电子邮箱:873c859dd49728ce2708f206ced61552d89be5995bd9de4e9c04d70e7b26a1b12c8c9b26978b6fef67c1b8a972b10d1ae1548acb15a5514d5768efad90942bdbf9b59ab524264e609d96275d8bac74c2af1c423a45f9cacbb9468d96c122e60a675783abeb682720221e5b9d429c02085ba861084dc53a7367c7aa0ab0a0fa7c
学科:大气科学
74. Yang, Z., Xu, F.*, and Li, H*., (2026) Understanding the Mesoscale Eddy Vertical Tilt Based on Mode Decomposition, Journal of Geophysical Research: Oceans, in Press.
73. Wu, X., Li, H., and Xu, F., (2026) Asymmetries in Anticyclone Catalyze Submesoscale Motions (2026), Geophysical Research Letters, 53, e2025GL120298. https://doi.org/10.1029/ 2025GL120298
72. Li, N., Gao, H., Cong P., Sun X., Wright J.S., Guan L., and Xu, F.*, (2026). A Sun Glint Correction Method for Low and Medium Resolution Visible Imagery over the Great Lakes, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 19, 10999 – 11011.
71. Zhang, Y., Zhou, S., and Xu, F.* (2026). Satellite observations reveal complex zonal shifts of western boundary currents over the past three decades, Geophysical Research Letters, 53, e2025GL120895. https://doi.org/10.1029/2025GL120895
70. Xu, F.*, and Li, H. (2026). Numerical investigation of changes of subsurface ocean temperature within mesoscale eddies after tropical cyclone passages. Journal of Geophysical Research: Oceans,131, e2025JC023898.
69. Zhou, S., Zhang, Y., Li, H. Liu, L., Liao, E. and Xu, F.*. (2025). Shoreward shift of oceanic mesoscale activity over the last three decades Nature Communications, (2025). 16: 10381.
68. Dai, J., Xu, F.*, Wright, J.S., Huang, R.X., and Huang, X. (2025). Subpolar North Atlantic sea surface salinity as an AMOC mean state indicator. npj Climate and Atmospheric Science 8, 308 (2025). https://doi.org/10.1038/s41612-025-01190-x.
67. Zhang, D., Ma, Z., Cheng, L., Lin, Y., Xu, F., Zhang, Z., Zheng, Y., Fei, J., and Mann, M.E. (2025). Oceanic memory of tropical cyclones moderates the Kuroshio current. Nature Communications, (2025)16:6890.
66. Fang, Z., Xu, F.*, and Zhang, X. (2025). Unraveling the impact of sediment size distribution on flow-sediment hysteresis in estuarine environments: insights from size-resolved sediment transport modeling. Environmental Research Communications, 7(2025)061011.
65. Chen, Y., Xu, F., and Wright, J. S. (2025). Recurrent synoptic waves instigated severe marine heatwave in the Southwest Pacific. Journal of Geophysical Research: Atmospheres, 130, e2024JD043232
64. Zhou, S., Dong, J., Li, H., Xu, G., and Xu, F.* (2025). A machine learning‐based model infers the sea surface velocity of Surface Water and Ocean Topography (SWOT). Geophysical Research Letters, 52, e2024GL110731.
63. Fang, Z., Xu, F.*, and Zhang, X. (2025). A new parameterization of flocculent layer resuspension of fine-grained sediments. Ocean Dynamics 75, 38 (2025).
62. Shu, R., Wu, H., Gao, Y., Xu, F, Gou., R, Xiong, W. and Huang, X. (2025). Advanced forecasts of global extreme marine heatwaves through a physics-guided data-driven approach, Environmental Research Letters, 20 (2025) 044030
61. Zhang, X., and Xu, F.* (2024). Warming of newly-subducted subtropical mode water in the North Pacific was suppressed from 1999 to 2017, Environmental Research Letters, 20 (2025) 014002.
60. Zhang, Q., and Xu, F.* (2024). Pathways of tropical cyclone induced subsurface warming in the Northwestern Pacific Ocean, Ocean Dynamics, (2025) 75:2.
