李静凯 / LI Jingkai
18. Cheng T. -Y, Z. -H. Chen*, J. -K. Li, and A. Babanin, 2026: Mesoscale eddy currents reshape the spatial distribution of wave height in the Southern Ocean. Geophysical Research Letters, 53, e2025GL119526, doi:10.1029/2025GL119526.
17. 吴鸿轩, 岳澈, 李静凯*, 马昕, 马也驰, 李锐, 2026: 基于浮标观测与数值模拟的2023−2025年渤海冬季结冰期海浪特征分析. [J.]海洋学报, 48 (2): 29–39.
16. Wang Y. -Z, J. -K. Li*, J. -X Shi, Z. -H. Chen, and W. -Q Zhang, 2025: The influences of surface waves on a ten-year simulation of Arctic sea ice. Climate Dynamics, 63(10), doi: 10.1007/s00382-025-07845-y.
15. Wu H. -X, J. -K. Li*, Z. -H. Chen, and X. Ma, 2025: Observed surface wave variations in the background current field of the Kuroshio Extension. Ocean Dynamics, 75:14, doi: 10.1007/s10236-024-01655-2.
14. Cheng T. -Y, Z. -H. Chen*, J. -K. Li, Q. Xu, and H -Y. Yang, 2023: Characterizing the Effect of Ocean Surface Currents on Advanced Scatterometer (ASCAT) Winds Using Open Ocean Moored Buoy Data. Remote Sensing, 15, 4630, doi: 10.3390/rs15184630.
13. Li R., K. -J. Wu, J. -K. Li*, X. -H. Dong, J. Sun, W. -Q Zhang, and Q. -X. Liu, 2022: Relating a large-scale variation of waves in the Indian Ocean to the IOD. Journal of Geophysical Research: Oceans, 127, e2022JC018941, doi: 10.1029/2022JC018941.
12. 管长龙, 李静凯, 刘庆翔, 2022: 海冰对海浪影响研究综述. [J.]海洋科学进展, 40(4):11.
11. 王艺智, 李静凯*, 曾文华, 管长龙, 2022: 波弗特-楚科奇海夏秋季海浪极值波高特征分析. [J.]中国海洋大学学报, 52(11):11.
10. Zhang W. -Q*, D. -L. Zhao, D. -L Zhu, J. -K. Li, C. -L. Guan, and J. Sun, 2022: A Numerical Investigation of the Effect of Wave-Induced Mixing on Tropical Cyclones Using a Coupled Ocean-Atmosphere-Wave Model. Journal of Geophysical Research: Atmospheres, 127, e2021JD036290, doi: 10.1029/2021JD036290.
9. Cheng T. -Y, Z. -H. Chen*, J. -K. Li, X. Ma, Q. Wen, and L. -X. Wu, 2021: Surface wave height regulated by ocean currents: an observational perspective. Deep-Sea Research Part I, 179, 103666, doi: 10.1016/j.dsr.2021.103666.
8. Li R., K. -J. Wu*, J. -K. Li, S. Akhter, X. -H. Dong, J. Sun, and T. -G. Cao, 2021: Large-scale signals in the south Pacific wave fields related to ENSO. Journal of Geophysical Research: Oceans, 126, e2021JC017643, doi: 10.1029/2021JC017643.
7. LI J. -K.*, R. Li, Y. Ding, and Y. -R. Ma, 2021: Modeled Stokes Drift in the Marginal Ice Zones of the Arctic Ocean. Ocean Dynamics, 71(11):1-17, doi: 10.1007/s10236-021-01451-2.
6. LIU Q. -X, W. E. Rogers, A. Babanin*, J. -K. Li, and C. -L. Guan, 2020: Spectral Modeling of Ice-Induced Wave Decay. Journal of Physical Oceanography, doi: 10.1175/JPO-D-19-0187.1.
5. YUE C., J. -K. Li*, C. -L. Guan, X. -H. Lian, and K. -J. Wu, 2019: Surface wave simulation during winter with sea ice in the Bohai Sea. Journal of Oceanology and Limnology, doi: 10.1007/s00343-019-8253-3.
4. LI J. -K.*, Y. -R. Ma, Q. -X. Liu, W. -Q Zhang, and C. -L. Guan, 2019: Growth of wave height with retreating ice cover in the Arctic. Cold Regions Science and Technology, doi: 10.1016/j.coldregions.2019.102790.
3. LI J. -K., A. L. Kohout, M. J. Doble, P. Wadhams, C. -L. Guan, and H. H. Shen*, 2017: Rollover of apparent wave attenuation in ice covered seas. Journal of Geophysical Research: Oceans, doi: 10.1002/2017JC012978.
2. LI J. -K., S. Mondal, and H. H. Shen*, 2015: Sensitivity analysis of a viscoelastic parameterization for gravity wave dispersion in ice covered seas. Cold Regions Science and Technology, 120: 63-75, doi: 10.1016/j.coldregions.2015.09.009.
1. LI J. -K., A. L. Kohout, and H. H. Shen*, 2015: Comparison of wave propagation through ice covers in calm and storm conditions. Geophysical Research Letters, 42(14): 5935–5941, doi: 10.1002/2015GL064715.
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