摘要
根据1934-1988年东海水文观测资料,重点分析东海温度锋的分布特征及其季节变异。并结合近期中日黑潮合作调查研究成果,初步探讨温度锋季节变异和水团演变的关系。所得主要结论是:(1)东海不仅常年存在浙闽沿岸锋、东海北部陆架锋和黑潮锋,而且,春、夏两季,在东海南部还出现一条东海中部陆架锋。(2)东海温度锋季节变化的显著特点是:冬季,锋的宽度和强度皆是表层最强;夏季,表层温度锋仅出现在渐北近岸小范围海域。但底层温度锋的强度却是一年中最大的。(3)东海诸温度锋中,黑潮锋的位置最稳定,且强度最弱。(4)东海诸水团中,陆架混合水对东海温度锋的分布和变化起着核心控制作用。
Distributional features and seasonal variations of the temperature fronts in the East Chna Sea (ECS) are analysed mainly based on the 1934 - 1988 observationas of water temperature. The relationship between the seasonal variation of the fronts and the evolution of the water masses is studied in the light of the results of the Chna-Japan Joint lnvestigation and study on the Kuroshio. Main results are as folloWs:1. In the ECS three fronts, Zhe-Min coastal front, northern ECS shelf front,Kuroshio front clearly appear in the four seasons, in addition, a midddle ECS shelf front occurring in the southern ECS in spring and summer with the northward intrusing of Taiwan Strait water.2. The geographic position, width and strength of the fronts have remarkable seasonal variations: the width and strength on the surfaee are the largest in winter, the next in spring, and the ones below the surface are the strongest in summer.3 Since the geographic positions of the fronts are different, their distribution and variation show regional difference. Geographically, the Kuroshio front is the most stable, and the shelf fronts show much large variation. On multi-year average, front strength in decreasing order is the Kuroshio front (0.14℃ /n mile), Zhe-Min coastal front (0.14℃ /n mile), middle shelf front (0.13℃ /n mile) and northern shelf front (0.10℃/n mile).4. The number, main shape, width and the strength variation of the fronts de-pend basically on the disposition and evolution of the ECS water masses, with the ECS shelf mixing water playing a key role in the distribution and variation of the fronts.
出处
《海洋与湖沼》
CAS
CSCD
北大核心
1996年第4期436-444,共9页
Oceanologia Et Limnologia Sinica
基金
国家自然科学基金!491300015
国家八五攻关项目!903-08-07
关键词
东海
温度锋
分布特征
季节变异
East China Sea Temperature front Distribution feature Seasonal variation