Evaluation of the Tropical Variability from the Beijing Climate Center's Real-Time Operational Global Ocean Data Assimilation System

被引:0
作者
Wei ZHOU [1 ]
Mengyan CHEN [2 ]
Wei ZHUANG [2 ]
Fanghua XU [3 ]
Fei ZHENG [4 ]
Tongwen WU [1 ]
Xin WANG [2 ]
机构
[1] Laboratory for Climate Studies,National Climate Center, China Meteorological Administration
[2] State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology,Chinese Academy of Sciences
[3] Ministry of Education Key Laboratory for Earth System Modeling, and Center for Earth System Science,Tsinghua University
[4] International Center for Climate and Environment Science, Institute of Atmospheric Physics,Chinese Academy of Sciences
基金
中国国家自然科学基金;
关键词
operational oceanography; global ocean; 3DVAR; El Ni n?o; interannual variability;
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 second-generation Global Ocean Data Assimilation System of the Beijing Climate Center(BCCGODAS2.0) has been run daily in a pre-operational mode.It spans the period 1990 to the present day.The goal of this paper is to introduce the main components and to evaluate BCCGODAS2.0 for the user community.BCCGODAS2.0 consists of an observational data preprocess,ocean data quality control system,a three-dimensional variational(3DVAR) data assimilation,and global ocean circulation model[Modular Ocean Model 4(MOM4)].MOM4 is driven by six-hourly fluxes from the National Centers for Environmental Prediction.Satellite altimetry data,SST,and in-situ temperature and salinity data are assimilated in real time.The monthly results from the BCCGODAS2.0 reanalysis are compared and assessed with observations for 1990-2011.The climatology of the mixed layer depth of BCC-GODAS2.0 is generally in agreement with that of World Ocean Atlas 2001.The modeled sea level variations in the tropical Pacific are consistent with observations from satellite altimetry on interannual to decadal time scales.Performances in predicting variations in the SST using BCCGODAS2.0 are evaluated.The standard deviation of the SST in BCC-GODAS2.0 agrees well with observations in the tropical Pacific.BCC-GODAS2.0 is able to capture the main features of E1 Nino Modoki I and Modoki Ⅱ,which have different impacts on rainfall in southern China.In addition,the relationships between the Indian Ocean and the two types of E1 Nino Modoki are also reproduced.
引用
收藏
页码:208 / 220
页数:13
相关论文
共 28 条
[1]  
An Overview of BCC Climate System Model Development and Application for Climate Change Studies[J]. 吴统文,宋连春,李伟平,王在志,张华,辛晓歌,张艳武,张莉,李江龙,吴方华,刘一鸣,张芳,史学丽,储敏,张洁,房永杰,汪方,路屹雄,刘向文,魏敏,刘茜霞,周文艳,董敏,赵其庚,季劲钧,Laurent LI,周明煜.Journal of Meteorological Research. 2014(01)
[2]  
A Global Ocean Reanalysis Product in the China Ocean Reanalysis(CORA) Project[J]. 韩桂军,付红丽,张学峰,李威,吴新荣,王喜冬,张连新.Advances in Atmospheric Sciences. 2013(06)
[3]   国家气候中心短期气候预测模式系统业务化进展 [J].
吴统文 ;
宋连春 ;
刘向文 ;
李巧萍 ;
梁潇云 ;
程彦杰 ;
周巍 ;
聂肃平 ;
张莉 ;
颉卫华 ;
房永杰 ;
张艳武 ;
路屹雄 ;
储敏 ;
李江龙 .
应用气象学报, 2013, (05) :533-543
[4]   Preliminary results of a new global ocean reanalysis [J].
Wang DongXiao ;
Qin YingHao ;
Xiao XianJun ;
Zhang ZuQiang ;
Wu FengMin .
CHINESE SCIENCE BULLETIN, 2012, 57 (26) :3509-3517
[5]  
Ensemble Hindcasts of ENSO Events over the Past 120 Years Using a Large Number of Ensembles[J]. 郑飞,朱江,王慧.Advances in Atmospheric Sciences. 2009(02)
[6]  
ENSO Amplitude Change in Observation and Coupled Models[J]. 张琼,关月,杨海军.Advances in Atmospheric Sciences. 2008(03)
[7]   Evaluation of a 3dVAR system for the South China Sea [J].
Xianjun Xiao ab Dongxiao Wang a Changxiang Yan c Jiang Zhu c a LED South China Sea Institute of Oceanology Chinese Academy of Sciences Guangzhou China b NCC China Meteorological Administration Beijing China c Institute of Atmospheric Physics Chinese Academy of Sciences Beijing China .
Progress in Natural Science, 2008, (05) :547-554
[8]   The Application of ARGO Data to the Global Ocean Data Assimilation Operational System of NCC [J].
刘益民 ;
张人禾 ;
殷永红 ;
牛涛 .
Acta Meteorologica Sinica, 2005, (03) :95-105
[9]   热带太平洋年代际平均气候态变化与ENSO循环 [J].
张勤 ;
丁一汇 .
气象学报, 2001, (02) :157-172
[10]  
Roles of initial ocean surface and subsurface states on successfully predicting 2006–2007 El Ni?o with an intermediate coupled model[J] . F. Zheng,J. Zhu.Ocean Science . 2015 (1)