Seasonal Variation of the Taiwan Warm Current Water and Its underlying Mechanism

Seasonal Variation of the Taiwan Warm Current Water and Its underlying Mechanism
复制标题

台湾暖流的季节变化及其机制

DOI:
10.1007/s00343-017-6018-4
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发表时间:
2016
影响因子:
--
通讯作者:
Xu Zhenhua
Xu Zhenhua
中科院分区:
地学4区
文献类型:
--
作者:
Qi Jifeng;Yin Baoshu;Zhang Qilong;Yang Dezhou;Xu Zhenhua

文献摘要

被引文献

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Based on the historical observed data and the modeling results, this paper investigated the seasonal variations in the Taiwan Warm Current Water (TWCW) using a cluster analysis method and examined the contributions of the Kuroshio onshore intrusion and the Taiwan Strait Warm Current (TSWC) to the TWCW on seasonal time scales. The TWCW has obviously seasonal variation in its horizontal distribution,T-Scharacteristics and volume. The volume of TWCW is maximum (13 746 km3) in winter and minimum (11 397 km3) in autumn. As to the contributions to the TWCW, the TSWC is greatest in summer and smallest in winter, while the Kuroshio onshore intrusion northeast of Taiwan Island is strongest in winter and weakest in summer. By comparison, the Kuroshio onshore intrusion make greater contributions to the Taiwan Warm Current Surface Water (TWCSW) than the TSWC for most of the year, except for in the summertime (from June to August), while the Kuroshio Subsurface Water (KSSW) dominate the Taiwan Warm Current Deep Water (TWCDW). The analysis results demonstrate that the local monsoon winds is the dominant factor controlling the seasonal variation in the TWCW volume via Ekman dynamics, while the surface heat flux can play a secondary role via the joint effect of baroclinicity and relief.