Modulation of El Nio-Southern Oscillation by Freshwater Flux and Salinity Variability in the Tropical Pacific

被引:25
作者
张荣华 [1 ]
郑飞 [1 ,2 ]
朱杰顺 [3 ]
裴玉华 [1 ,4 ,5 ]
郑全安 [6 ]
王彰贵 [7 ]
机构
[1] Earth System Science Interdisciplinary Center, University of Maryland
[2] International Center for Climate and Environment Science, Institute of Atmospheric Physics, Chinese Academy of Sciences
[3] Center for Ocean-Land-Atmosphere Studies, Institute of Global Environment and Society
[4] The College of Physical and Environmental Oceanography, Ocean University of China
[5] State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, State Oceanic Administration
[6] Department of Atmosphere and Ocean Science, University of Maryland  7. National Marine Environmental Forecasting Center, State Oceanic Administration
关键词
freshwater flux (FWF) forcing and feedback; sea surface salinity (SSS) variability; ENSO modulation; coupled ocean-atmosphere models;
D O I
暂无
中图分类号
P732 [海洋气象学];
学科分类号
0706 ; 070601 ;
摘要
The El Nin o-Southern Oscillation (ENSO) is modulated by many factors; most previous studies have emphasized the roles of wind stress and heat flux in the tropical Pacific. Freshwater flux (FWF) is another environmental forcing to the ocean; its effect and the related ocean salinity variability in the ENSO region have been of increased interest recently. Currently, accurate quantifications of the FWF roles in the climate remain challenging; the related observations and coupled ocean-atmosphere modeling involve large elements of uncertainty. In this study, we utilized satellite-based data to represent FWF-induced feedback in the tropical Pacific climate system; we then incorporated these data into a hybrid coupled ocean-atmosphere model (HCM) to quantify its effects on ENSO. A new mechanism was revealed by which interannual FWF forcing modulates ENSO in a significant way. As a direct forcing, FWF exerts a significant influence on the ocean through sea surface salinity (SSS) and buoyancy flux (Q B ) in the western-central tropical Pacific. The SSS perturbations directly induced by ENSO-related interannual FWF variability affect the stability and mixing in the upper ocean. At the same time, the ENSO-induced FWF has a compensating effect on heat flux, acting to reduce interannual Q B variability during ENSO cycles. These FWF-induced processes in the ocean tend to modulate the vertical mixing and entrainment in the upper ocean, enhancing cooling during La Nin a and enhancing warming during El Nin o, respectively. The interannual FWF forcing-induced positive feedback acts to enhance ENSO amplitude and lengthen its time scales in the tropical Pacific coupled climate system.
引用
收藏
页码:647 / 660
页数:14
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