59. Fang, Z., and Xu, F.* (2024). Development of a Spectrum-Based Scheme for Simulating Fine-Grained Sediment Transport in Estuaries,Journal of Marine Science and Engineering, 12(7).
58. Zhou, S., Shi, R., Yu, H., Zhang, X., Dai J., Huang, X., and Xu, F.* (2024). A Physical-informed Neural Network for Improving Air-Sea Turbulent Heat Flux Parameterization, Journal of Geophysical Research: Atmospheres, 129, e2023JD040603.
57. Gao, F., Xu, F., Li, Z., Qin, J., and Ma, S. (2024). Sound intensity fluctuations caused by internal solitary wave train in the South China Sea,Journal of Physics: Conference Series, ISSN:(1742-6588)2718(1).
56. Shi, R., and Xu, F.*, (2024). Improvement of global forecast of tropical cyclone intensity by spray heat flux and surface roughness, Journal of Geophysical Research: Atmospheres, 129, e2023JD039624.
55. Shi, R., and Xu, F.*, (2023). Accelerated Estimation of Sea Spray-Mediated Heat Flux Using Gaussian Quadrature: Case Studies with a Coupled CFSv2.0-WW3 System, Geoscientific Model Development, 16, 1839-1856.
54. Shi, R., Zhang, Q., Xu, F.*, Zhang, X., Lin, Y., and Zhang, J., (2023). Decreasing trend of tropical cyclone-induced ocean warming in recent decades, Environmental Research Letters, 18 064013.
53. Zhou S., Xu, F.*, and Shi R., (2023). Whitecap Fraction Parameterization and Understanding with Deep Neural Network, Remote Sensing, 15(1):241.
52. Li H., Xu, F.*, Wang, G., and Shi, R., (2023). Numerical studies of the tilting of mesoscale eddies: The effects of rotation and stratification, Deep Sea Research Part I: Oceanographic Research Papers, 10.1016/j.dsr.2022.103945, 191, (103945).
51. Gao, F., Hu, P., Xu, F.*, Li, Z., and Qin, J.*, (2023). Effects of Internal Waves on Acoustic Temporal Coherence in the South China Sea, Journal of Marine Science and Engineering, 11, 374.
50. Gao, F., Hu, P., Xu, F.*, Li, Z., Qin, J.*, and Zhang, Q. (2023). Acoustic propagation uncertainty in internal wave environments using an ocean-acoustic joint model, Chinese Physics B, Vol.32 (3): 34302-034302.
49. Wang M., Wang D., Xiang Y., Liang Y., Xia R., Yang J., Xu F., and Huang X., (2023). Fusion of ocean data from multiple sources using deep learning: Utilizing sea temperature as an example, Frontiers in Marine Science, 10:1112065.
48. Li, H., Xu, F.*, Wang, G., and Shi, R. (2022). A multi-layer linear Rossby wave dispersion relation for vertical tilt of mesoscale eddies, Journal of Geophysical Research: Oceans, 127, e2022JC018703.
47. Li, H., Xu, F.*, & Wang, G.* (2022). Global mapping of mesoscale eddy vertical tilt. Journal of Geophysical Research: Oceans, 127, e2022JC019131.
46. Zhang, X., Xu, F*., Zhang, J., & Lin, Y. (2022). Decrease of annually accumulated tropical cyclone-induced sea surface cooling and diapycnal mixing in recent decades, Geophysical Research Letters, 49, e2022GL099290.
45. Shi, R., Xu, F.*, L. Liu, Z. Fan, H. Yu, H. Li, X. Li, and Y. Zhang, (2022). The effects of ocean surface waves on global intraseasonal prediction: case studies with a coupled CFSv2.0–WW3 system, Geoscientific Model Development, 15, 2345–2363.
44. Gao F., Xu F.*, Li Z., Qin J.*. Mode coupling and intensity fluctuation of sound propagation over continental slope in presence of internal waves, Acta Physica Sinica, 2022, 71(20): 204301.
43. Gao, F., Xu, F., Li Z. (2022). Effects of mesoscale eddies on the spatial coherence of a middle range sound field in deep water, Chinese Physics B, 2022, 31(11): 114302.
