Seasonal and interannual movement of the Mindanao Current retroflection at the Pacific entrance of the Indonesian seas

IF 2.8 2区 地球科学 Q1 OCEANOGRAPHY
Kunxiang Wang, Dongliang Yuan, Kaixin Ren
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Abstract

The seasonal and interannual variations of the Mindanao Current retroflection are studied using surface geostrophic currents of satellite altimeters covering January 1993 through December 2019. The results show that the Mindanao Current mainstream retroflects back to the Pacific Ocean north of the Talaud Island in boreal summer, and intrudes into the northern Maluku Sea in boreal winter. The variation of the Mindanao Current retroflection has resulted in the seasonal movement of the sea surface color fronts at the entrance of the Indonesian seas, both of which are highly correlated to the seasonal transport variations of the North Equatorial Countercurrent, lagging the latter due to the westward propagation of the seasonal Rossby waves. The MC retroflection and sea surface color fronts are found to move synchronously on interannual time scales at the Pacific entrance of the Indonesian seas, with the Niño 3.4 index lagging by about 2 months. The MC retroflection intrudes anomalously deeper than the seasonal cycle into the northern Maluku Sea in El Niño winters, while tends to take a leaping path in La Niña winters. During El Niño summers, the leaping path of the MC is changed into a penetrating path sometimes.
棉兰老洋流在印度尼西亚海域太平洋入口处的季节性和年际逆转运动
利用 1993 年 1 月至 2019 年 12 月期间卫星高度计的表层地转流研究了棉兰老洋流逆向的季节和年际变化。研究结果表明,棉兰老洋流主流在北半球夏季回溯到塔劳德岛以北的太平洋,在北半球冬季侵入马鲁古海北部。棉兰老洋流回折的变化导致了印尼海域入口处海面颜色锋的季节性变化,这两种变化与北赤道逆流的季节性输送变化高度相关,由于季节性罗斯比波的向西传播,北赤道逆流滞后于后者。在印度尼西亚海域的太平洋入口处,MC 逆流和海面颜色锋在年际时间尺度上同步移动,尼诺 3.4 指数滞后约 2 个月。在厄尔尼诺冬季,MC 逆流异常地侵入马鲁古海北部,其深度大于季节周期,而在拉尼娜冬季,MC 逆流则趋向于跳跃式移动。在厄尔尼诺夏季,MC 的跳跃路径有时会转变为穿透路径。
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来源期刊
CiteScore
2.40
自引率
20.00%
发文量
200
审稿时长
4.5 months
期刊介绍: The Journal of Physical Oceanography (JPO) (ISSN: 0022-3670; eISSN: 1520-0485) publishes research related to the physics of the ocean and to processes operating at its boundaries. Observational, theoretical, and modeling studies are all welcome, especially those that focus on elucidating specific physical processes. Papers that investigate interactions with other components of the Earth system (e.g., ocean–atmosphere, physical–biological, and physical–chemical interactions) as well as studies of other fluid systems (e.g., lakes and laboratory tanks) are also invited, as long as their focus is on understanding the ocean or its role in the Earth system.
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