首页 人才工作
  • 姓名: 张庆玮
  • 性别: 女
  • 职称: 青年副教授
  • 职务: 
  • 学历: 博士研究生
  • 电话: 
  • 传真: 
  • 电子邮件: zhangqingwei@nwsuaf.edu.cn; zhaaqingwei@163.com
  • 通讯地址: 
    简  历:
  • 教育(访问)经历:  

    2014.9-2020.8,西北农林科技大学,水土保持研究所,水土保持与荒漠化防治专业,农学博士学位  

    2010.9-2014.6,西北农林科技大学,资源环境学院,水土保持与荒漠化防治专业,农学学士学位  

    工作经历:  

    2020.8-2023.7,西北农林科技大学,资源环境学院,水土保持系,讲师(青年副教授)。  

    2023.7-今,西北农林科技大学,水土保持科学与工程学院(水土保持研究所),讲师(青年副教授)。 
    社会任职:
  • International Soil and Water Conservation Research, Biosystems Engineering, Journal of Geographical Sciences, International Journal of Sediment Research等期刊审稿人。 
    研究方向:
  • 土壤侵蚀过程机理;土壤侵蚀环境效应 
    承担科研项目情况:
  • 1.国家自然科学基金青年项目“黄土区坡面细沟间侵蚀粒径分选动力学过程研究 (42107362)”,2022-2024年,主持;  

    2.黄土高原土壤侵蚀与旱地农业国家重点实验室开放基金“黄土区坡面细沟间侵蚀粒径分选机制和模拟”,2022-2023年,主持;  

    3.国家自然科学基金项目“应用三区土盘实验解析黄土坡面片蚀动力学过程 (41471230)”,参与;  

    4.国家自然科学基金项目“黄土坡面细沟侵蚀关键参数及其耦合关系试验研究 (41171227)”,参与;  

    5.国家自然科学基金重点项目子课题“生物结皮对坡面土壤侵蚀产沙的影响机理 (41830758-01)”,参与;  

    6.国家重点研发计划子课题“黄土坡面退耕还草驱动下的土壤侵蚀演变过程及其机理 (2016YFC0402401-06)”,参与;  

    7.国家重点研发计划子课题“黄土高原治沟造地农田不同作物需水量研究 (2017YFD0800502-01)”,参与。 
    代表论著:
  • Qingwei Zhang, Hao Wang, Jian Wang. 2022. Biocrusts and subshrub development and soil water through a slope-gully system in a vegetation-restored site on the Loess Plateau of China. Catena. 216: 106344.  

    Qingwei Zhang, Sanbao Ma, Sijun Liu, Xin Lei, Shanshan Liu, Xue Du. 2022. Particle size characteristics of sediment by sheet erosion and their responses to related parameters on a Loess hillslope: a plot-scale study. Hydrology Research. 53 (3): 483–503.  

    Hao Wang, Qingwei Zhang, Xuan Li, Yuanbi Yi, Qilin Wang, Li Gao, Jian Wang, Ding He, Ming Li. 2023. Surface microrelief induced by tillage management alters the pathway and composition of dissolved organic matter exports from soils to runoff during rainfall. Water Research. 245: 120554.  

    Chong Yao, Qingwei Zhang, Kebing Chen, Liting Liu, Hao Wang, Chenfeng Wang, Faqi Wu. 2023. Response of seasonal variation in soil detachment capacity to straw incorporation in sloping farmland on the Loess Plateau. Land Degradation & Developmet.34: 1740-1751.  

    Chong Yao, Kebing Chen, Qingwei Zhang, Chenfeng Wang, Chen Lu, Hao Wang, Faqi Wu. 2023. The contribution rate of stem-leaf and root of alfalfa (Medicago sativa L.) to sediment and runoff reduction. Land Degradation & Development. 34: 3991-4005.  

    Chong Yao, Qingwei Zhang, Chenfeng Wang, Jie Ren, Haike Li, Hao Wang, Faqi Wu. 2023. Response of sediment transport capacity to soil properties and hydraulic parameters in the typical agricultural regions of the Loess Plateau. Science of The Total Environment. 879: 163090.  

    Chong Yao, Qingwei Zhang, Chen Lu, Haike Li, Hao Wang, Faqi Wu. 2022. Variations in soil detachment by rill flow during crop growth stages in sloping farmland on the Loess Plateau. Catena. 216: 106375.  

    Chong Yao, Qingwei Zhang, Jiajia Mo, Puxing Zhang, Hao Wang, Faqi Wu. 2022. Effect of wheat straw incorporation on soil detachment capacity on sloping farmland in the agricultural region of the loess plateau, China. Journal of Soils and Sediments. 22(7): 2105-2116.  

    Qingwei Zhang, Zhanli Wang, Qi Guo, Nan, Shen, Zengming Ke, Naling Tian, Bing Wu, Jun’e Liu. 2020. Size-selective characteristics of splash-detached sediments and their responses to related parameters on steep slopes in Chinese loessial region. Soil & Tillage Research. 198: 104539.  

    Bing Wu, Qingwei Zhang. 2020. Reply to comments on the paper “Distinguishing transport-limited and detachment-limited processes of interrill erosion on steep slopes in the Chinese loessial region.” Soil & Tillage Research. 203: 104710.  

    Qingwei Zhang, Zhanli Wang, Qi Guo, Naling Tian, Nan Shen, Bing Wu, Jun'e Liu. 2019. Plot-based experimental study of raindrop detachment, interrill wash and erosion-limiting degree on a clayey loessal soil. Journal of Hydrology. 575: 1280-1287.  

    Qingwei Zhang, Zhanli Wang, Bing Wu, Nan Shen, Jun’e Liu. 2018. Identifying sediment transport capacity of raindrop-impacted overland flow within transport-limited system of interrill erosion processes on steep loess hillslopes of China. Soil & Tillage Research. 184: 109-117. 
    获奖及荣誉:
  •