42. Liu, X., Yao, J., Wu, T., Zhang, S., Xu, F., Zhang, L., et al. (2021). Development of coupled data assimilation with the BCC climate system model: Highlighting the role of sea-ice assimilation for global analysis, Journal of Advances in Modeling Earth Systems, 13, e2020MS002368.
41. Huang, J., Pickart, R. S., Bahr, F., McRaven, L. T., and Xu, F. (2021). Wintertime water mass transformation in the western Iceland and Greenland Seas, Journal of Geophysical Research: Oceans, 126, e2020JC016893.
40. Zhou, W., J. Li, F. Xu, Y. Shu, and Y. Feng, (2021). The impact of ocean data assimilation on seasonal predictions based on the Beijing Climate Center Climate System Model, Acta Oceanologica Sinica, 40, 58–70.
39. Li, H., F. Xu*, Y. Lin, (2020), The Impact of SST on the Zonal Variability of the Western Pacific Subtropical High in Boreal Summer, Journal of Geophysical Research- Atmospheres, 125(11) . https://doi.org/10.1029/2019JD031720
38. J. Huang, R. S. Pickart, R. X. Huang, P. Lin, A. Brakstad and F. Xu, (2020), Sources and upstream pathways of the densest overflow water in the Nordic Seas, Nature Communication, 11(1)
37. Lin, Y., X. Huang, Y. Liang, Y. Qin, S. Xu, W. Huang, F. Xu, L. Liu, Y. Wang, Y. Peng, L. Wang, W. Xue, H. Fu, G. J. Zhang, B. Wang, R. Li, C. Zhang, H. Lu, K. Yang, Y. Luo, Y. Bai, Z. Song, M. Wang, W. Zhao, F. Zhang, J. Xu, X. Zhao, C. Lu, Y. Chen, Y. Luo, Y. Hu, Q. Tang, D. Chen, G. Yang, P. Gong, (2020), Community Integrated Earth System Model (CIESM): Description and Evaluation, 12(8).
36. Li, P., F. Xu*, (2020), Understanding and reconstructing the coastal sea level variations along the western boundary of the North Pacific, 7, 5 (2020). https://doi.org/10.1186/ s40562-020-00153-9
35. Ezer, T., de Camargo, R., Tanajura, C.A.S. F. Xu and H. Xue, (2020), The 10th International Workshop on Modeling the Ocean (IWMO 2018) in Santos, Brazil, June 25–28, 2018. Ocean Dynamics 70, 839–841. https://doi.org/10.1007/s10236-020- 01374-4
34. Li, H., F. Xu*, J. Sun, Y. Lin and J. Wright, (2019), Subtropical High affects interdecadal variability of tropical cyclone genesis in the SCS, Journal of Geophysical Research-Atmospheres, 124(12).
33. J. Huang, R. Pickart, H. Valdimarsson, P. Lin, M. Spall & F. Xu, (2019), Structure and Variability of the North Icelandic Jet from two years of mooring data, Journal of Geophysical Research-Oceans, in press, https://doi.org/10.1029/2019JC015134
32. Chen, Y., Y. Lu, P. Zhao, F. Xu, X. Huang, and X. Huang, (2019), Seasonal and interannual variations of sea temperature influenced by Galápagos Islands in Eastern Tropical Pacific Ocean, Journal of Geophysical Research-Oceans, 124(5), 3007-3020.
31. 范峥,李宏,刘向文,徐芳华*,基于局地集合变换卡尔曼滤波的全球海洋资料同化系统设计及算法加速,地球科学进展, 2019, 034(005), 531-539.
30. Dong, W, Y. Lin, J. Wright, Y. Xie, F. Xu, K. Yang, X. Li, L. Tian, X. Zhao and D. Cao (2018), Connections between a late summer snowstorm over the southwestern Tibetan Plateau and a concurrent Indian monsoon low pressure system, Journal of Geophysical Research-Atmospheres, 123(24), 13,676-13,691.
29. Huang, J. and F. Xu*, (2018), Observational evidence of subsurface chlorophyll response to mesoscale eddies, Geophysical Research Letter, 45.
