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蔡华阳

领域:高端装备制造产业 学校:中山大学职称:副教授

河口海岸动力与工程应用、径潮相互作用下河口潮波传播及盐水入侵的过程与机制、三角洲水资源管理与水沙治理...

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教育背景

2004年09月-2008年07月,中山大学地理科学专业,理学学士

2008年09月-2010年07月,中山大学自然地理专业,理学硕士,导师:杨清书 教授

2010年09-2014年09月,荷兰代尔夫特理工大学(Delft University of Technology)水资源管理,工学博士,导师: Prof. Huub H. G. Savenije

工作经历

2014年10月-2015年09月,新加坡国立大学(National University of Singapore),博士后 2015年09月-2018年11月,中山大学海洋科学学院,“百人计划二期”人才引进,副教授 2018年11月-至今,中山大学海洋工程与技术学院,副教授

项目课题经历

主持项目

2020.01-2023.12,国家自然科学基金面上项目,61万,珠江河网横向汊道动力功能的自适应调整及稳态机制研究,项目号:51979296,在研,主持。 2018.01-2020.12,国家自然科学基金青年基金,25万,珠江磨刀门河口径潮动力异变格局下余水位的形成变化机制,项目号:51709287,在研,主持。 2017.05-2020.04,广东省自然科学基金-博士科研启动项目(纵向协同管理试点项目),10万,珠江磨刀门河口基于余水位的径潮动力非线性耦合机制研究,项目号:2017A030310321,在研,主持。 2017.05-2018.12,中山大学青年教师重点培育项目,30万,珠江磨刀门河口营养盐纵向输移动力机制, 项目号:17lgzd12,结题,主持。 2018.08-2020.07,河口海岸学国家重点实验室开放课题基金资助项目,8万,长江与珠江磨刀门河口余水位形成变化机制, 项目号:SKLEC-KF201809,在研,主持。 2016.07-2020.12,国家重点研发计划“水资源高效开发利用”专项,2400万,珠江河口与河网演变机制及治理研究,项目号:2016YFC0402600,在研,参与。 2016.04-2018.12,广东省水利科技创新项目,109.9万,珠江强咸潮区典型河口蓄淡水库战略储备关键技术研究,项目号:2016-20,在研,参与。

论文、成果、著作等

2019年

Cai, H., Yang, H., Liu, J., Niu, L., Ren, L., Liu, F., Ou, S.*, Yang, Q. (2019), Quantifying the impacts of human interventions on relative mean sea level change in the Pearl River Delta, China, Ocean and Coastal Management, 173, 52-64, https://doi.org/10.1016/j.ocecoaman.2019.02.007. Liu, F., Xie, R., Luo, X., Yang, L., Cai, H.*, Yang, Q. (2019), Stepwise adjustment of deltaic channels in response to human interventions and its hydrological implications for sustainable water managements in the Pearl River Delta, China, Journal of Hydrology, 573, 194-206,https://doi.org/10.1016/j.jhydrol.2019.03.063. Cai, H., Zhang, X., Guo, L., Zhang, M.*, Liu, F., and Yang, Q. (2019), Impacts of Three Gorges Dam's operation on spatial-temporal patterns of tide-river dynamics in the Yangtze River estuary, China, Ocean Science,15,583-599, https://doi.org/10.5194/os-15-583-2019. Cai, H., Savenije, H. H. G., Garel, E., Zhang, X., Guo, L., Zhang, M., Liu, F.*, and Yang, Q.: Seasonal behaviour of tidal damping and residual water level slope in the Yangtze River estuary: identifying the critical position and river discharge for maximum tidal damping, Hydrology and Earth System Sciences, 23, 2779–2794,https://doi.org/10.5194/hess-23-2779-2019. 杨昊,欧素英,姚鹏,郭晓娟,杨清书,蔡华阳*. 河口区斜压梯度对余水位的累积影响及其机制探讨.海洋学报,2019, 41(1):21-31. 唐雨佳,黄竞争,刘锋,蔡华阳*. 基于数据驱动模型的河流水温异变研究. 水文,2019,39(1):50-55. 张先毅,黄竞争,杨昊,欧素英,刘锋,蔡华阳*,杨清书. 长江河口潮波传播机制及阈值效应分析. 海洋与湖沼, 2019, 50(4):788-798. 张萍,谢梅芳,杨昊,蔡华阳*,欧素英,杨清书. 潮优型河口动力对水深变化的响应机制研究——以葡萄牙Guadiana河口为例. 热带海洋学报, 2019,已接收. 黄竞争,张先毅,吴峥,刘锋,蔡华阳*,杨清书. 长江感潮河段潮波传播变化特征及影响因素分析,海洋学报,2019,已接收.
2018年

