齐伟

邮箱:qiw@gdut.edu.cn

基本信息

齐伟,广东工业大学生态环境与资源学院教授。专注于极端洪水与风险适应,主要研究不同尺度的极端洪水事件和水文过程的演变、影响以及适应策略。构建了全球尺度水文模型(WEB-DHM-SG)、中国陆地水文模拟系统(CNHM)和中国国家尺度洪水风险实时预报系统(CNFF),荣获深圳市孔雀计划海外高层次人才、深圳市科技进步一等奖、中国发明协会一等奖等奖项。研究成果得到了Nature、Science、NatureGeoscience、NatureWater、NatureCommunications、PNAS等权威刊物的正面引用和认可。担任水文、地学、环境等领域多个顶刊的审稿人。

研究方向

1.极端洪水与风险适应

2.全球水文模型(WEB-DHM-SG)研发与应用

3.中国陆地水文模拟系统(CNHM)研发与应用

4.中国国家尺度洪水风险实时预报系统(CNFF)研发与应用

5.特殊洪水事件风险研究,如溃坝洪水、决堤洪水、融雪(冰)洪水

 

教育经历

2010-2016,博士,水文学及水资源,大连理工大学,导师:周惠成、张弛(长江、杰青、大连理工大学副校长)

2013-2015,国家公派留学中英联合培养博士生,工程、数学与物理学院,水系统研究中心,埃克塞特大学(英国)(导师:伏广涛)

2006-2010,学士,水利水电工程,郑州大学

工作经历

2022.08-2024.10,南方科技大学,环境科学与工程学院,研究副教授(副研究员)

2019.06-2022.07,南方科技大学,环境科学与工程学院,研究助理教授(副研究员)

2017.04-2019.06,南方科技大学(与武汉大学联培),博士后,导师:夏军(中国科学院院士)、刘俊国(杰青、华北水利水电大学校长)

2016.08-2017.03,南方科技大学,访问学者

国际合作

国际部门间影响模式比较计划ISIMIP网站介绍了由齐伟博士负责的全球水文模型WEB-DHM-SG的模拟成果:https://www.isimip.org/impactmodels/details/208/

主要科研成果

1.Wei Qi, Chi Zhang, Guangtao Fu, Huicheng Zhou. Imprecise probabilistic estimation of design floods with epistemic uncertainties.Water Resources Research, 2016,52. DOI: 10.1002/2015WR017663.TOP, JCRQ1, SCI.

2.Wei Qi, Chi Zhang, Guangtao Fu, Huicheng Zhou.Quantifying dynamic sensitivity of optimization algorithm parameters to improve hydrological model calibration.Journal of Hydrology, 2016, 533, 213-223. DOI: 10.1016/j.jhydrol.2015.11.052.TOP, JCRQ1, SCI.

3.Wei Qi, Chi Zhang, Guangtao Fu, Huicheng Zhou. Global Land Data Assimilation System data assessment using a distributed biosphere hydrological model,Journal of Hydrology, 2015, 528, 652-667. DOI: 10.1016/j.jhydrol.2015.07.011.TOP, JCRQ1, SCI.

4.Wei Qi. A non-stationary cost-benefit analysis approach for extreme flood estimation to explore the nexus of ‘Risk, Cost and Non-stationarity’.Journal of Hydrology, 2017, 554, 128-136.DOI: 10.1016/j.jhydrol.2017.09.009.TOP, JCRQ1, SCI.

5.Wei Qi, Chi Zhang, Guangtao Fu, Chris Sweetapple, Huicheng Zhou. Evaluation of global fine-resolution precipitation products and their uncertainty quantification in ensemble discharge simulations,Hydrology and Earth System Science, 2016, 20, 903-920. DOI: 10.5194/hess-20-903-2016.TOP, JCRQ1, SCI.

6.Wei Qi, Chi Zhang, Guangtao Fu, Huicheng Zhou,Junguo Liu.Quantifying uncertainties in extreme flood predictions under climate change for a medium-sized basin in northeast China.Journal of Hydrometeorology,2016, 17(12), 3099-3112. DOI: 10.1175/JHM-D-15-0212.1.JCRQ1, SCI.

7.Chi Zhang,Yu Li,Jinggang Chu,Guangtao Fu,Rong Tang,Wei Qi. Use of many-objective visual analytics to analyze water supply objective tradeoffs with water transfer.Journal of Water Resources Planning and Management, 2017, 143(8).DOI: 10.1061/(ASCE)WR.1943-5452.0000800.JCRQ1, SCI.

8.Wei Qi, Junguo Liu, Hong, Yang, Sweetapple, Chris. An ensemble-based dynamic Bayesian averaging approach for discharge simulations using multiple global precipitation products and hydrological models.Journal of Hydrology, 2018, 558, 405-420. DOI: 10.1016/j.jhydrol.2018.01.026.TOP, JCRQ1, SCI.

