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利用热带太平洋TAO浮标阵列评估全球高分辨率浪-潮-流耦合模式同化结果
引用本文:史军强,尹训强,舒启,肖斌,乔方利.利用热带太平洋TAO浮标阵列评估全球高分辨率浪-潮-流耦合模式同化结果[J].海洋学报(英文版),2018,37(3):8-20.
作者姓名:史军强  尹训强  舒启  肖斌  乔方利
作者单位:中国海洋大学海洋与大气学院, 青岛, 266100;国家海洋局第一海洋研究所, 青岛, 266061,国家海洋局第一海洋研究所, 青岛, 266061;区域海洋动力学与数值模拟功能实验室, 青岛海洋科学与技术国家实验室, 青岛, 266237;海洋科学与数值模拟重点实验室, 国家海洋局, 青岛, 266061,国家海洋局第一海洋研究所, 青岛, 266061;区域海洋动力学与数值模拟功能实验室, 青岛海洋科学与技术国家实验室, 青岛, 266237;海洋科学与数值模拟重点实验室, 国家海洋局, 青岛, 266061,国家海洋局第一海洋研究所, 青岛, 266061;区域海洋动力学与数值模拟功能实验室, 青岛海洋科学与技术国家实验室, 青岛, 266237;海洋科学与数值模拟重点实验室, 国家海洋局, 青岛, 266061,国家海洋局第一海洋研究所, 青岛, 266061;区域海洋动力学与数值模拟功能实验室, 青岛海洋科学与技术国家实验室, 青岛, 266237;海洋科学与数值模拟重点实验室, 国家海洋局, 青岛, 266061
基金项目:The National Program on Global Change and Air-sea Interaction of China under contract No. GASI-IPOVAI-05; the National Natural Science Foundation of China-Shandong Joint Fund for Marine Science Research Centers of China under contract No. U1606405; the International Cooperation Project on the China-Australia Research Centre for Maritime Engineering of Ministry of Science and Technology, China under contract No. 2016YFE0101400; the Aoshan Talents Program under contract No. 2015ASTP; the Transparency Program of Pacific Ocean-South China Sea-Indian Ocean supported by Qingdao National Laboratory for Marine Science and Technology China under contract No. 2015ASKJ01.
摘    要:In order to evaluate the assimilation results from a global high resolution ocean model, the buoy observations from tropical atmosphere ocean(TAO) during August 2014 to July 2015 are employed. The horizontal resolution of wave-tide-circulation coupled ocean model developed by The First Institute of Oceanography(FIOCOM model) is 0.1°×0.1°, and ensemble adjustment Kalman filter is used to assimilate the sea surface temperature(SST), sea level anomaly(SLA) and Argo temperature/salinity profiles. The simulation results with and without data assimilation are examined. First, the overall statistic errors of model results are analyzed. The scatter diagrams of model simulations versus observations and corresponding error probability density distribution show that the errors of all the observed variables, including the temperature, isotherm depth of 20°C(D20), salinity and two horizontal component of velocity are reduced to some extent with a maximum improvement of 54% after assimilation. Second, time-averaged variables are used to investigate the horizontal and vertical structures of the model results. Owing to the data assimilation, the biases of the time-averaged distribution are reduced more than70% for the temperature and D20 especially in the eastern Pacific. The obvious improvement of D20 which represents the upper mixed layer depth indicates that the structure of the temperature after the data assimilation becomes more close to the reality and the vertical structure of the upper ocean becomes more reasonable. At last,the physical processes of time series are compared with observations. The time evolution processes of all variables after the data assimilation are more consistent with the observations. The temperature bias and RMSE of D20 are reduced by 76% and 56% respectively with the data assimilation. More events during this period are also reproduced after the data assimilation. Under the condition of strong 2014/2016 El Ni?o, the Equatorial Undercurrent(EUC) from the TAO is gradually increased during August to November in 2014, and followed by a decreasing process. Since the improvement of the structure in the upper ocean, these events of the EUC can be clearly found in the assimilation results. In conclusion, the data assimilation in this global high resolution model has successfully reduced the model biases and improved the structures of the upper ocean, and the physical processes in reality can be well produced.

关 键 词:热带太平洋  TAO浮标阵列  数据同化  评估
收稿时间:2017/5/31 0:00:00

Evaluation on data assimilation of a global high resolution wave-tide-circulation coupled model using the tropical Pacific TAO buoy observations
SHI Junqiang,YIN Xunqiang,SHU Qi,XIAO Bin and QIAO Fangli.Evaluation on data assimilation of a global high resolution wave-tide-circulation coupled model using the tropical Pacific TAO buoy observations[J].Acta Oceanologica Sinica,2018,37(3):8-20.
Authors:SHI Junqiang  YIN Xunqiang  SHU Qi  XIAO Bin and QIAO Fangli
Institution:College of Oceanic and Atmospheric Sciences, Ocean University of China, Qingdao 266100, China;The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China,The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China;Laboratory for Regional Oceanography and Numerical Modeling, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China;Key Laboratory of State Oceanic Administration for Marine Sciences and Numerical Modeling, The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China,The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China;Laboratory for Regional Oceanography and Numerical Modeling, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China;Key Laboratory of State Oceanic Administration for Marine Sciences and Numerical Modeling, The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China,The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China;Laboratory for Regional Oceanography and Numerical Modeling, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China;Key Laboratory of State Oceanic Administration for Marine Sciences and Numerical Modeling, The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China and The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China;Laboratory for Regional Oceanography and Numerical Modeling, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China;Key Laboratory of State Oceanic Administration for Marine Sciences and Numerical Modeling, The First Institute of Oceanography, State Oceanic Administration, Qingdao 266061, China
Abstract:In order to evaluate the assimilation results from a global high resolution ocean model, the buoy observations from tropical atmosphere ocean (TAO) during August 2014 to July 2015 are employed. The horizontal resolution of wave-tide-circulation coupled ocean model developed by The First Institute of Oceanography (FIOCOM model) is 0.1°×0.1°, and ensemble adjustment Kalman filter is used to assimilate the sea surface temperature (SST), sea level anomaly (SLA) and Argo temperature/salinity profiles. The simulation results with and without data assimilation are examined. First, the overall statistic errors of model results are analyzed. The scatter diagrams of model simulations versus observations and corresponding error probability density distribution show that the errors of all the observed variables, including the temperature, isotherm depth of 20°C (D20), salinity and two horizontal component of velocity are reduced to some extent with a maximum improvement of 54% after assimilation. Second, time-averaged variables are used to investigate the horizontal and vertical structures of the model results. Owing to the data assimilation, the biases of the time-averaged distribution are reduced more than 70% for the temperature and D20 especially in the eastern Pacific. The obvious improvement of D20 which represents the upper mixed layer depth indicates that the structure of the temperature after the data assimilation becomes more close to the reality and the vertical structure of the upper ocean becomes more reasonable. At last, the physical processes of time series are compared with observations. The time evolution processes of all variables after the data assimilation are more consistent with the observations. The temperature bias and RMSE of D20 are reduced by 76% and 56% respectively with the data assimilation. More events during this period are also reproduced after the data assimilation. Under the condition of strong 2014/2016 El Niño, the Equatorial Undercurrent (EUC) from the TAO is gradually increased during August to November in 2014, and followed by a decreasing process. Since the improvement of the structure in the upper ocean, these events of the EUC can be clearly found in the assimilation results. In conclusion, the data assimilation in this global high resolution model has successfully reduced the model biases and improved the structures of the upper ocean, and the physical processes in reality can be well produced.
Keywords:tropical Pacific  tropical atmosphere ocean  data assimilation  evaluation
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