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个人简介

学习经历 中国海洋大学 青岛 学士 (海洋科学) 2007.09-2011.07 中国海洋大学 青岛 博士 (物理海洋学) 2011.09-2016.12 斯威本科技大学(Swinburne University of Technology) 墨尔本 联合培养 2014.10-2016.09 工作经历 墨尔本大学(University of Melbourne) 墨尔本 博士后 2017.02-2021.01 中国海洋大学 青岛 副教授 2021.03- 中国海洋大学 青岛 博导 2024.11- 科研项目 国家自然科学基金面上项目,2026/01-2029/12,64.52万,主持 山东省优秀青年科学基金项目(海外),2023/01-2025/12,60万,主持 山东省泰山学者青年专家,2022/07-2025/06,主持 国家重点研发计划重点专项,2022/12-2025/11,185万,参加 国家自然科学基金青年项目,2022/01-2024/12,30万,主持 教学经历 2024.08 至今,中国海洋大学,海洋数学基础及其应用(研究生课程;16课时) 2024.02 至今,中国海洋大学,数值方法、海洋要素计算与模式(本科生课程;24课时) 2021.09 至今,中国海洋大学,计算方法(本科生课程;64课时) 2022.09-2022.10,中国海洋大学,高等描述性物理海洋学(英文研究生课程) 2020.10,墨尔本大学,Port Access & Navigation (CVEN90068) 2020.07,墨尔本大学,Port Structural Design (CVEN90067)