9.Wei Qi, Junguo Liu. A non-stationary cost-benefit based bivariate extreme flood estimation approach.Journal of Hydrology, 2018, 557, 589-599. DOI: 10.1016/j.jhydrol.2017.12.045.TOP, JCRQ1, SCI.

10.Xueping Zhu*, Chi Zhang,Wei Qi*, Wenjun Cai, Xuehua Zhao, Xueni Wang. Multiple Climate Change Scenarios and Runoff Response in Biliu River.Water, 2018, 10(2): 126. DOI: 10.3390/w10020126.JCRQ2, SCI.

11.Wei Qi, Junguo Liu, Deliang Chen. Evaluations and Improvements of GLDAS2.0 and GLDAS2.1 Forcing Data's Applicability for Basin Scale Hydrological Simulations in the Tibetan Plateau.Journal of Geophysical Research: Atmospheres, 2018,123.DOI:10.1029/2018JD029116.TOP, Nature Index, SCI.

12.Xin Jiang,Yuyu Liu,Shiguo Xu,Wei Qi. A Gateway to Successful River Restorations: A Pre-Assessment Framework on the River Ecosystem in Northeast China.Sustainability, 2018, 10(4), 1029.DOI: 10.3390/su10041029.JCRQ2, SCI.

13.Wei Qi,Junguo Liu,Felix Leung.A framework to quantify impacts of elevated CO2 concentration, global warming and leaf area changes on seasonal variations of water resources on a river basin scale.Journal of Hydrology, 2019, 570, 508-522.DOI:10.1016/j.jhydrol.2019.01.015.TOP, JCRQ1, SCI.

14.Wei Qi, Chi Zhang, Guangtao Fu, Chris Sweetapple, Yanli Liu. Impact of robustness of hydrological model parameters on flood prediction uncertainty.Journal of Flood Risk Management, 2019, 12(S1), e12488.DOI: 10.1111/jfr3.12488.JCRQ1, SCI.

15.Xueping Zhu, Aoran Zhang, Penglin Wu,Wei Qi, Guangtao Fu, Guantao Yue, Xiaoqing Liu. Uncertainty Impacts of Climate Change and Downscaling Methods on Future Runoff Projections in the Biliu River Basin.Water, 2019, 11(10), 2130. DOI: 10.3390/w11102130.JCRQ2, SCI.

16.WeiQi, Junguo Liu. Studies on changes in extreme flood peaks resulting from land-use changes need to consider roughness variations.Hydrological Sciences Journal, 2019, 64(16), 2015-2024. DOI:10.1080/02626667.2019.1669039.JCRQ2, SCI.

17.Wei Qi,Junguo Liu, Jun Xia, Deliang Chen. Divergent sensitivity of surface water and energy variables to precipitation product uncertainty in the Tibetan Plateau.Journal of Hydrology, 2020, 581. DOI: 10.1016/j.jhydrol.2019.124338.TOP, JCRQ1, SCI.

18.WeiQi, Junguo Liu, HongYang, Xueping Zhu, Yong Tian, Xin Jiang, Xu Huang, Lian Feng. Large uncertainties in runoff estimations of GLDAS versions 2.0 and 2.1 in China.Earth and Space Science, 2020, 7(1).DOI: 10.1029/2019EA000829.JCRQ2, SCI.

19.Ying Meng, Junguo Liu, Sylvain Leduc, Sennai Mesfun, Florian Kraxner, Ganquan Mao,Wei Qi, Zifeng Wang. Hydropower Production Benefits More From 1.5 °C than 2 °C Climate Scenario.Water Resources Research, 2020, 56(5). DOI:10.1029/2019WR025519.TOP, JCRQ1, SCI.

20.Wei Qi, Lian Feng, Junguo Liu, Hong Yang. Snow as an important natural reservoir for runoff and soil moisture in Northeast China.Journal of Geophysical Research: Atmospheres, 2020, 125(22). DOI:10.1029/2020JD033086.TOP, Nature Index,SCI.

21.Xuehui Pi, Lian Feng, Weifeng Li, Junguo Liu, Xinging Kuang, Kun Shi,Wei Qi, Deliang Chen, Jing Tang. Chlorophyll-a concentrations in 82 large alpine lakes on the Tibetan Plateau during 2003–2017: temporal–spatial variations and influencing factors.International Journal of Digital Earth, 2021, 14(6), 1-22. DOI:10.1080/17538947.2021.1872722.JCRQ1, SCI.

22.Xinchi Wang, Lian Feng, Luke Gibson,Wei Qi, Junguo Liu, Yi Zheng, Jing Tang, Zhenzhong Zeng, Chunmiao Zheng. High-Resolution Mapping of Ice Cover Changes in Over 33,000 Lakes Across the North Temperate Zone.Geophysical Research Letters, 2021, 48, e2021GL095614.TOP, Nature Index, SCI.

