研究团队

王桂华

   职    称:复旦大学特聘教授/博导/国家杰出青年基金获得者

   所在系所:大气科学研究院

   专业方向:物理海洋学、海气相互作用、气候变化

   联系电话:021-31248886

   电子邮箱:wanggh@fudan.edu.

 

研究兴趣:

物理海洋学,海气相互作用,气候变化

荣誉和人才计划:

2011 入选国务院特殊津贴专家

2011 国家自然科学基金委杰出青年基金获得者

2013 中国青年科技奖

2014 入选创新人才推进计划中青年科技创新领军人才

2014 入选度国家百千万人才工程,被授予有突出贡献中青年专家荣誉称号。

2015 入选第二批国家万人计划领军人才

2017 入选上海市学术带头人称号

 

教育背景:

学士学位(1996年),天气动力学专业,成都气象学院

硕士学位(1999年),物理海洋专业,国家海洋局第二海洋研究所

博士学位(2004年),物理海洋专业,中国海洋大学

  

研究经历:

1999 — 2000年,研究实习员,国家海洋局第二海洋研究所

2001 ­— 2004年,助理研究员,国家海洋局第二海洋研究所

2004 ­— 2007年,副研究员,国家海洋局第二海洋研究所

2007 ­— 2016年,研究员,国家海洋局第二海洋研究所

2016 ­— 至今,特聘教授,复旦大学

 

访学合作经历(删)

1998.2-1999.2,香港科技大学

2001.1-2001.8,美国海军研究生院

2009.4-2009.8,美国马里兰大学

2010.1-2011.1,美国夏威夷大学

2013.2-2014.2,美国加州大学圣地亚哥分校Scripps海洋研究所

 

承担课题:

201804 — 202003, 国家自然科学基金中英国际合作项目海洋涡旋能量年周期变化的物理机制和动力学效应,中国,主持

201705 — 202004月,上海市科技人才计划项目(上海市优秀学术带头人计划)(17XD1400600),副热带海洋西边界流时空变化及其影响,中国,主持

201501 — 201812月,国家自然科学基金重大研究计划重点支持项目(91428206),南海深层西边界流的观测与模拟,中国,主持

201301 — 201708月,国家973课题(2013CB430301),海洋中尺度过程与台风的相互作用,中国,主持

201201 — 201512月,国家自然科学杰出青年基金(41125019),物理海洋学:南海海盆尺度环流与中尺度涡相互作用,中国,主持

201001 — 201212月,国家自然科学基金面上项目(40976017),海洋环境在南海土台风形成发展中的作用,中国,主持

200807 — 201106月,国际科技合作(2008DFA22230),多源海洋数据同化技术研究,中国,主持

200707 — 201108月,国家973课题(2007CB816003),太平洋西边界流与中国近海的热盐交换,中国,主持

200701 — 200912月,国家自然科学基金面上项目(40676007),南海次海盆风应力旋度场驱动中尺度涡的动力过程研究,中国,主持

200601 — 200612月, 国家自然科学基金面上项目(40576019),季风-陆地地形相互所形成的风应力旋度场驱动南海中尺度涡的动力过程研究,中国,主持

200801 — 201112月,国家自然科学基金重点项目(40730843),基于多源卫星观测的热带海洋模拟和短期气候预测研究,中国,参与

200701 — 200912月,国家863项目(2006AA09Z156),基于多元遥感的南海中尺度海洋环境场的融合提取、变分同化、共享服务技术,参与

200701 — 200812月,海洋局908项目(908-03-01-05),多源海洋信息融合技术,中国,参与

  

教学经历:

主讲海洋动力学,高等海洋动力学等课程

  

学术兼职:

201412至今,中国气象学会台风委员会,副主任委员

201712至今,中国海洋研究委员会委员

  

获奖情况:

2013年,Journal of Geophysical Research-Oceans最佳评审专家,美国地球物理联盟(美国)

2013年,西北太平洋Argo剖面浮标观测及其应用研究,海洋局科学技术奖,国家海洋局、中国海洋学会、中国太平洋学会和中国海洋湖沼学会(中国)

  

发表论文:

海洋涡旋及中小尺度过程

1Li, J., Wang, G.*, andZhai, X.(2017), Observed cold filaments associated with mesoscale eddies in the South China Sea, J. Geophys. Res. Oceans ,122,doi:10.1002/2016JC012353.

2Sun, R., Wang, G.*, and Chen, C. (2016), The Kuroshio bifurcation associated with islands at the Luzon Strait, Geophys. Res. Lett., 43, 5768–5774, doi:10.1002/2016GL069652.

3Yan, Y., Wang, G.*, Wang, C., and Su, J. (2015). Low‐salinity water off West Luzon Island in summer. Journal of Geophysical Research: Oceans, 120(4), 3011-3021.(SCI)

4Chen, C., and WangG (2014), Interannual variability of the eastward current in the western South China Sea associated with the summer Asian monsoon, J. Geophys. Res. Oceans, 119(9), 5745-5754, doi:10.1002/2014JC010309.

5Wang, G., Li, J.X. , Wang, C. , andYan, Y.(2012): Interactions among winter monsoon, mesoscale eddy and thermal front in the South China Sea. Journal of Geophysical Research-Oceans, 117, C08002, doi:10.1029/2012JC008007. 5/4

6Wang, G., Wang, C., and Huang,R.X.(2010): Interdecadal variability of eastward current in the South China Sea associated with the Summer Asian Monsoon. Journal of Climate, 23, 6115-6123, .20/18

7Wang, G., Chen, D. and Su, J. L.(2008)Winter eddy genesis in the eastern South China Sea due to orographic wind-Jets. Journal of Physical Oceanography,38, 726-732. 58/47

8Wang, G., Chen, D. and Su, J.L.(2006): Generation and life cycle of the dipole in summer South China Sea circulation. Journal of Geophysical Research-Oceans,111, c06002.. 69/58

9Wang, G., Su, J.L. and Li, R.F. (2005): Mesoscale eddies in the South China Sea andtheir impact on temperature profiles. Acta Oceanologic Sinica, 1, 39-45 .

