可以免费看的av毛片-成人午夜无码精品免费看-啪啪福利视频-精品国产一区在线观看-天堂网2018-超碰97人人模人人爽人人喊-亚洲乱码av一区二区-香蕉视频911-热re99久久精品国99热-久久综合久久爱香蕉网-亚洲国产精品福利片在线观看-国产边摸边吃奶边叫做激情视频-丰满的少妇xxxxx青青青-在线成人小视频-久久国产精品波多野结衣

所長信箱   |    信息公開   |    內部辦公   |    內部辦公(舊)   |    ARP   |   圖書館   |    中國科學院   |    ENGLISH
深海科學與工程研究所
深海科學與工程研究所
當前位置:首頁 > 研究進展 > 2013
2013

Analysis of deep-layer and bottom circulations in the South China Sea based on eight quasi-global ocean model outputs

文章來源:  |  發(fā)布時間:2013-06-28  |  【打印】 【關閉

  

作者:Xie Qiang, XIAO JinGen, WANG DongXIao, YU YongQiang

出版物:Chinese Science Bulletin 

DOI: 10.1007/s11434-013-5791-5 出版年份:June 2013

摘要:This study is a preliminary analysis of the South China Sea (SCS) deep circulations using eight quasi-global high-resolution ocean model outputs. The goal is to assess models’ ability to simulate these deep circulations. The analysis reveals that models’ deep temperatures are colder than the observations in the World Ocean Atlas, while most models’ deep salinity values are higher than the observations, indicating models’ deep water is generally colder and saltier than the reality. Moreover, there are long-term trends in both temperature and salinity simulations. The Luzon Strait transport below 1500 m is 0.36 Sv when averaged for all models, smaller compared with the observation, which is about 2.5 Sv. Four assimilated models and one unassimilated (OCCAM) display that the Luzon deep-layer overflow reaches its minimum in spring and its maximum in winter. The vertically integrated streamfunctions below 2400 m from these models show a deep cyclonic circulation in the SCS on a large scale, but the pattern is different from the diagnostic streamfunction from the U.S Navy Generalized Digital Environment Model (GDEM-Version 3.0, GDEMv3). The meridional overturning structure above 1000 m is similar in all models, but the spatial distribution and intensity below 1500 m are quite different from model to model. Moreover, the meridional overturning below 2400 m in these models is weaker than that of the GDEMv3, which indicates a deep vertical mixing process in these models is biased weak. Based on the above evaluation, this paper discusses the impacts of T/S initial value, topography, and mixing scheme on the SCS deep circulations, which may provide a reference for future model improvement.

謝強:博士,研究員。1999年于中國科學院海洋研究所物理海洋專業(yè)獲得博士學位。從事海洋環(huán)流(包括上層環(huán)流和深海環(huán)流)和海-陸-氣相互作用等研究工作。

Copyright © 中國科學院深海科學與工程研究所 備案證號:瓊ICP備13001552號-1   瓊公網安備 46020102000014號
地址: 三亞市鹿回頭路28號 郵編:572000 網站維護:深海所辦公室   郵箱:office@idsse.ac.cn