郑州大学水利与交通学院教授/博导
研究方向:河流水沙运动及生态环境响应供水管网漏损定位生态海岸及消浪减灾环境生态水力学血液动力学
办公地点:
李志伟,男,郑州大学水利与交通学院教授/博导,主要研究方向为河流水沙运动及生态环境响应、供水管网漏损定位、生态海岸及消浪减灾、环境生态水力学、血液动力学。主持国家自然科学基金等科研项目10余项,发表学术论文80余篇(其中SCI检索论文60余篇);撰写行业标准1项;授权发明专利4项;获江苏省科技进步奖一等奖1项,大禹水利科学技术奖二等奖1项,2014年湖北省优秀博士学位论文。
Communications Earth & Environment等期刊刊审稿人。
[1] 主持河南省面上科学基金项目“入河排污口近区微塑料介导下污染物迁移累积及动力学驱动机制”(252300421946),2025.11~2027.9;
[2] 主持水利部黄河下游河道与河口治理重点实验室开放课题基金“冰封河道交汇区水沙运动机理及环境效应”(LYRCER202202),2022.07~2023.12;
[3] 主持郑州大学青年教师基础研究培育基金(自然科学)“螺旋桨作用下水沙输移规律及污染物响应机制”(JC22550027),2022.10~2024.12;
[4] 主持黄河实验室(郑州大学)一流课题专项基金项目“黄河干支流交汇区拦门沙演变及生态环境响应机制研究”(YRL22IR11),2023.1~2024.12;
[5] 主持中央高校基本科研业务费项目“河湾处污染物迁移转化规律及影响因素研究”(2016B00314),2016.01~2018.12;
[6] 主持国家自然科学基金青年基金“弯道水沙运动对磷污染物迁移转化的作用机理研究”(51409085),2015.01~2017.12;
[7] 主持中国博士后科学基金特别资助项目“植被化河道中水沙运动对磷的迁移转化作用规律研究”(2015T80494),2015.05~2017.12;
[8] 主持水资源与水电工程科学国家重点实验室开放基金,2015HLG01,水动力作用下磷在水沙两相间分配规律研究,2016/01~2017/12;
[9] 主持中国博士后科学基金面上资助项目,2014M551497,水动力作用下泥沙对磷的吸附/解吸规律研究,2014/03~2015/06;
[10] 主持江苏省博士后科研资助计划项目“逆流中壁面射流及多孔射流近区稀释机理研究”(1302047B),2014.01~2015.06。
[1] 郑州大学教育教学改革研究与实践项目,主持,2023;
[2] 郑州大学研究生课程思政示范课程,主持,2025。
[1] Li Zhiwei, Feng Haokun, Sun Bin, et al. Influence of shape on the incipient motion of exposed microplastics [J] . Journal of Hydrology, 2026, 671:135254.
[2] Li Zhiwei, Feng Haokun, Gualtieri Carlo, et al. A Semi‐Analytical Model for Predicting the Depth‐Averaged Maximum Longitudinal Velocity in Fully Ice‐Covered Confluences [J] . Water Resources Research, 2026, 62(3): e2025WR042386.
[3] Wang Bing, Li Zhiwei*, Zhang Yang, et al. Turbulent characteristics around sediment reduction facilities imitating dragonfly wings in sewer systems [J] . Journal of Water Process Engineering, 2026, 83: 109663.
[4] Li Zhiwei, Wang Bing, Zhang Li, et al. Characterization of hydrodynamics around plates shaped like dragonfly wings as a sediment reduction measure in a sewer system. Water Research, 2025. 274. 123152.
[5] Feng Haokun, Li Zhiwei*, Gualtieri Carlo, et al. Semi-Analytical Models for Predicting the Maximum Longitudinal Flow Velocity in the Confluence Channel [J] . Water Resources Research, 2025, 61(12): e2025WR041424.
[6] Wang Xuefeng, Li Zhiwei*, Sun Bin, et al. Impact of bed morphology on microplastic transport at a confluence between a channel and a pipeline [J] . Journal of Hazardous Materials, 2025, 497: 139697.
[7] Li Zhiwei, Xu Zhenghe, Zhang Li, et al. The influence of rigid and flexible vegetation on the drag coefficient of regular waves [J] . Ocean Engineering, 2025, 340: 122311.
[8] Liu Sifu, Chen Shanshan, Li Zhiwei*, et al. Turbulent structure at a 30° confluence of pipes in a sewer system. Physics of Fluids, 2025. 37(1). 015118.
