朱春燕

职称: 
助理研究员
研究专长: 
水沙动力、地貌演变、数值模拟
Email: 
cyzhu@sklec.ecnu.edu.cn
联系地址: 
上海市东川路500号,华东师范大学河口海岸学国家重点实验室(200241)
教育经历: 
2010.09-2014.06 武汉大学水利水电学院,港口、海岸及治河工程,学士
2014.09-2021.12 华东师范大学河口海岸学国家重点实验室,河口海岸学,博士
2015.09-2021.12 代尔夫特理工大学(荷兰),水利工程,博士
工作经历: 
2022.02-至今 华东师范大学河口海岸学国家重点实验室,博士后
科研项目: 

一、主持项目
1.国家自然科学基金青年基金项目:河口最大浑浊带含沙量对流域减沙的响应机制(42206169),2023-2025
2.上海市浦江人才计划项目:长江河口浑浊带生物地貌对减沙的响应机理(22PJD020),2022-2024
3.中国博士后科学基金面上项目:减沙影响下长江口悬沙浓度场变化机制研究(2022M721165),2022-
4.中国博士后科学基金特别资助(站中)项目:流域减沙的河口水下三角洲泥沙收支与交换规律(2023T160219),2023-

二、参与项目
1. 国家自然科学基金委员会,2021-2024,长江水科学研究联合重点项目:长江河口河势稳定性及人类驱动的转化机制研究(U2040216),骨干
2. 科技部,2016-2022,政府间(中荷)国家重点研发专项:应对转型中的河口三角洲(2016YFE0133700),708万,骨干
3. 国家自然科学基金委员会,2018-2022,重点项目:河口泥沙运动关键过程与滩槽格局转化研究(51739005),300万,骨干
4. 国家自然科学基金委员会,2019-2022,面上项目:河口近口段地貌的减沙失衡效应及再平衡研究(41876091),62万,参与
5. 国家自然科学基金委员会,2014-2018,地区合作与交流项目:高浊度河口航道回淤及滩槽系统响应研究 (51320105005),270万,参与
6. 上海市科委,2020-2023,社发研究项目:长江河口滩涂生态脆弱区监测与安全预警关键技术(20DZ1204700),参与
7. 上海市青年科技启明星计划, 2019-2022,长江河口三角洲演变跨尺度模拟与预测 (19QA1402900),参与
8. 上海市科委,2018-2020,重点研究资助项目:长江河口河势稳定及控制关键技术研究与应用, (18DZ1206400),参与
9. 上海市科委,2017-2019,重点研究资助项目:变化环境下长江口-杭州湾水沙响应和地貌模拟技术研究, (17DZ1204800),350万,参与

课程教学: 
Sediment dynamics (Prof. Han Winterwerp, Prof. Bas van Maren授课) 助教
学术论文: 

