
丁伟
Associate Professor Supervisor of Doctorate Candidates Supervisor of Master's Candidates
Academic Titles:无
Gender:Female
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:水利工程学院
Discipline:Hydrology and Water Resources
Business Address:综合实验4号楼411
Contact Information:
E-Mail:
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Date:2019-03-11
Indexed by:Journal Article
Date of Publication:2018-03-01
Journal:WATER
Included Journals:EI、SCIE
Volume:10
Issue:3
ISSN:2073-4441
Key Words:long distance water diversion; inverted siphon; sensitivity analysis; integrated supply system modeling
Abstract:Long distance water diversion projects are developed to alleviate the conflicts between supply and demand of water resources across different watersheds. However, the significant scale water diversion projects bring new challenges for the water supply security. This paper presents the flood risk of inverted siphon structure which is used for crossing transversally in the water diversion project through sensitivity analysis. Sobol and regionalized sensitivity analysis are used to investigate the sensitive parameters of the integrated model and the sensitive range of the parameters, respectively. The integrated system model consists of the hydrologic model, the sediment transport model and the siphon hydraulic model to determine the flood overtopping duration and volume, which are used to quantify flood risk in this study. The flood overtopping duration and volume indicators are used to quantify flood risk in the sensitivity analysis. The South to North Water Diversion Project in China is used as a case study. The results show the mean rainfall and roughness coefficient of the pipe are the most sensitive parameters in the integrated models, while the sensitive range of these two parameters are distinct. The sensitivity analysis of the inverted siphon provides an insight into the significant contributions to the flood risk. The analysis can provide the guidance for the system operation security.
博导,国家优秀青年科学基金获得者,大连市高端人才,国际水文科学协会中国委员会水资源系统分委员会委员。
长期从事流域水资源管理,主要聚焦水库群洪水资源协同利用、耦合多尺度预报信息的水资源时空协同调控等方向,主持国家自然科学基金项目3项、国家重点研发计划专题3项,及企业委托课题10余项。发表SCI论文 50余篇,以一作/通讯在Water Resources Research、Journal of Hydrology等期刊发表论文30余篇,授权国内发明专利11项,实现百万成果转化1项。研究成果应用于长江、松辽等流域,显著提升了流域水安全保障能力,获教育部、辽宁省、大禹等省部级科技进步一等奖4项。
主讲本科生核心课课程《现代水资源规划》,研究生课程《流域水文模拟》,立足课堂与实践教学,探索构建学科交叉、专创融合的特色育人体系。