研究领域

海浪模式开发与应用 非线性四波相互作用 浪流相互作用 浪冰相互作用 卫星高度计观测 海浪气候分析 台风浪

近期论文

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1. Dong, X., Q.Liu ∗ , S. Zieger, I. Young, R. Li, A. Meucci, J. Sun, K. Wu, and A. Babanin, 2025: A 45-year high-resolution unstructured wave hindcast for the Australian coast: Validation and climatological insights. Coastal Engineering , 104892. 2. Dong, X., Q.Liu ∗ , S. Zieger, A. Alberello, A. Abdolali, J. Sun, K. Wu, and A. Babanin, 2025: Numerical simulations of ocean surface waves along the Australian coast with a focus on the great barrier reef. Geoscientific Model Development , 18 (17), 5801-5823. 3. Cao, L., Q. Liu ∗ , J. Voermans, A. Alberello, and A. Babanin, 2025: Retrieval of ocean surface wave parameters from ICESat-2 altimetry: validation and limitations. Ocean Dynamics , 75, 60. 4. Li, S. ∗ , A. Babanin, Q. Liu ∗ , J. Liu, R. Li, and J. Voermans, 2025: Effect of ocean surface waves on sea ice using coupled wave-ice-ocean modelling. Ocean Modelling , 196, 102540. 5. Li, S. ∗ , A. Babanin, Q.Liu ∗ , and C. Guan, 2024: Evaluation of wave-based parameterizations of air-sea CO 2 gas transfer over global oceans. Ocean Modelling , 192, 102446. 6. Liu, Q. ∗ , I. Young, S. Zieger, A. Ribal, S. Long, X. Dong, Z. Song, C. Guan and A. Babanin, 2023: On global wave height climatology and trends from multiplatform altimeter measurements and wave hindcast. Ocean Modelling , 186, 102264. 7. Liu,Q. , A. V. Babanin ∗ , W. E. Rogers, S. Zieger, I. R. Young, J.-R. Bidlot, T. Durrant, K. Ewans, C. Guan, C. Kirezci, G. Lemos, K. MacHutchon, I.-J. Moon, H. Rapizo, A. Ribal, A. Semedo, and J. Wang, 2021: Global wave hindcasts using the observation-based source terms: Description and validation. Journal of Advances in Modeling Earth Systems , 13 (8), e2021MS002493. 8. Liu, Q. ∗ , O. Gramstad, and A. Babanin, 2021: Kinetic equations in a third-generation spectral wave model. Journal of Fluid Mechanics , 910, A50. 9. Liu, Q. ∗ , W. E. Rogers, A. Babanin, J. Li, and C. Guan, 2020: Spectral Modeling of Ice-Induced Wave Decay. Journal of Physical Oceanography , 50 (6), 1583-1604. 10. Liu, Q. ∗ , W. E. Rogers, A. V. Babanin, I. R. Young, L. Romero, S. Zieger, F. Qiao, and C. Guan, 2019: Observation-Based Source Terms in the Third-Generation Wave Model WAVEWATCH III: Updates and Verification. Journal of Physical Oceanography , 49 (2), 489-517. 11. Liu, Q. ∗ , A. V. Babanin, Y. Fan, S. Zieger, C. Guan, and I.-J. Moon, 2017: Numerical simulations of ocean surface waves under hurricane conditions: assessment of existing model performance. Ocean Modelling , 118, 73-93. 12. Liu, Q. , A. V. Babanin ∗ , S. Zieger, I. R. Young, and C. Guan, 2016b: Wind and Wave Climate in the Arctic Ocean as Observed by Altimeters. Journal of Climate , 29 (22), 7957-7975. 13. Liu, Q. , A. V. Babanin, C. Guan ∗ , S. Zieger, J. Sun, and Y. Jia, 2016a: Calibration and Validation of HY-2 Altimeter Wave Height. Journal of Atmospheric and Oceanic Technology , 33 (5), 919-936. 14. Voermans, J. J. ∗ , A. D. Fraser, J. Brouwer, M. H. Meylan, Q. Liu , and A. V. Babanin, 2025: Finely resolved along-track wave attenuation estimates in the antarctic marginal ice zone from Icesat-2. The Cryosphere , 19 (8), 3381-3395. 15. Sun, X., J. Sun, W. Zhang ∗ , and Q. Liu , 2025: Retracing the Decaying Swell Across the Pacific with CFOSAT SWIM Data. IEEE Transactions on Geoscience and Remote Sensing, 63, 1-11. 16. Alberello, A. ∗ , E. I. Pru, Q. Liu , and F. De Santi, 2024: Evolution of wave directional properties in sea ice. Ocean Modelling , 188 , 102305. 17. Xu, X. ∗ , J. Voermans, W. Zhang, B. Zhao, F. Qiao, Q. Liu , I. Moon, I. Janekovic, T. Waseda, and A. Babanin, 2023: Tropical cyclone modeling with the inclusion of wave- coupled processes: Sea spray and wave turbulence. Geophysical Research Letters , 50 (24), e2023GL106536. 18. Li, J., S. Zhang ∗ , Q. Liu , X. Yu, and Z. Zhang, 2023: Design and evaluation of an efficient high-precision ocean surface wave model with a multiscale grid system (MSG_Wav1.0). GeoscientificModel Development , 16 (21), 6393-6412. 19. Liu, J., A. Meucci, Q. Liu , A. V. Babanin, D. Ierodiaconou, X. Xu, and I. R. Young ∗ , 2023: A high-resolution wave energy assessment of south-east Australia based on a 40-year hindcast. Renewable Energy , 118943. 20. Xu, X. ∗ , J. Voermans, T. Waseda, I.-J. Moon, Q. Liu , and A. V. Babanin, 2023: The impact of spume droplets induced by the bag-breakup mechanism on tropical cyclone modeling. Frontiers in Marine Science , 10, 1133149. 