郑州大学水利与交通学院博士、教授
研究方向:水生态环境保护流域生态补偿水资源管理
办公地点:
吕翠美,女,博士,教授,主要研究方向为水生态环境保护、流域生态补偿、水资源管理等。主持国家自然科学基金青年项目1项、主持国家十二五水专项子课题,十四五国家重点研发计划子课题,参与完成国家自然科学基金、国家科技支撑计划等有关水资源开发利用、水资源优化配置及水生态建设方面的纵横向课题多项;在Journal of Cleaner Production、Ecological Engineering、Ecological Indicators、Environmental Geochemistry and Health、《水利学报》、《系统工程理论与实践》等学术期刊上发表相关学术论文50余篇,其中SCI检索近30篇,获得河南省科技进步奖二等奖1项,全国水利类专业青年教师讲课竞赛二等奖1项,出版学术专著1部,出版教材1部。
[1] 国际水资源学会中国委员会委员,委员
[2] 河南省水利学会,会员
[1] 2022-至今,主持国家十四五重点研发计划专题“特大干旱条件下供需水极限调控机制研究”
[2] 2017-2019年,主持国家自然科学基金青年项目“基于用水过程能量分析的用水效率能值评价方法研究”
[3] 2016-2019年,主持十二五水专项清潩河课题子任务“清潩河(许昌段)流域水资源优化调配与生态需水量保障机制研究”
[4] 2015-2017年,参与国家自然科学基金面上项目:“基于生态系统服务价值的非点源污染控制措施评价与优选方法研究”
[5] 2012-2014年,参与国家开放基金项目“基于盐度因素的汛期河口生态需水及调控研究”
[6] 2009-2011年,参与国家自然科学基金面上项目“区域水资源生态经济价值的能值分析方法研究”
[7] 2006-2008年,参与全国水资源综合规划项目“郑州市水资源及其开发利用综合评价”
[1] Lv Cuimei, Zong Wenzhao, Ling Minhua, Cao Qianqian, Liao Huali. A Multifaceted Evaluation System for the Effect of Interconnected River–lake System Based on Emergy Theory[J]. Water Resources Management, 2026, 40(4): 161.
[2] 吕翠美,李雪峰,凌敏华,等. 特大干旱情景下供水侧极限调控与生态经济效应的响应关系研究 [J]. 水利学报, 2025, 56(9): 1201-1214.
[3] Lv Cuimei, Zhu Zhichao, Ling Minhua, Cao Qianqian, Yu Yin. Study of the game mechanism of agricultural water price sharing in irrigation areas[J]. Irrigation Science, 2025, 43(6):1699-1714.
[4] Lv Cuimei, Li Xuefeng, Ling Minhua, Wang Tianye, Niu Zhaoying. Improvement and Practice of Evaluation Method of Vegetation Ecological Resilience under Drought Stress[J]. ACS ES&T Water, 2025, 5:1229-1239.
[5] 吕翠美, 宗文钊, 凌敏华, 等. 基于可控破坏的供用水系统极限调控理论框架 [J]. 水利学报, 2024, 55 (12): 1519-1527.
[6] Cuimei Lv, Sensen Wang, Minhua Ling, Qianqian Cao, Shuang Li. The Evolution Mechanism of the Water Supply System in the Water Receiving Area of a Water Diversion Project Inspired by Dissipative Structure Theory[J]. ACS ES&T WATER, 2024, 4(10): 4379-4391.
[7] Cuimei Lv, Shuang Li, Minhua Ling, Zhangying Niu, Denghua Yan. Assessment of water conservation and water intensification level based on AHP-fuzzy comprehensive evaluation model [J]. Desalination and Water Treatment, 2024, 7(319): 100567.
[8] Cuimei Lv, XinRui Wang, Minhua Ling, Wenjing Xu, Denghua Yan. Effects of Precipitation Concentration and Human Activities on City Runoff Changes[J]. Water Resources Management, 2023, 11269.
[9] Cuimei Lv, Yuguang Hu, Minhua Ling, Aojie Luo, Denghua Yan. Comprehensive evaluation and obstacle factors of coordinated development of regional water–ecology–energy–food nexus[J]. Environment, Development and Sustainability, 2023, 10668.
[10] Cuimei Lv, Wenchao Xu, Minhua Ling, Sensen Wang, Yuguang Hu. Evaluation of Synergetic Development of Water and Land Resources Based on a Coupling Coordination Degree Model[J]. Water, 2023, 15(1491): 15081491.
[11] Cuimei Lv, Wenchao Xu, Minhua Ling, Zening Wu, Denghua Yan. Research on Emergy Evaluation Method of Ecological Water Use Efficiency Based on Comprehensive Benefits[J]. Environmental Science and Pollution Research, 2023, 3(20), 14203316.
