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李启杰

职称:博士后

邮箱:Qijie.Li@whu.edu.cn

个人网站:https://www.researchgate.net/profile/Qijie-Li

研究领域及招生方向:

研究领域: 城市水循环与水安全、计算流体力学、水力学及河流动力学

研究方向:城市洪涝机理及模型、城市防洪与减灾、城市水环境及生态、城市水资源、城市智慧水利

教育背景:

2008.09-2012.06  华中科技大学,船舶与海洋工程专业,本科

2008.09-2012.06  华中科技大学,德语专业,本科

2012.06-2015.09  海军工程大学,动力工程及工程热物理专业,硕士

2015.10-2019.04  Cardiff University,Civil Engineering,博士

工作经历:

2021年-至今 武汉大学,bat365中文官方网站,博士后

开设课程:

《港口规划与平面布置》(本科生)

《计算水动力学》(研究生)

代表性科研项目:

国家自然科学基金青年科学基金项目(2023.1~2025.12,主持)

中国博士后科学基金特别资助项目(2023~至今,主持)

中国博士后科学基金面上项目(2022~至今,主持)

中央高校青年教师资助项目(2022.1~2023.12,主持)

国家自然科学基金重点国际(地区)合作研究项目(2024-2028,参与)

国家自然科学基金联合基金项目(2023~2026,参与)

国家自然科学基金牛顿高级学者基金项目(2020~2022,参与)

国家杰出青年科学基金,(2018-2022,参与)

FLEXIS which is part-funded by the European Regional Development Fund (ERDF)(2016~2019, 参与)

学术兼职:

Member (Young Professionals), International Association of Hydro-environmental Engineering and Research (IAHR), 2022

奖励与荣誉:

Best Presentation Award for “Gregynog Conference”, UK, 2018

The First Prize of the 10th National Graduate Mathematics Modeling Competition (Team leader), 2013

National Scholarships of China, HUST, 2011

华中科技大学“校三好学生”,2011

代表性学术成果:

论文:

1. Li, Q., Xia, J.*, Dong, B., Liu, Y., Wang, X. (2023): Risk assessment of individuals exposed to urban floods. International Journal of Disaster Risk Reduction, 88, 103599.

2. Li, Q., Xia, J.*, Dong, B., Zhou, M. (2022): Near-field flow dynamics of grate inlets during urban floods. Physics of Fluids, 34(8), 87111. “Featured Article”

3. Li, Q., Xia, J.*, Xie, Z., Zhou, M., Deng, S. (2022): Hazard and vulnerability in urban inundated underground space: hydrodynamic analysis of human instability for stairway evacuation. International Journal of Disaster Risk Reduction, 2022,70, 102754.

4. Li, Q., Xia, J.*, Zhou, M., Deng, S., Zhang, H., Xie, Z. (2022): Physical Modelling of Energy Losses at Surcharged Three-way Junction Manholes in Drainage System. Water Science and Technology, 85(4): 1011-1026.

5. Li, Q., Xia, J.*, Yokoi, K.*, Omar, S. (2021): Boundary variation diminished conservative semi-Lagrangian method for both compressible and incompressible flows. Physics of Fluids, 33(11), 117114.

6. Li, Q.*, Yokoi, K.*, Xie, Z., Omar, S., Xue, J. (2021): A fifth-order high-resolution shock-capturing scheme based on modified weighted essentially non-oscillatory method and total boundary variation diminishing algorithm for compressible flows and compressible two-phase flows. Physics of Fluids, 33(5), 056104.

7. Li, Q., Omar, S., Deng, X., Yokoi, K.*. (2017): Constrained Interpolation Profile Conservative Semi-Lagrangian Scheme Based on Third-Order Polynomial Functions and Essentially Non-Oscillatory (CIP-CSL3ENO) Scheme, Communications in Computational Physics, 22(3): 765-788.

8. Li, Q., Zhang, Z.*, Gu, J., Wang, C., Li, B., Gao, L. (2013): Steady Motions Performance of an Underwater Glider with Pump on the Vertical Plane. Applied Mechanics and Materials, 387, 310-313.

9. Li, J., Liu, Y., Li, Q.*, (2022): Intelligent fault diagnosis of rolling bearings under imbalanced data conditions using attention-based deep learning method. Measurement, 189, 110500.

10. Li, J., Liu, Y., Li, Q.*, (2022): Generative Adversarial Network and Transfer Learning Based Fault Detection for Rotating Machinery with Imbalance Data Condition. Measurement Science and Technology, 33, 045103.


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