Cai, H., Yang, Q., Zhang, Z., Guo, X., Liu, F., Ou, S.* (2018), Impact of river-tide dynamics on the temporal-spatial distribution of residual water levels in the Pearl River channel networks, Estuaries and Coasts, 41(7), 1885-1903, https://doi.org/10.1007/s12237-018-0399-2. Cai, H., Piccolroaz, S., Huang, J., Liu, Z., Liu, F.*, Toffolon, M. (2018), Quantifying the impact of the Three Gorges Dam on the thermal dynamics of the Yangtze River, Environmental Research Letters, 13, 054016, https://doi.org/10.1088/1748-9326/aab9e0. Cai, H., Toffolon, M., Savenije, H.H.G., Yang, Q., Garel, E.* (2018), Frictional interactions between tidal constituents in tide-dominated estuaries, Ocean Science, 14, 769-782, doi:10.5194/os-14-769-2018. Cai, H., Huang, J., Niu, L., Ren, L., Liu, F., Ou, S.*, Yang, Q. (2018), Decadal variability of tidal dynamics in the Pearl River Delta: spatial patterns, causes, and implications for estuarine water management, Hydrological Processes,32(25), 3805-3819, doi: 10.1002/hyp.13291. Liu, Z., Chen, X., Liu, F., Lin, K., He, Y., Cai, H. *(2018), Joint dependence between river water temperature, air temperature, and discharge in the Yangtze River: The role of the Three Gorges Dam, Journal of Geophysical Research-Atmosphere,doi: 10.1029/2018JD029078. Liu, F., Hu, S., Guo, X., Cai, H.*, Yang, Q. (2018), Recent changes in the sediment regime of the Pearl River (South China): Causes and implications for the Pearl River Delta, Hydrological Processes, 32(12), 1771-1785, https://doi.org/10.1002/hyp.11513. Hu Z., van der Wal, D., Cai, H.*, van Belzen, J., Bouma, T. J.* (2018), Dynamic equilibrium behaviour observed on two contrasting tidal flats from daily monitoring of bed-level changes, Geomorphology, 311, 114-126, https://doi.org/10.1016/j.geomorph.2018.03.025. Liu, F., Hu, S., Guo, X., Niu, L., Cai, H.*, Yang, Q. (2018), Impacts of estuarine mixing on vertical dispersion of polycyclic aromatic hydrocarbons (PAHs) in a tide-dominated estuary, Marine Pollution Bulletin, 131, 276-283. Garel, E., Cai, H.* (2018), Effects of tidal-forcing variations on tidal properties along a narrow convergent estuary, Estuaries and Coasts, 41(7), 1924-1942, https://doi.org/10.1007/s12237-018-0410-y. Niu, L., Cai, H.*,P.H.A.J.M.Van Gelder, Luo, P., Liu, F., Yang, Q. (2018). Dynamics of polycyclic aromatichydrocarbons (PAHs) in water column of Pearl River estuary (China): Seasonal pattern, environmental fate and source implication, Applied Geochemistry, 90:39-49, https://doi.org/10.1016/j.apgeochem.2017.12.014. 蔡华阳,杨昊,郭晓娟,杨清书,欧素英*. 珠江磨刀门河口径潮动力耦合条件下余水位的多时空尺度分析. 海洋学报,2018, 40(7):55-65.
2018年以前

Moon-Jin, P., Savenije, H. H. G., Cai, H.*,Eui, K. J., Nam, H. K. (2017), Progressive change of tidal wave characteristics from the eastern Yellow Sea to the Asan Bay, a strongly convergent bay in the west coast of Korea, Ocean Dynamics, 67:1137-1150, doi:10.1007/s10236-017-1078-8. Cai, H.*, Savenije, H.H.G., Gisen, J.I.A. (2016), A coupled analytical model for salt intrusion and tides in alluvial estuaries, Hydrological Sciences Journal, 61, 402-419, doi:10.1080/02626667.2015.1027206. Cai,H., Savenije,H.H.G., Jiang,C. Zhao L., Yang Q.* (2016), Analytical approach for determining the mean water level profile in an estuary with substantial fresh water discharge, Hydrology and Earth System Sciences,20,1-19,doi:10.5194/hess-20-1-2016. Cai,H.*, Toffolon, M., Savenije,H.H.G. (2016), An analytical approach to determining resonance in semi-closed convergent tidal channels, Coastal Engineering Journal, doi: 10.1142/S0578563416500091. Cai, H., Savenije, H.H.G., Zuo S. Jiang C., Chua V. *(2015), A predictive model for salt intrusion in estuaries applied to the Yangtze estuary, Journal of Hydrology, 529, 1336-1349, doi:10.1016/j.jhydrol.2015.08.050. Cai, H.*, Savenije, H.H.G., Toffolon, M. (2014), Linking the river to the estuary: influence of river discharge on tidal damping, Hydrology and Earth System Sciences, 18, 287-304, doi:10.5194/hess-18-287-2014. Cai,H.*, Savenije,H.H.G., Jiang,C. (2014), Analytical approach for predicting fresh water discharge in an estuary based on tidal water level observations, Hydrology and Earth System Sciences, 18, 4153-4168, doi:10.5194/hess-18-4153-2014. Cai, H., Savenije, H.H.G.* (2013), Asymptotic behavior of tidal damping in alluvial estuaries, Journal of Geophysical Research, 118, 1-16, doi:10.1002/2013JC008772. Cai, H.*, Savenije, H.H.G., Toffolon, M. (2012), A new analytical framework for assessing the effect of sea-level rise and dredging on tidal damping in estuaries, Journal of Geophysical Research, 117, C09023, doi:10.1029/2012JC008000. Cai, H.*, Savenije, H.H.G., Yang, Q., Ou, S., Lei, Y. (2012), Influence of river discharge and dredging on tidal wave propagation: Modaomen estuary case, Journal of Hydraulic Engineering, 138, 885-896, doi:10.1061/(ASCE)HY.1943-7900.0000594.
合作文章

