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王宇
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( 副教授 )
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的个人主页 https://teachers.jlu.edu.cn/wangyu1224/zh_CN/index.htm
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副教授
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性别 :
女
毕业院校 :
吉林大学
学历 :
博士研究生毕业
学位 :
博士
在职信息 :
在职
所在单位 :
新能源与环境学院
学科 :
水文学及水资源
办公地点 :
前卫北区理化楼562
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论文成果
[1] Assessing the Impacts of Best Management Practices on Nonpoint Source Pollution Considering Cost-Effectiveness in the Source Area of the Liao River, China. 2019
[2] Assessment of future climate change impacts on nonpoint source pollution in snowmelt period for a cold area using SWAT
[3] Evaluating and Predicting the Effects of Land Use Changes on Water Quality Using SWAT and CA–Markov Models
[4] Homotopy-based Hyper-Heuristic Searching Approach for Reciprocal Feedback Inversion of Groundwater Contamination Source and Aquifer Parameters
[5] Cyclic Feedback Updating Approach and Uncertainty Analysis for the Source Identification of DNAPL-contaminated Aquifers
[6] Hybrid homotopy-PSO Global Searching Approach with Multi-Kernel Extreme Learning Machine for Efficient Source Identification of DNAPL-polluted Aquifer
[7] Sensitivity-dependent dynamic searching approach coupling multi-intelligent surrogates in Homotopy mechanism for Groundwater DNAPL-Source Inversion
[8] Evaluation of the SWAT’s snowmelt parameters and simulation for spring snow melting period nonpoint source pollution in the Source Area of Liao River
[9] Predicting precipitation on nonpoint source pollutant exports in the Source Area of the Liao River, China
[10] Assessment and validation of groundwater vulnerability to nitrate in porous aquifers based on a DRASTIC method modified by projection pursuit dynamic clustering model
[11] Hydrochemistry Characteristics and Water Quality Assessment for Irrigation along the Second Songhua River in the South of the Songnen Plain, Northeast China
[12] Arsenic and fluorine in groundwater in western Jilin Province, China: occurrence and health risk assessment
[13] Hydrogeochemical Characteristics of Areas with Arsenic Poisoning from Drinking Water and Arsenic Enrichment in Groundwater in Songnen Plain of China
[14] 基于替代模型的地下水DNAPLs污染源反演识别
[15] 基于小波神经网络的地下水流数值模拟模型的替代模型研究
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