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基本信息

 

                              吴冰 

                     博士、讲师、硕士生导师

 

·       毕业于中国科学院教育部水土保持与生态环境研究中心土壤学专业;

 

·       主要从事边坡侵蚀及动力学机制研究;

 

·       主持和参与国家重点研发计划、国家自然科学基金等科研项目8项;

 

·       在国内外学术期刊上发表论文15篇,其中SCI收录11篇。

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获奖情况

[1] 2019-2020学年:“中国科学院优秀博士学位论文”;

 

[2] 2017-2018学年:“教育部博士研究生国家奖学金”;

 

[3] 2017-2018学年:“中国科学院院长优秀奖”;

 

[4] 2017-2018学年:“中国科学院教育部水土保持与生态环境研究中心所长奖特别奖”

 

[5] 2017-2018学年:“黄土高原土壤侵蚀与旱地农业国家重点实验室主任奖一等奖”

 

[6] 2017-2018学年:“唐立新奖学金”

 

[7] 2017-2018学年:“中国科学院大学优秀毕业生

 

[8] 2017-2018学年:“2017年度虞宏正教授奖励基金会优秀在读研究生奖”;

 

[9] 2015-2016学年:“中国科学院大学三好学生”。

研究领域

 

  • 1.矿山地质环境恢复与治理

    2.黄土地区土壤侵蚀治理

    3.边坡侵蚀动力学模型

    4.边坡稳定性评价与修复技术

联系方式

 

  电子邮件:   wubing1099@xjtu.edu.cn

 

  联系地址:陕西省西安市雁翔路99

                                    

           西安交通大学曲江校区西一楼

                       

           土木工程系B-503

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代表性论文

 

[1] Bing Wu, Zhanli Wang(*), Qingwei Zhang, Nan Shen. Response of soil detachment rate by raindrop-affected sediment-laden sheet flow to sediment load and hydraulic parameters within a detachment-limited sheet erosion system on steep slopes on Loess Plateau, China. Soil and Tillage Research. 2019.185:9-16. (SCI, IF=4.475, JCR分区:1, 中科院分区:1, TOP期刊, 西安交通大学最具影响力期刊) 

 

[2] Bing Wu, Zhanli Wang(*), Qingwei Zhang, Nan Shen,Jun’e Liu. Evaluating and modelling splash detachment capacity based on laboratory experiments. CATENA.2019.176:189-196.(SCI, IF=3.851, JCR分区:1, 中科院分区:2区,西安交通大学最具影响力期刊

 

[3] Bing Wu, Zhanli Wang(*), Qingwei Zhang, Nan Shen. Distinguishing transport-limited and detachment-limited processes of interrill erosion on steep slopes in the Chinese loessial region. Soil and Tillage Research. 2018, 177:88-96. (SCI, IF=4.475, JCR分区:1, 中科院分区:1, TOP期刊西安交通大学最具影响力期刊)

 

[4] Bing Wu, Zhanli Wang(*), Qingwei Zhang, Nan Shen. Modelling sheet erosion on steep slopes in the loess region of China. Journal of Hydrology. 2017, 533:549-558. (SCI, IF=4.405, JCR分区:1, 中科院分区:土木工程1, TOP期刊, 西安交通大学最具影响力期刊)

 

[5] Bing Wu, Zhanli Wang(*), Nan Shen, Sha Wang. Modelling sediment transport capacity of rill flow for loess sediments on steep slopes. Catena. 2016, 147:453-462. (SCI, IF=3.851, JCR分区:1, 中科院分区:2区,西安交通大学最具影响力期刊)

 

[6] Bing Wu, Zhanli Wang(*), Qingwei Zhang, Nan Shen, Jun’e Liu, Sha Wang. Evaluation of shear stress and unit stream power to determine the sediment transport capacity of loess materials on different slopes. Journal of Soils and Sediments. 2018, 18(1):116-127. (SCI, IF=2.669, JCR分区:2, 中科院分区:3, 西安交通大学知名期刊)

 

[7] Qingwei Zhang, Zhanli Wang (*), Bing Wu, Nan Shen, Jun’e Liu. Identifying sediment transport capacity of raindrop-impacted overland flow within transport-limited system of interrill erosion processes on steep loess hillslopes of China. Soil and Tillage Research, 2018, 184: 109-117. (SCI, IF=4.475, JCR分区:1, 中科院分区:1, TOP期刊西安交通大学最具影响力期刊)

 

[8] Yuanyuan Li, Zhanli Wang(*), Bing Wu, Jun’e Liu, Nian Jiao. Impacts of natural polymer derivative neutral polysaccharide Jag S and cationic hydroxypropyl polysaccharide Jag C162 on rainfall infiltration on an experimental loess hillslope. Soil Science and Plant Nutrition. 2018, 46(2):244-252. (SCI, IF=2.006, JCR分区:3, 中科院分区:3)

 

[9] Qingwei Zhang, Zhanli Wang (*), Qi Guo, Naling Tian, Nan Shen, Bing Wu, Jun'e Liu. Plot-based experimental study of raindrop detachment, interrill wash and erosion-limiting degree on a clayey loessal soil. Journal of Hydrology, 2019, 575: 1280-1287. (SCI, IF=4.405, JCR分区:1, 中科院分区:土木工程1, TOP期刊西安交通大学最具影响力期刊)

 

 [10] Nan Shen, Zhanli Wang (*), Qingwei Zhang, Bing Wu, Dongdong Wang, Qilin Zhang, Jun’e Liu. Quantifying the Contribution of Sediment Load to Soil Detachment Rate by Sediment-Laden Rill Flow. Soil Science Society of America Journal, 2017, 81(6): 1526-1536. (SCI, IF=1.996, JCR分区:3, 中科院分区:2, TOP期刊, 西安交通大学最具影响力期刊)

 

 [11] Nan Shen, Zhanli Wang (*), Qingwei Zhang, Hao Chen, Bing Wu. Modelling soil detachment capacity by rill flow with hydraulic variables on a simulated steep loessial hillslope. Hydrology research, 2019, 50(1): 85-98. (SCI, IF=2.475, JCR分区:4, 中科院分区:4)

 

[12] 吴冰,朱元骏,邵明安.降雨强度对含砾石土壤产沙及入渗的影响.水土保持学报,2011, 25(6):87-91.

 

 

 


 

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