1. “十四五”国家重点研发计划课题,山区河流推移质运动机理与模拟技术,2024.12-2027.11;
2. 国家自然科学基金联合基金重点支持项目,震后龙门山山前河流剧烈冲刷下切机理与防治技术研究,2021.01-2024.12;
3. “十三五”国家重点研发计划课题,山区暴雨山洪水沙灾害预报预警防控平台构建与示范,2020.01-2022.12;
4. 国家自然科学基金面上项目,山区河流河床粗化层失稳机理及再造过程研究,2018.01-2021.12;
5. 四川省自然科学基金创新研究群体项目,山区河流水沙灾害防治,2023.01-2025.12;
6. 四川省交通运输科技项目重点项目,高原山区公路水毁恢复重建关键技术研究及应用,2024.12-2026.12;
7. 重大重点工程科研项目,坦桑尼亚马拉加斯水电站枢纽整体水工模型试验与库区泥沙输运数值模拟研究,2024.07-2025.07;
8. 重大重点工程科研项目,中煤广元燃煤发电项目新建工程取水工程模型试验研究,2024.04-2025.07;
9. 重大重点工程科研项目,四川省米市水库工程泄洪洞水力学模型试验,2024.04-2025.04;
10. 重大重点工程科研项目,岷江龙溪口航电枢纽水沙调控运行方式及下游近坝河段河床冲刷下切防治技术研究,2024.01-2027.12;
11. 重大重点工程科研项目,引大济岷工程取水口流场数值模拟研究,2023.08-2023.12;
12.重大重点工程科研项目,四川省观口水库工程泄洪洞水力学模型试验,2023.04-2023.12;
13.重大重点工程科研项目,雅砻江卡拉水电站施工导截流模型试验研究,2022.08-2024.01;
14.重大重点工程科研项目,向家坝灌区北总干渠一期一步工程项目渠首水力学模型试验,2021.10-2022.12;
15.重大重点工程科研项目,大渡河丹巴水电站可研阶段首部枢纽水工水力学综合模型试验与闸坝施工导截流模型试验研究,2021.03-2023.06;
16.重大重点工程科研项目,大渡河沙坪一级水电站可研阶段水工泥沙综合模型试验研究,2020.03-2021.12;
17.重大重点工程科研项目,四川省江家口水库水力学模型试验研究,2019.11-2021.12;
18.重大重点工程科研项目,印度尼西亚巴图水电站水库泥沙淤积计算,2018.10-2018.12;
19.重大重点工程科研项目,四川省黄石盘水库工程鱼道模型试验及三维数值模拟研究,2018.05-2018.12;
20.重大重点工程科研项目,金沙江金沙水电站大单宽低弗氏数泄洪消能研究,2017.05-2017.12;
21.重大重点工程科研项目,雅砻江锦屏二级水电站兼顾发电安全与水库排沙效果的运行方式研究,2017.05-2017.12。
1. Zhang Wen,Nie Ruihua*, Liu Xingnian, Yang Shengfa, Wang Lu. Clear-water scour depth at rock weirs under unsteady flows.Journal of Hydrology, 2025, 654: 132889.
2. Li Qiang,Nie Ruihua*, Wang Lu, Bai Ruidi, Liu Xingnian, Liu Chao. Backwater rise upstream of a stream-crossing culvert due to large wood accumulation and sediment deposition.Journal of Hydrology, 2025, 646: 132297.
3.Nie Ruihua, Ma Mingyue, Wang Xiaofan, Wang Lu, Liu Xingnian, Liu Chao*. River bed degradation in a compound channel after base level fall.Journal of Hydraulic Research, 2024, 62(2): 144-157.
4. Wang Lu, Zhao Limei, Liu Chao,Nie Ruihua*. Effects of sediment supply on scour at submerged grade control structures.Journal of Hydrology, 2023, 622: 129729.
5.Nie Ruihua, Liang Hongru, Melville B. W., Shamseldin A. Y., Wang Lu*. Scour at river crossing cylindrical structures in degrading channels.Journal of Hydraulic Engineering, 2023, 149(3): 05022008.
6. Li Qiang, Wang Lu, Ma Xudong,Nie Ruihua*. Experimental study of the effects of riverbank vegetation conditions on riverbank erosion processes.Environmental Fluid Mechanics, 2023, 23: 621-632.
7. Wang Lu,Nie Ruihua, Louise J. Slater, Xu Zhonghou, Guan Dawei, Yang Yifan*. Education can improve response to flash flood,Science, 2022, 377(6613): 1391-1392.
8. Wang Lu, Melville B. W., Xu Zhonghou, Shamseldin A. Y., Wu Weiming, Wang Xiaofan,Nie Ruihua*. Massive riverbed erosion induced by inappropriate grade control: A case study in a large-scale compound channel.Journal of Hydrology, 2022, 612: 128313.
9. Wang Qiang, Wang Lu, Wang Tao, Yang Kejun,Nie Ruihua*. Experimental study on the critical breakup condition of a static armour layer.River Research and Applications, 2021, 37(3): 484-493.
10. Wang Lu, Melville B. W., Shamseldin A. Y.,Nie Ruihua*. Impacts of bridge piers on scour at downstream river training structures: Submerged weir as an example.Water Resources Research, 2020, 56(4), 2019WR026720.
常用邮箱:nierh@scu.edu.cn