10Wang, G., Su, J.L. and Chu, P.C.(2003): Mesoscale eddies in the South China Sea Observed with Altimetry. Geophysical Research Letters, 30(21) 2121 10.1029/ 2003GL018532, . 141/131

  台风及海洋过程

11Wang, G., Wu, L. , N. C. Johnson, and Ling, Z. (2016), Observed three-dimensional structure of ocean cooling induced by Pacific tropical cyclones, Geophys. Res. Lett., 43, 7632–7638, doi:10.1002/2016GL069605.

12Lu , Z., Wang, G.*, and Shang, X.(2016), Response of a Preexisting Cyclonic Ocean Eddy to a Typhoon, Journal of Physical Oceanography, 2016,46:2403-2410.

13Ling, Z., Wang, Y., Wang, G.*(2016). Impact of Intraseasonal Oscillations on the Activity of Tropical Cyclones in Summer over the South China Sea. Part I: Local Tropical Cyclones. Journal of Climate, 29(2), 855–868. DOI: 10.1175/JCLI-D-15-0617.1 (SCI)

14Ling, Z., Wang, G.*, Wang, C.(2015). Out-of-phase relationship between tropical cyclone generated locally in the South China Sea and non-locally from the Northwest Pacific Ocean. Clim Dyn, 45, Issue 3, pp 1129-1136. DOI 10.1007/s00382-014-2362-7.

15Wang, G., Ling Z., and C. Wang(2009): Influence of tropical cyclones on seasonal ocean circulation in the South China Sea. Journal of Geophysical Research-Oceans, doi:10.1029/2009JC005302 . 16/9

16Wang, G., Su, J.L., Ding, Y. and Chen, D.(2007): Tropical cyclones genesis over the South China Sea. Journal of Marine Systems, 68(3-4), 318-326. 43/36

  深海环流及大洋环流

17Wang, G., Xie, S. P., Huang, R. X., and Chen, C. (2015). Robust warming pattern of global subtropical oceans and its mechanism. Journal of Climate,28(21), 8574-8584.(SCI)

18Chen, C. and Wang, G.*(2015): Role of North Pacific Mixed Layer in the Response of SST Annual Cycle to Global Warming. J. Climate, 28, 9451–9458.

19Wang, G., Huang, R.X.,Su, J.L. , and Chen, D.(2012): The effects of thermohaline circulation on wind-driven circulation in the South China Sea. Journal of Physical Oceanography,42:2283-2296.

20Wang, G., Xie, S.P. ,Qu, T. , and Huang, R.X.(2011): Deep South China Sea circulation. Geophysical Research Letters, 38, L05601, doi:10.1029/2010GL046626.33/30.

21Wang, H.Z, G.H. Wang, D. Chen, and R. Zhang: Reconstruction of Three-Dimensional Pacific Temperature with Argo and Satellite Observations. Atmosphere Ocean, 2012, 50(Supp 1), 116-128.

22Deng, Z., Tang, Y., D. Chen, and Wang, G.: A Time-Averaged Covariance Method in the EnKF for Argo Data Assimilation, Atmos-Ocean, 2012, 50(Supp 1), 129-145.

23Zhang, R.H., D. Chen and G. Wang, Using satellite ocean color data to derive an empirical model for the penetration depth of solar radiation (Hp) in the tropical Pacific Ocean. J. Atmos. Ocean. Tech., 28, 944-965, 2011.

24Zhang, R.H, Wang G., Chen D., Busalacchi AJ., and E.C. Hacker: Interannual biases induced by freshwater flux and coupled feedback in the tropical pacific. Monthly Weather Review, 138,1715-1737,2010.

25Chu P.C., Wang G. and Y.Chen: Japan sea thermohaline structure and circulation. Part III: Autocorrelation functions. Journal of Physical Oceanography, 32, 3596-3615, 2002.

  海气过程及其它

26Zhou, M.P., & Wang, G.*(2015). Responses of atmospheric circulation to sea surface temperature anomalies in the South China Sea. Ocean Science,11(6), 873-878 .(SCI)

27Wang, G., Ling, Z.,Wu, R.G.,Chen, C.L.(2013): Impacts of the Madden–Julian Oscillation on the Summer South China Sea Ocean Circulation and Temperature.J. Climate, 26, 8084–8096. doi:http://dx.doi.org/10.1175/JCLI-D-12-00796.1 5/2

28Wu, R., W. Chen, G. Wang, and K. Hu (2014), Relative contribution of ENSO and East Asian winter monsoon to the South China Sea SST anomalies during ENSO decaying years, J. Geophys. Res. Atmos., 119, 5046–5064, doi:10.1002/2013JD021095.

29Wang G. and R. Li: Advances of the study in deducing circulation from hydrographic data and the South China Sea. Advance of Atmospheric Sciences, 6,194-200, 2003.

30Chu P.C., and G. Wang: Seasonal variability of thermohaline front in the central South China Sea. Journal of Oceanography, 59, 65-78, 2003.

31Chu, P.C., and G.Wang: Evaluation of the MODAS data using the South China Sea monsoon experiment data. Journal of Oceanography, 60, 6, 1007-1021, 2004.

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