1.Li, Y.T., Cai,Y.P*., Fu, Q., Zhang, X.D., Wan, H., Yang, Z.F. Dynamics of LULC considering ecosystem services for a dense-population watershed based on a hybrid dual-subject agent and cellular automaton modeling approach. Engineering. 2024. (In Press).
2.Li, Y.T., Cai,Y.P*., Chen, X.H., Xu, Z.H., Fu, Q. An integrated modeling approach for coupled risk management of regional Blue and Green water under changing land-use patterns. Journal of Hydrology. 2023, 625:129958.
3.Li, Y.T., Cai,Y.P*., Wang, X., Li, C.H., Liu, Q., Sun, L., Fu, Q. Classification analysis of blue and green water quantities for a large-scale watershed of southwest China. Journal of Environmental Management, Volume 321,2022,115894.
4.Li, Y.T., Cai,Y.P*., Fu, Q., Wang, X., Li, C.H., Liu, Q., Xu, R.H. A Stochastic Modeling Approach for Analyzing Water Resources Systems. Journal of Contaminant Hydrology, Volume 242, 2021, 103865.
5.Li, Y.T., Cai,Y.P*., Fu, Q., Gong, X.L. Flooding prediction for a rainy, dense-population river basin of central China.南水北调与水利科技(中英文), 2021,19(4): 689-699.
6.Li, Y.T., Cai,Y.P*., Li, Zoe., Wang, X., Fu, Q., Liu, D., Sun, L., Xu, R.H. An approach for runoff and sediment nexus analysis under multi-flow conditions in a hyper-concentrated sediment river, Southwest China, Journal of Contaminant Hydrology, Volume 235,2020,103702.