Feng, A.*, Cai, H., You, Y. (2019). Freely floating body motion responses induced by wave and current in seabed conditions, Ocean Engineering, 172, 396-406. Liu, C., Yu, M.*, Cai, H., Chen, X. (2019), Recent changes in hydrodynamic characteristics of the Pearl River Delta during the flood period and associated underlying causes. Ocean and Coastal Management, 179, 104814. Liu, C., Yu, M.*, Jia, L., Cai, H., Chen, X. (2019), Impacts of physical alterations on salt transport during the dry season in the Modaomen Estuary, Pearl River Delta, China. Estuarine, Coastal and Shelf Science, in press. Luo, m., Reeve, D. E., Shao, S., Karunarathna, H., Lin, P.*, Cai, H.(2019), Consistent Particle Method simulation of solitary wave impinging on and overtopping a seawall, Engineering Analysis with Boundary Elements, 103, 160-171. Yang, L., Liu, F.*, Gong, W., Cai, H., Yu, F., Pan, H. (2019). Morphological response of Lingding Bay in the Pearl River Estuary to human intervention in recent decades. Ocean and Coastal Management, 176, 1-10. Zhang, M., Townend Ian, Cai, H., He, J., Mei, X.* (2018). The influence of seasonal climateon the morphology of the mouth-bar in the Yangtze Estuary, China. Continental Shelf Research, 153, 30-49. Gao, H., Cai, H., Duan, Z.* (2018), Understanding the impacts of catchment characteristics on the shape of the storage capacity curve and its influence on flood flows, Hydrology Research, 90-106, doi:10.2166/nh.2017.245. Feng, A., You, Y., Cai, H.(2018), An improved Rankine source panel method for three dimensional water wave problems, International Journal of Naval Architecture and Ocean Engineering, 11(1), 70-81, https://doi.org/10.1016/j.ijnaoe.2018.02.001. Xiao, Y., Wu, Z., Cai, H., Tang, H.* (2018), Suspended sediment dynamics in a well-mixed estuary: The role of high suspended sediment concentration (SSC) from the adjacent sea area, Estuarine, Coastal and Shelf Science, 209, 191-204. Chen Z.Y., W.P. Gong, Cai, H., Y.Z. Chen, H. Zhang (2017).Dispersal of the Pearl River plume over continental shelf in summer, Estuarine, Coastal and Shelf Science, 194, 252–262. Liu, F., Chen, H., Cai, H., Luo, X., Ou, S.*, Yang, Q. (2017), Impacts of ENSO on multi-scale variations in sediment discharge from the Pearl River to the South China Sea, Geomorphology, 293, 26-34. Li F, Lin Z-F, Wen J-S, WeiY-S, Gan H-Y, He H-J, Lin J-Q, Xia Z, Chen B-S*, Guo W-J, Tan C-S, Cai H. (2017). Risk assessment of trace metal-polluted coastal sediments on Hainan Island: A full scale set of 474 geographical locations covering the entire island. Marine Pollution Bulletin, 125:541-555. Zhang, M., Townend, I., Cai, H., Zhou, Y. *(2015), Seasonal variation of tidal prism and energy in the Changjiang River estuary: A numerical study, Chinese Journal of Oceanology and Limnology, doi:10.1007/s00343-015-4302-8. Zhang, M., Townend, I.*, Cai, H., Zhou, Y. (2015), Seasonal variation of river and tide energy in the Yangtze estuary, China, Earth Surface Processes and Landforms, doi:10.1002/esp.3790.

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