专任教师

水土保持与荒漠化防治学科教师

张守红|教授、博导

张守红 教授、博导
性别:男
研究方向:小流域综合治理、生态清洁小流域、城市雨水控制与利用、生态修复
邮箱:zhangs@bjfu.edu.cn
基础信息

张守红,教授,博士生导师,北京林业大学水土保持学院院长,兼任全国重点实验室副主任、北京林业大学学术道德委员会副主任、科技协会秘书长、中国水土保持学会小流域综合治理专业委员会副主任,中国林学会青年工作委员会副主任、北京水生态与水土保持学会常务理事。获2024年国家高层次人才计划青年项目,入选国家林草局第六批林草科技创新青年拔尖人才、第九批北京市优秀青年人才、第六期北京市国家治理青年人才培养计划。主持/参与国家自然科学基金、国家重点研发计划课题、国家水体污染控制与治理科技重大专项子课题等项目20余项。发表学术论文80余篇,主编/副主编教材2部,参编教材、专著5部。获评中国水保学会青年科技奖、科学技术一等奖、优秀设计一等奖、北京市高等教育教学成果二等奖、北京市优秀论文指导教师等荣誉。

学习、工作经历

2019年至今,北京林业大学水土保持学院,教授

2015年-2019年,北京林业大学水土保持学院,副教授

2010年-2014,McMaster University,博士

2007年-2010年,中国科学院地理科学与资源研究所,硕士

2003年-2007年,北京林业大学水土保持学院 ,本科

主讲课程

《水文学》

《城市雨水控制与利用》

《Hydrology & Water Resources》

《水土保持实验研究方法》

学术论文

[1] Zhang X., Zhang S., Zhang F.*, Li H., Shi J., Chen J. (2025). Quantifying the effects of the soil erosion factors on water-eroded slopes. Catena, 249, 108678.

[2] Hao L., Zhang S., Zhang F.*, Ren Y., Zhang X., Yan J. (2025). Balancing water saving, market attractiveness, and pollution control in crop spatial planting structure planning of arid regions. Agricultural Water Management, 309, 109348.

[3] Yan J., Zhang F., Zhang S.*, Liu W., Zhang S., Li R., He Y., Wang K. (2024). Stormwater retention capacity of blue-green roofs with various configurations: Observational data and modelling. Journal of Hydrology, 645, 132092.

[4] Li R., Zhang S.*, Guo Y., Zhang F., Zhang W., Yan J., Li H. (2024). Impacts of compatibility between rainwater availability and water demand on water saving performance of rainwater harvesting systems. Journal of Environmental Management, 370, 122722.

[5] Ali S., Sang Y.*, Yang M., Shi J., Zhang S. (2024). Regionalization of environmental and economic performances of rainwater harvesting systems. Journal of Hydrology: Regional Studies, 53, 101810.

[6] Wang K., Wang J.*, Cao S., Li C., Zhang S., Guo Y. (2024). Hydrologic performance quantification of green roofs using an analytical stochastic approach based on kernel distribution estimation: Extensive case studies in Shandong Province, northern China. Journal of Hydrology: Regional Studies, 54, 101847.

[7] Zhang F., Li M., Zhang S.*, Liu J., Ren Y., Cao Y., Li F. (2024). China's National Reserve Forest Project contribution to carbon neutrality and path to profitability. Forest Policy and Economics, 160, 103146.

[8] Zhang W., Yang M., Zhang S., Yu L., Zhao F., Chen D., Yang S., Li H., Zhang S., Li R., Zhang J.* (2023). Applicability assessment of five evapotranspiration models based on lysimeter data from a bioretention system. Ecological Engineering, 194, 107049.

[9] Li H., Zhang S., Zhang J.*, Zhang W., Song Z., Yu P., Xie C. (2023). A framework for identifying priority areas through integrated eco-environmental risk assessment for a holistic watershed management approach. Ecological Indicators, 146, 109919.

[10] Li H., Zhang J., Zhang S.*, Zhang W., Zhang S., Yu P., Song Z. (2022). A framework to assess spatio-temporal variations of potential non-point source pollution risk for future land-use planning. Ecological Indicators, 137, 108751.

[11] Yan J., Zhang S.*, Zhang J., Zhang S., Zhang C., Yang H., Wang R., Wei L. (2022). Stormwater retention performance of green roofs with various configurations in different climatic zones. Journal of Environmental Management, 319, 115447.

[12] Zhang S.*, Lin Z., Zhang S., Ge D. (2021). Stormwater retention and detention performance of green roofs with different substrates: Observational data and hydrological simulations. Journal of Environmental Management, 291, 112682.

[13] Ali S., Zhang S.*, Chandio F.A. (2021). Impacts of rainfall change on stormwater control and water saving performance of rainwater harvesting systems. Journal of Environmental Management, 280, 111850.

[14] Yue T., Zhang S.*, Zhang J., Zhang B., Li R. (2020). Variation of representative rainfall time series length for rainwater harvesting modelling in different climatic zones. Journal of Environmental Management, 269, 110731.

[15] Guo R., Guo Y.*, Zhang S., Zhu, D. (2020). A Tool for Water Balance Analysis of Bioretention Cells. ASCE, Journal of Sustainable Water in the Built Environment, 6(3), 04020013.

[16] Zhang S.*, Zhang J., Yue T., Jing X. (2019). Impacts of climate change on urban rainwater harvesting systems. Science of the Total Environment, 665(15):262–274.

[17] Wang J.*, Zhang S., Guo Y. (2019). Analyzing the impact of impervious area disconnection on urban runoff control using an analytical probabilistic model, Water Resources Management, 33(5): 1753-1768.

[18] Jing X., Zhang S.*, and Zhang J. (2018). Stormwater volume control performance of rainwater harvesting systems in four climatic zones of China. Water Resources Management, 32(8): 2649-2664.

[19] Jing X., Zhang S.*, Zhang J., Wang Y., and Yue T. (2017). Assessing efficiency and economic viability of rainwater harvesting systems for meeting non-potable water demands in four climatic zones of China. Resources, Conservation & Recycling, 126:74-85.

[20] Zhang S.*, and Guo Y. (2015). SWMM simulation of the stormwater volume control performance of permeable pavement systems. ASCE, Journal of Hydrologic Engineering, 20(8), 06014010.

[21] Zhang S., and Guo Y.* (2015). An analytical equation for evaluating the stormwater volume control performance of permeable pavement systems. ASCE, Journal of Irrigation and Drainage Engineering, 141(4), 06014004.

[22] Guo Y., Zhang S.*, and Liu, S. (2014). Runoff reduction capabilities and irrigation requirements of green roofs. Water Resources Management, 28(5), 1363-1378.

[23] Zhang S., and Guo Y.* (2014). Stormwater capture efficiency of bioretention systems. Water Resources Management, 28(1), 149-168.