23.Wei Qi, Lian Feng, Hong Yang, Junguo Liu. Spring and summer potential flood risk in Northeast China.Journal of Hydrology: Regional Studies, 2021, 100951.JCRQ1, SCI.

24.Wei Qi, Lian Feng, Hong Yang, Xueping Zhu, Yuyu Liu, Junguo Liu. Weakening flood, intensifying hydrological drought severity and decreasing drought probability in Northeast China.Journal of Hydrology: Regional Studies, 2021, 100941.JCRQ1, SCI.

25.Wei Qi, Junguo Liu, Hong Yang, Deliang Chen, Lian Feng. Assessments and Corrections of GLDAS2.0 Forcing Data in Four Large Transboundary Rivers in the Tibetan Plateau and Northeast China.Earth and Space Science, 2022, 9, e2020EA001576.JCRQ2, SCI.

26.Wei Qi, Lian Feng, Hong Yang, Junguo Liu. Warming winter, drying spring and shifting hydrological regimes in Northeast China under climate change.Journal of Hydrology, 2022, 606, 127390.TOP, JCRQ1, SCI.

27.Wei Qi, Lian Feng, Hong Yang, Junguo Liu, Yi Zheng, Haiyun Shi, Lei Wang, Deliang Chen. Economic growth dominates rising potential flood risk in the Yangtze River and benefits of raising dikes from 1991 to 2015.Environmental Research Letters, 2022, 17, 034046. DOI: 10.1088/1748-9326/ac5561.TOP,JCRQ1, SCI.

28.Wei Qi, Lian Feng, Hong Yang, Junguo Liu. Increasing concurrent drought probability in global main crop production countries.Geophysical Research Letters,2022, 49(6). DOI: 10.1029/2021GL097060.TOP, Nature Index, SCI.

29.WeiQi, Lian Feng, Xingxing Kuang, Chunmiao Zheng, Junguo Liu, Deliang Chen, Yong Tian,Yingying Yao.Divergentandchanging importance of glaciers and snow as natural water reservoirs in the eastern and southern Tibetan Plateau.Journal of Geophysical Research: Atmospheres, 2022. DOI:10.1029/2021JD035888.TOP, Nature Index, SCI.

30.Xinchi Wang, Lian Feng,Wei Qi, Xiaobin Cai, Yi Zheng, Luke Gibson, Jing Tang, Xiao-peng Song, Junguo Liu, Chunmiao Zheng, Brett A. Bryan. Continuous Loss of Global Lake Ice Across Two Centuries Revealed by Satellite Observations and Numerical Modeling.Geophysical Research Letters. 2022, 49: e2022GL099022.TOP, Nature Index, SCI.

31.Wei Qi, Lian Feng, Junguo Liu, Hong Yang. Growing hydropower potential in China under 1.5 °C and 2.0 °C global warming and beyond.Environmental Research Letters. 2022, 114049.TOP,JCRQ1, SCI.

32.Xueping Zhu*, Yu Zhang,Wei Qi*, Yankuan Liang, Xuehua Zhao, Wenjun Cai, Yang Li. Flood forecasting methods for a semi-arid and semi-humid area in Northern China.Journal of Flood Risk Management. 2022, 15: e12831.JCRQ2, SCI.

33.Guan T., Liu Y., Sun Z., Zhang J., Chen H., Wang G., Jin J., Bao Z.,Qi Wei. A Framework to Identify the Uncertainty and Credibility of GCMs for Projected Future Precipitation: A Case Study in the Yellow River Basin, China.Frontiers in Environmental Science, 2022. 10.JCRQ2, SCI.

34.Wei Qi, L. Feng, J. Liu, X. Zhu, Y. Liu, X. Kuang and Z. Xie. China’s growing human displacement risk caused by floods under 1.5 °C and 2.0 °C global warming and beyond.Environmental Research Letters. 2023, 18: 124035.TOP,JCRQ1, SCI.

35.Xueping Zhu, Jie Liu,Wei Qi*, Xuerui Gao, Xuehua Zhao, Bowen Zhu. Future changes and distribution of water resources in China under global warming levels of 1.5–4.5 °C.Journal of Hydrology: Regional Studies.2024.JCRQ1, SCI.

36.Heinicke, S., Volkholz, J., Schewe, J., Gosling, S.N., Müller Schmied, H., Zimmermann, S., Mengel, M., Sauer, I.J., Burek, P., Chang, J., Kou-Giesbrecht, S., Grillakis, M., Guillaumot, L., Hanasaki, N., Koutroulis, A., Otta, K.,Wei Qi, Satoh, Y., Stacke, T., Yokohata, T., Frieler, K. Global hydrological models continue to overestimate river discharge. Environmental Research Letters, 19(7): 074005. 2024. DOI:10.1088/1748-9326/ad52b0.TOP,JCRQ1, SCI.

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