
摘要
Using a gridded array for real-time geostrophic oceanography (Argo) program float dataset, the features of upper-ocean salinity stratification in the tropical Pacific Ocean are studied. The salinity component of the squared Brunt-Väisälä frequency N2 (NS2) is used to represent salinity stratification. Layer-max NS2 (LMN), defined as the NS2 maximum over the upper 300 m depth, and halocline depth (HD), defined as the depth where the NS2 maximum is located, are used to specifically describe the intensity of salinity stratification. Salinity stratification in the Topical Pacific Ocean has both spatial and temporal variability. Over the western and eastern equatorial Pacific, the LMN has a large magnitude with a shallow HD, and both have completely opposite distributions outside of the equatorial region. An obvious seasonal cycle in the LMN occurs in the north side of eastern equatorial Pacific and freshwater flux forcing dominates the seasonal variations, followed by subsurface forcing. At the eastern edge of the western Pacific warm pool around the dateline, significant interannual variation of salinity stratification occurs and is closely related to the El Niño Southern Oscillation event. When an El Niño event occurs, the precipitation anomaly freshens sea surface and the thermocline shoaling induced by the westerly wind anomaly lifts salty water upward, together contribute to the positive salinity stratification anomaly over the eastern edge of the warm pool. The interannual variations in ocean stratification can slightly affect the propagation of first baroclinic gravity waves.
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页码:113 / 125
页数:12
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