21. Zhang, W., J. Zhang, Q. Liu , J. Sun ∗ , R. Li, and C. Guan, 2023: Effects of surface wave-induced mixing and wave-affected exchange coefficients on tropical cyclones. Remote Sensing , 15 (6), 1594. 22. Kousal, J., K. J. Walsh ∗ , Z. Song, Q. Liu , F. Qiao, and A. V. Babanin, 2023: Surface wave mixing modifies projections of 21st century ocean heat uptake. Atmosphere , 14 (3), 532. 23. Li, R., K. Wu, J. Li ∗ , X. Dong, J. Sun, W. Zhang, and Q. Liu , 2022: Relating a large-scale varia- tion of waves in the indian ocean to the IOD. Journal of Geophysical Research: Oceans , 127 (10), e2022JC018941. 24. Xu, X. ∗ , J. J. Voermans, I.-J. Moon, Q. Liu , C. Guan, and A. V. Babanin, 2022: Sea spray impacts on tropical cyclone olwyn using a coupled atmosphere-ocean-wave model. Journal of Geophysical Research: Oceans , 127 (8), e2022JC018557. 25. Kousal, J. ∗ , J. J. Voermans, Q. Liu , P. Heil, and A. V. Babanin, 2022: A two-part model for wave- sea ice interaction: Attenuation and break-up. Journal of Geophysical Research: Oceans , 127 (5), e2022JC018571. 26. Liu, J., A. Meucci, Q. Liu , A. V. Babanin, D. Ierodiaconou, and I. R. Young ∗ , 2022: The wave climate of bass strait and south-east Australia. Ocean Modelling , 101980. 27. Voermans, J. J. ∗ , Q.Liu , A. Marchenko, J. Rabault, K. Filchuk, I. Ryzhov, P. Heil, T. Waseda, T. Nose, T. Kodaira, J. Li, and A. V. Babanin, 2021: Wave dispersion and dissipation in landfast ice: comparison of observations against models. The Cryosphere , 15 (12), 5557-5575. 28. Xu, X. ∗ , J. J. Voermans, Q. Liu , I.-J. Moon, C. Guan, and A. V. Babanin, 2021: Impacts of the wave- dependent sea spray parameterizations on air-sea-wave coupled modeling under an idealized tropical cyclone. Journal of Marine Science and Engineering , 9 (12). 29. Li, J. ∗ , A. V. Babanin, Q. Liu , J. J. Voermans, P. Heil, and Y. Tang, 2021: Effects of wave-induced sea ice break-up and mixing in a high-resolution coupled ice-ocean model. Journal of Marine Science and Engineering , 9 (4), 365. 30. Ribal, A. ∗ , A. V. Babanin, S. Zieger, and Q. Liu , 2020: A high-resolution wave energy resource assess- ment of indonesia. Renewable Energy , 160, 1349-1363. 31. Young, I. R. ∗ , E. Fontaine, Q. Liu , and A. V. Babanin, 2020: The Wave Climate of the Southern Ocean. Journal of Physical Oceanography , 50 (5), 1417-1433. 32. Greenslade ∗ , D., M. Hemer, A. Babanin, R. Lowe, and I. Turner et al., 2020: 15 priorities for wind- waves research: An australian perspective. Bulletin of the American Meteorological Society , 101 (4), E446-E461. 33. Li, J. ∗ , Y. Ma, Q. Liu , W. Zhang, and C. Guan, 2019: Growth of wave height with retreating ice cover in the arctic. Cold Regions Science and Technology , 164, 102790. 34. Zhang, H. ∗ , A. V. Babanin, Q. Liu , and A. Ignatov, 2019: Cool skin signals observed from Advanced Along-Track Scanning Radiometer (AATSR) and in situ SST measurements. Remote Sensing of Envi- ronment , 226, 38-50. 35. Jiang, H. ∗ , A. V. Babanin, Q. Liu , J. E. Stopa, B. Chapron, and G. Chen, 2017: Can contemporary satellites estimate swell dissipation rate? Remote Sensing of Environment , 201, 24-33. 36. Pereira, H. P. P. ∗ , N. Violante-Carvalho, I. C. M. Nogueira, A. V. Babanin, Q. Liu , U. F. de Pinho, F. Nascimento, and C. E. Parente, 2017: Wave observations from an array of directional buoys over the southern brazilian coast. Ocean Dynamics , 67 (12), 1577-1591. 37. Thomson, J. ∗ , Y. Fan, S. Stammerjohn, J. Stopa, W. E. Rogers, F. Girard-Ardhuin, F. Ardhuin, H. Shen, W. Perrie, H. Shen, S. Ackley, A. V. Babanin, Q. Liu , P. Guest, T. Maksym, P. Wadhams, C. Fairall, O. Persson, M. Doble, H. Graber, B. Lund, V. Squire, J. Gemmrich, S. Lehner, B. Holt, M. Meylan, J. Brozena, and J. Bidlot, 2016: Emerging trends in the sea state of the Beaufort and Chukchi seas. Ocean Modelling , 105, 1-12. 38. Liu, Q. , and A. Babanin, 2021: Product user guide for the WW3-ST6 global wave hindcasts.(Tech. Rep.). University of Melbourne. Retrieved from https://doi.org/10.5281/zenodo.4497717 , 2021. 39. The WAVEWATCH III®Development Group (WW3DG), 2019: User manual and system documenta- tion of WAVEWATCH III®version 6.07. Tech. Note 329, NOAA/NWS/NCEP/MMAB, College Park, MD, USA, 326 pp.+Appendices.

学术兼职

2024.09 至今,WISE Zoominars 委员会成员 2021.02 至今,墨尔本大学,Principal Honorary Fellow

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