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1. Ye, C., Xu, Z., Lei, X., Zhang, R., Chu, Q., Li, P., Ban, C. (2022). Assessment of the impact of urban water system scheduling on urban flooding by using coupled hydrological and hydrodynamic model in Fuzhou City, China. Journal of Environmental Management, 321, 115935.
2. Ye, C., Xu, Z., Lei, X., Liao, W., Ding, X., Liang, Y. (2022). Assessment of urban flood risk based on data-driven models: A case study in Fuzhou City, China. International Journal of Disaster Risk Reduction, 103318.
3. Ye, C., Liao, W., Xu, Z., Li, X., & Shu, X. (2025). An enhanced framework for simulating urban pluvial flooding: Integrating nested watersheds and urban areas with spatial heterogeneity. Journal of Hydrology, 132875.
4. Ye, C., Liao, W., Xu, Z., & Shu, X. (2025). An innovative framework to assess the human-water relationship in complex pluvial flooding system at urban meso-scales. Journal of Hydrology, 132876.
5. Ye, C., Xu, Z., Liu, K., Wang, M., Shu, X. (2025). Agent-based intelligent real-time control for pluvial flood mitigation at urban scale. Journal of Hydrology.
6. Ye, C., Shu, X., Xu, Z., & Li, X. (2025). A novel framework for assessing pluvial flooding resilience based on system dynamics approach at urban scale. Journal of Cleaner Production, 145852.
7. Ye, C., Xu, Z., Liao, W., Li, X., & Shu, X. (2025). Capturing Urban Pluvial River Flooding Features Based on the Fusion of Physically Based and Data-Driven Approaches. Sustainability, 17(6), 2524.
8. Ye, C., Xu, Z., Liao, W., Li, X., & Shu, X. (2025). Exploring the Performance and Interpretability of an Enhanced Data-Driven Model to Assess Surface Flooding Susceptibility. Sustainability, 17(7), 3065.
9. Shu, X., Ye, C.*, Xu, Z., Liao, R., Song, P., & Zhang, S. (2025). An Enhanced Framework for Assessing Pluvial Flooding Risk with Integrated Dynamic Population Vulnerability at Urban Scale. Remote Sensing, 17(4), 654.
10. Shu, X, Ye, C.*, Xu, Z., Liao, R., & Zhang, S. (2025). A multiscale physically-based approach to urban flood risk assessment using ABM and multi-source remote sensing data. International Journal of Disaster Risk Reduction, 105332.
11. Shu, X., Ye, C.*, & Xu, Z. (2025). An Integrated Framework for Pluvial Flooding and Population Vulnerability Assessment Based on agent-based Approach with Urbanization Forecasting at Urban Scale. Water Resources Management, 1-27.
12. Shu, X., Ye, C.*, Xu, Z. (2025). An Uncertainty Analysis of Low-Impact Development Based on the Hydrological Process with Invariant Parameters and Equivalent Effects: Supporting Sustainable Urban Planning. Sustainability, 17(6), 2587.
13. 叶陈雷, 徐宗学, 李小雁. 城市洪涝智慧控制与社会系统响应思考与探讨[J]. 中国水利, 2025, (05): 37-43.
14. 徐宗学, 叶陈雷. 城市暴雨洪涝模拟:原理、模型与展望[J]. 水利学报, 2021, 52(4): 381-392. (EI)
15. 徐宗学, 叶陈雷, 廖如婷. 城市洪涝灾害协同治理:研究进展与应用案例[J]. 地球科学进展, 2023, 38 (11): 1107-1120.
16. 徐宗学, 叶陈雷, 舒心怡. 数据与机理双驱动的城市洪涝过程模拟及其调度:以福州市为例[J]. 水利水电科技进展, 2025.
17. 徐宗学, 叶陈雷. 从 “城市看海” 到 “城市看江”:极端暴雨情景下福州市洪涝过程模拟与风险分析[J]. 中国防汛抗旱, 2021, 31(9): 12-20.
18. 叶陈雷, 徐宗学. 水工程调度与低影响开发协同作用下典型城市片区洪涝过程模拟——以福州市为例[J]. 水利学报, 2022, 53(7): 833-844.
19. 叶陈雷, 徐宗学, 雷晓辉, 等. 福州晋安河片区海绵改造对城市内涝的影响[J]. 水资源保护, 2023, 39(1): 83-92.
20. 叶陈雷, 徐宗学, 雷晓辉, 等. 基于 SWMM 和 InfoWorks ICM 的城市街区洪涝模拟与分析[J]. 水资源保护, 2023, 39(2): 87-94.
21. 叶陈雷, 徐宗学, 雷晓辉, 等. 城市社区尺度降雨径流快速模拟——以福州市一排水小区为例[J]. 水力发电学报, 2021, 40(10): 81-94.
22. 叶陈雷, 徐宗学. 城市洪涝数字孪生系统构建与应用: 以福州市为例[J]. 中国防汛抗旱, 2022, 32(7): 5-11.
23. 叶陈雷, 徐宗学, 雷晓辉, 等. 基于 InfoWorks ICM 的城市洪涝模拟及其风险分析——以福州市白马河片区为例[J]. 北京师范大学学报 (自然科学版), 2021, 57(6): 784-793.
24. 叶陈雷, 徐宗学, 廖卫红, 等. 城市洪涝过程:半分布式水箱模型与河道洪水模拟[J]. 北京师范大学学报 (自然科学版), 2024, 60 (5): 667-680.
25. 叶陈雷, 徐宗学, 雷晓辉, 等. 基于 InfoWorks 的城市水系水文水动力过程耦合模拟——以福州市江北城区及东北部山区为例[J]. 北京师范大学学报 (自然科学版), 2019, 55(5): 609-616.
26. 叶陈雷, 徐宗学, 雷晓辉, 等. 基于 SWMM 的城市社区尺度管网排水模拟——以福州市某排水小区为例[J]. 南水北调与水利科技 (中英文), 2022, 20(2): 271-280.