28. Xu, F.* (2018), Test and evaluation of a simple parameterization to enhance air-sea coupling in CESM, Satellite Oceanography and Meteorology, ISSN 2424-9505. http://ojs.whioce.com/index.php/som/article/view/739
27. Dong, W., Y. Lin, J. S. Wright, Y. Xie, Y. Ming, H. Zhang, R. Chen, Y. Chen, F. Xu, N. Lin, C. Yu, B. Zhang, S. Jin, K. Yang, Z. Li, J. Guo, L. Wang, and G. Lin, (2018), Regional disparities in warm season rainfall changes over arid eastern–central Asia, Scientific Reports, volume 8, Article number: 13051.
26. Sun J., F. Xu *, L. Oey, and Y. Lin (2018), Monthly variability of tropical cyclone intensity change over the Northern South China Sea in recent decades, Climate Dynamics,https://doi.org/10.1007/s00382-018-4341-x
25. Wang, L. and F. Xu* (2018), Decadal variability and trends of oceanic barrier layers in tropical Pacific, Ocean Dynamics, 68: 1155. https://doi.org/10.1007/s10236-018- 1191-3
24. Gu C., H. Li, Xu F.*, Cheng P., Wang X.H., Xu, S. and Peng Y. (2018), Numerical study of Jiulongjiang river plume in the wet season 2015, Regional Studies in Marine Science, 24, 82-96. https://doi.org/10.1016/j.rsma.2018.07.004
23. Lin, Y., Li, Y., Li, Q., Chen, M., Xu, F., & Wang, Y., et al. (2018). A long lasting vortex Rossby wave induced rainband of typhoon Longwang (2005). Bulletin of the American Meteorological Society, 99, 1127–1134.
22. Xu, F.*, Yao, Y., Oey, L.-Y., & Lin, Y. (2017). Impacts of preexisting ocean cyclonic circulation on sea surface chlorophyll-a concentration off northeastern Taiwan following episodic typhoon passages. Journal of Geophysical Research-Oceans, 122, 6482–6497.
21. Huang J., F. Xu*, K. Zhou, P. Xiu, & Lin Y. (2017). Temporal evolution of near-surface chlorophyll over cyclonic eddy lifecycles in the southeastern Pacific. Journal of Geophysical Research-Oceans, 122, 6165–6179.
20. Li, H., F. Xu*, W. Zhou, D. Wang, J. S. Wright, Z. Liu, and Y. Lin. (2017). Development of a global gridded Argo data set with Barnes successive corrections, Journal of Geophysical Research Oceans, 122, 866–889.
19. Dong, W., Lin, Y., Wright, J. S., Xie, Y., Xu, F., & Xu, W., et al. (2017). Indian monsoon low pressure systems feed up-and‐over moisture transport to the southwestern Tibetan Plateau. Journal of Geophysical Research - Atmospheres, 122, 12,140–12,151.
18. Sun, J., Oey, L.-Y., F. Xu, Y.-C. Lin. (2017). Sea level rise, surface warming, and the weakened buffering ability of South China Sea to strong typhoons in recent decades. Scientific Reports, 7(1):7418.
17. Zhou, W., M. Chen, W. Zhuang, F. Xu, F. Zheng, T. Wu, and X. Wang. (2016). Evaluation of the Tropical Variability from the Beijing Climate Center's Real-Time Operational Global Ocean Data Assimilation System. Advances in Atmospheric Sciences, 33(2):208-220.
16. Dong, W., Y. Lin, J.W. Wright, Y. Ming, Y. Xie, B. Wang, Y. Luo, W. Huang, J. Huang, L. Wang, L. Tian, Y. Peng, F. Xu (2016). Summer rainfall over the southwestern Tibetan Plateau controlled by deep convection over the Indian subcontinent, Nature Communications, 2016,7:10925.
15. Xu, F.*, L.-Y. Oey. (2015). Seasonal SSH variability of the Northern South China Sea,Journal of Physical Oceanography, 45(6):1595-1609.
2007-2009年获得美国纽约州海洋基金会奖学金
2011年美国Norfolk国际海洋模式会议上青年学者演讲比赛奖
2017年美国地球物理协会(AGU) 权威杂志《地球物理研究-海洋》Editor’s Citation for Excellence in Refereeing - JGR-Oceans