[12] Cuimei Lv, Xueyan Xu, Xi Guo. Basin water ecological compensation interval accounting based on dual perspectives of supply and consumption: Taking Qingyi River Basin as an example[J]. Journal of Cleaner Production, 2023(385):135610.
[13] Lv Cuimei, Niu Jiale, Ling Minhua,Wu Zening. Quantitative study on eco-economic compensation for water rights trading along the South-to-North Water Diversion Project in China[J]. water supply, 2022, 22(12): 8893-8906.
[14] Cuimei Lv, Zhaoying Niu, Minhua Ling, Zening Wu, Denghua Yan. Analyzing the Reliability of Unstructured Data for Urban Rainfall Pattern Studies—A Case Study from Zhengzhou[J]. Water, 2022, 14(20): 14203316.
[15] Lv Cuimei, Jue Yabo, Guo Xi, Ling Minhua, Yan Denghua. Research on quantification method of water pollution ecological environment losses[J]. AQUA-Water Infrastructure, Ecosystems and Society, 2022, 71 (6): 709-721.
[16] Cuimei Lv, Huali Liao, Minhua Ling, Zening Wu,Denghua Yan. Assessment of eco-economic effects of urban water system connectivity project[J]. Environmental Science and Pollution Research, 2022, 29, 53353–53363.
[17] Minhua Ling, Hongbao Han, Xingling Wei, Cuimei Lv. Temporal and spatial distributions of precipitation on the Huang-Huai-Hai Plain during 1960–2019, China[J]. Journal of Water and Climate Change, 2021, 313: 2232-2244.
[18] Lv Cuimei, He, Yifan., Zhang, Wenge. et al. Quantitative Analysis of Eco-economic Benefits of Urban Reclaimed Water Greening Based on Emergy Theory[J]. Water Resource Management, 2021, 35: 5029–5047.
[19] Zening Wu, Xiaoling Liu, Cuimei Lv, Changkuan Gu, Yang Li. Emergy Evaluation of Human Health Losses for Water Environmental Pollution[J]. Water police, 2021, 23(3): 801-818.
[20] Huiqin Li, Cuimei Lv, Minhua Ling, Changkuan Gu, Yang Li, Zening Wu, Denghua Yan. Emergy Analysis and Ecological Spillover as Tools to Quantify Ecological Compensation in Xuchang City, Qingyi River Basin, China[J]. Water, 2021: 13414.
[21] Cuimei Lv, Huiqin Li, Minhua Ling, Xi Guo*, Zening Wu, Changkuan Gu, Yang Li. An Innovative Emergy Quantification Method for Eco-economic Compensation for Agricultural Water Rights Trading[J]. Water Resources Management, 2021, 35: 775-792.
[22] Cuimei Lv, Wuyue Zhang, Minhua Ling, Huiqin Li, Guangjun Zhang. Quantitative analysis of eco-economic benefits of reclaimed water for controlling urban dust[J]. Environmental geochemistry and health, 2020, 42(9): 2961-2973.
[23] Xi Guo, Zening Wu, Xinling Wang, Cuimei Lv, Changkuan Gu , Yang Li and Meiyan Gao. The Joint Optimal Allocation Study of Regional Total Water Consumption and Pollutant Carrying Capacity of Water Function Areas Based on Emergy Theory. WATER, 2020,12,1100-1113.
[24] Lv Cuimei, Ling Minhua, Wu Zening, Guo Xi, Cao Qianqian. Quantitative assessment of ecological compensation for groundwater overexploitation based on emergy theory[J]. Environmental geochemistry and health, 2020, 42(3): 733-744.
[25] Lv Cuimei, Ling Minhua, Wu Zening, Gu Pan, Guo Xi, Di Danyang. Analysis of groundwater variation in the Jinci Spring area, Shanxi Province (China), under the influence of human activity[J]. Environmental geochemistry and health, 2019, 41(2): 921-928.
[1] 《水资源生态经济价值能值分析理论方法与应用》,科学出版社。
[1] 特大干旱情境下的供需水智能调控方法、设备及平台. 发明专利202411860082.7
[1] 软件著作权:郑州大学,干旱环境大数据汇总分析软件V1.0,2022SR0591675,授权
[2] 软件著作权:郑州大学,基于物联网的供需水调控远程操控系统V1.0,2022SR1009256,授权
[3] 软件著作权:郑州大学,水资源集约利用循环处理系统V1.0,2022SR1009240,授权
[4] 软件著作权:郑州大学,基于能值分析的流域内横向生态补偿量化模型软件V1.0, 2021SR1237352,授权
[5] 软件著作权:郑州大学, 城市经济社会数据查询系统V1.0,2020SR0087652,授权
[1] 河南省科技进步二等奖,水资源生态经济价值能值评估关键技术与应用,排名第二,2016。
[2] 基于专业认证的水文与水资源工程专业创新复合型人才培养的研究与实践,水利类专业教学成果二等奖, 排名第4,2022。