[9] Li Zhiwei, Feng Haokun, Gualtieri Carlo, et al, Wang Feifei. Predicting the width of the recirculation zone at an ice-covered confluence [J] . Physics of Fluids, 2025, 37(9): 093601.
[10] Li Zhiwei, Zhao Shuaikang, Zhang Li, et al. Leak detection and localization in water distribution networks using the mixture of experts model [J] . Physics of Fluids, 2025, 37(5): 057119.
[11] Li Zhiwei, Chen Shanshan, Wang Feifei, et al. Velocity Distribution and Separation Zone Characteristics in the Confluence of the Pipeline Network [J] . Journal of Irrigation and Drainage Engineering, 2025. 151(1). 04024041.
[12] Xu Zheng He, Li Zhiwei*, Sun Bin, et al. Experimental investigation on attenuating wave run-up by emergent length and submerged length of rigid vegetation on a composite breakwater [J] . Ocean Engineering, 2024. 309. 118543.
[13] Xiong Junye, Li Zhiwei*, Wang Xuefeng, et al. Migration, Distribution and Influencing Factors of Microplastics at the Confluence of Pipe and Channel [J] . Water, Air, & Soil Pollution, 2024. 235(11). 716.
[14] Wang Xuefeng, Li Zhiwei*, Sun Bin, et al. Impact of Fenton aging on the incipient motion of microplastic particles in open-channel flow [J] . Science of the total environment, 2024. 953. 176220.
[15] Wang Xuefeng, Li Zhiwei*, Sun Bin, et al. Interaction between hydrodynamic and morphodynamic processes at the confluence of pipe and channel [J] . Physics of Fluids, 2024. 36(11). 115147.
[16] Li Zhiwei, Wang Bing, Wang Feifei, et al. Flow dynamics and turbulent coherent structures around sediment reduction plates of a sewer system [J] . Journal of Environmental Management, 2024. 366. 121594.
[17] Li Zhiwei, Xiao Yang, Huai Wenxin*, et al, Velocity Characteristics of a Round Offset Jet with Different Offset Ratios in a Counterflow [J] . Flow, Turbulence and Combustion, 2021, 107:81–104.
[18] Li Zhiwei*, Huai Wenxin, Turbulence characteristics of a round offset jet with different offset ratios in a counterflow [J] . Environmental Fluid Mechanics. 2020, 20(4), 689-706.
[19] Li Zhiwei, Tang Hongwu*, Xiao Yang, et al. Factors influencing phosphorus adsorption onto sediment in a dynamic environment [J] . Journal of Hydro-environment Research. 2016, 10(1):1-11.
[20] Li Zhiwei, Huai Wenxin, Qian Zhongdong*. Large eddy simulation of a round jet into a counterflow [J]. Science China-Technological Sciences, 2013, 56(2): 484-491.
[1] 李志伟、孙斌、王菲菲、史国航、陈海亮、李宇宇. 一种管、渠、场耦合的多模态装配式水力现象发生装置,ZL 2023 1 0811328.0;
[2] 唐洪武、李青霞、肖洋、陈红、张燕菁、李志伟,细颗粒泥沙分级方法, ZL201410249974.3;
[3] 唐洪武,李青霞,肖洋,李志伟,袁赛瑜. 表层床沙污染物吸附/解吸特性测量装置及其使用方法, ZL 2017 1 0438454.0;
[4] Hongwu Tang, Qingxia Li, Yang Xiao, Zhiwei Li, Saiyu Yuan. Device for measuring adsorption/desorption characteristic of surface bed sediments on contaminants and method of using the device,国际PCT发明专利,加拿大:CA3015735,2019.06,美国:US10545128B2,2020.01。
[1] 史国航、郭力平、李志伟、孙斌、王菲菲. 一种综合性创新型水力学实验平台,ZL 202320752149X;
[2] 陈海亮、史国航、王菲菲、孙斌、李志伟、吴龙新. 一种可变坡可变形仿生态鱼道模型,ZL 2023 2 1732552.2;
[3] 唐洪武、李志伟、赵汗青、李勇涛、宋荣华、李青霞. 环形水槽模拟悬沙及床沙吸附污染物装置,ZL201320818449.X。
[1] 江苏省科技进步一等奖,平原河流水沙运动模拟测控成套技术与应用,2017年,排10;
[2] 大禹水利科学技术奖二等奖,滨海城市洪涝风险动态预判与智能跟踪关键技术及应用,2017年,排11;
[3] 湖北省优秀博士学位论文,逆向射流及多孔射流稀释机理研究,2014年,排1。