1.Zhu, C., van Maren, D.S., Guo, L., He, Q. and Wang, Z.B., 2023. Impact of reduced fluvial sediment supply on saltwater intrusion in the Yangtze Estuary. Earth's Future, 11(10), p.e2022EF003274.
2.Zhu, C., Zhang, Y., van Maren, D.S., Xie, W., Guo, L., Wang, X. and He, Q., 2023. Modulation of sediment load recovery downstream of Three Gorges Dam in the Yangtze River. Anthropocene Coasts, 6(1), p.2.
3.Zhu, C., van Maren, D.S., Guo, L., Lin, J., He, Q. and Wang, Z.B., 2022. Feedback effects of sediment suspensions on transport mechanisms in an estuarine turbidity maximum. Journal of Geophysical Research: Oceans, p.e2021JC018029.
4.Zhu, C., Guo, L., van Maren, D.S., Wang, Z.B. and He, Q., 2021. Exploration of decadal tidal evolution in response to morphological and sedimentary changes in the Yangtze Estuary. Journal of Geophysical Research: Oceans, 126(9), p.e2020JC017019.
5.Zhu, C., van Maren, D.S., Guo, L., Lin, J., He, Q. and Wang, Z.B., 2021. Effects of Sediment‐Induced Density Gradients on the Estuarine Turbidity Maximum in the Yangtze Estuary. Journal of Geophysical Research: Oceans, 126(5), p.e2020JC016927.
6.Zhu, C., Guo, L., van Maren, D.S., Tian, B., Wang, X., He, Q. and Wang, Z.B., 2019. Decadal morphological evolution of the mouth zone of the Yangtze Estuary in response to human interventions. Earth Surface Processes and Landforms, 44(12), pp.2319-2332.
7.Jiang, J., Xie, W., Zhang, N., Xu, Y., Zhu, C., Lin, J., Guo, L., Shen, J. and He, Q., 2024. Mechanism of rapid accretion-erosion transition in a complex hydrodynamic environment based on refined in-situ data. Frontiers in Marine Science, 11, p.1375085.
8.Guo, L., Zhu, C., Cai, H., Wang, Z.B., Townend, I. and He, Q., 2023. River flow induced nonlinear modulation of M4 overtide in large estuaries. Estuaries and Coasts, 46(4), pp.925-940.
9.Guo, L., Zhu, C., Xu, F., Xie, W., Van Der Wegen, M., Townend, I., ... & He, Q. 2022. Reclamation of Tidal Flats Within Tidal Basins Alters Centennial Morphodynamic Adaptation to Sea‐Level Rise. Journal of Geophysical Research: Earth Surface, 127(6), e2021JF006556.
10.Guo, L., Zhu, C., Xie, W., Xu, F., Wu, H., Wan, Y., Wang, Z., Zhang, W., Shen, J., Wang, Z.B. and He, Q., 2021. Changjiang Delta in the Anthropocene: Multi-scale hydro-morphodynamics and management challenges. Earth-Science Reviews, 223, p.103850.
11.Guo, L., Zhu, C., Wu, X., Wan, Y., Jay, D.A., Townend, I., Wang, Z.B. and He, Q., 2020. Strong inland propagation of low‐frequency long waves in river estuaries. Geophysical Research Letters, 47(19), p.e2020GL089112.
12.Guo, L., Su, N., Zhu, C. and He, Q., 2018. How have the river discharges and sediment loads changed in the Changjiang River basin downstream of the Three Gorges Dam?. Journal of Hydrology, 560, pp.259-274.
13.Lin, J., van Prooijen, B.C., Guo, L., Zhu, C., He, Q. and Wang, Z.B., 2021. Regime shifts in the Changjiang (Yangtze River) Estuary: The role of concentrated benthic suspensions. Marine Geology, 433, p.106403.
14.Guo, L., Xie, W., Xu, F., Wang, X., Zhu, C., Meng, Y., Zhang, W. and He, Q., 2021. A historical review of sediment export–import shift in the North Branch of Changjiang Estuary. Earth Surface Processes and Landforms.
15.Guo, L., Su, N., Townend, I., Wang, Z.B., Zhu, C., Wang, X., Zhang, Y. and He, Q., 2019. From the headwater to the delta: A synthesis of the basin-scale sediment load regime in the Changjiang River. Earth-Science Reviews, p.102900.
郭磊城, 朱春燕, 何青, Wang Zheng Bing, 万远扬, 2017. 长江河口潮波时空特征再分析, 海洋通报 36(6), 652-661.

学术专著: 
Zhu C. 2021. Anthropogenic effects on the hydro-morphological development of turbid estuaries. ProefschriftMaken.(出版英文博士论文专著)
获奖情况: 
入选2022年博士后国际交流计划引进项目
入选2022年上海市白玉兰人才计划青年项目
入选2022年上海市浦江(D类)人才项目
2022年华东师范大学优秀博士学位论文
2022年华东师范大学地球科学学部优秀博士学位论文
2021年第16届细颗粒泥沙国际学术会议(INTERCOH)Krone提名奖
2021年第7届河口海岸国际学术会议(ICEC)最佳青年科学家奖
2015年国家留学基金委国家建设高水平公派研究生项目奖学金