Ø 姓 名:朱博文
Ø 职务/职称:讲师
Ø 地 址: 山西省太原市迎泽西大街79号
Ø E-mail:zhubowen@tyut.edu.cn
2021-07 至今, 太原理工大学,部长看上了下属的妻子和,讲师
2015-09 至 2021-06, 北京师范大学, 地图学与地理信息系统, 博士
2018-09 至 2020-11, 美国西北太平洋国家实验室, 国家公派联合培养
2011-09 至 2015-06, 河海大学, 水文与水资源工程, 学士
1.气候与植被变化下生态水文过程模拟
2.重力卫星数据对极端水文事件分析与评估
《水文预报》
(1) 山西省科技厅, 山西省自然科学基金一般青年项目, 202103021223078, 山西陆地水储量对极端气候和植被恢复的响应, 2022-01 至 2024-12, 4万元, 在研, 主持
(2) 山西省科技厅, 山西省科技创新人才团队专项, 202204051002027, 黄土高原水循环演变与生态多维调控, 2022-07 至 2025-07, 170万元, 在研, 参与
(3) 国家自然科学基金委员会, 面上项目, 52279020, 变化环境下黄土丘陵区径流非平稳形成机制及中长期预测, 2023-01-01 至 2026-12-31, 54万元, 在研, 参与
2022年太原理工大学暑期社会实践优秀指导教师
太原理工大学120周年校庆工作先进个人
学术论文:
(1) Bowen Zhu; Maoyi Huang; Yanyan Cheng; Xianhong Xie; Ying Liu; Gautam Bisht; Xingyuan Chen; Impact of vegetation physiology and phenology on watershed hydrology in a semi-arid watershed in the Pacific Northwest in a changing climate, Water Resources Research, 2021, 57(3):e2020WR028394
(2) Bowen Zhu; Maoyi Huang; Yanyan Cheng; Xianhong Xie; Ying Liu; Xuesong Zhang; Gautam Bisht; Xingyuan Chen; Justine Missik ; Effects of irrigation on water, carbon, and nitrogen budgets in a semi-arid watershed in the Pacific Northwest: A modelling study, Journal of Advances in Modeling Earth Systems, 2020, 12(9): e2019MS001953
(3) Bowen Zhu; Xianhong Xie; Chuiyu Lu; Tianjie Lei; Yibing Wang; Kun Jia; Yi Yao ; Extensive Evaluation of a Continental-Scale High-Resolution Hydrological Model Using Remote Sensing and Ground-Based Observations, Remote Sensing, 2021, 13(7): 1247
(4) Bowen Zhu; Xianhong Xie; Shanshan Meng; Chuiyu Lu; Yi Yao ; Sensitivity of soil moisture to precipitation and temperature over China: Present state and future projection, Science of the Total Environment, 2020, 705: 135774
(5) Bowen Zhu; Xianhong Xie; Kang Zhang ; Water storage and vegetation changes in response to the 2009/10 drought over North China, Hydrology Research, 2018, 49(5): 1618-1635
(6) Guo, L.; Zhu, B*.; Jin, H.; Zhang, Y.; Min, Y.; He, Y.; Shi, H. Spatial-Temporal Variation Characteristics and Influencing Factors of Soil Moisture in the Yellow River Basin Using ESA CCI SM Products. Atmosphere 2022, 13, 962. https://doi.org/10.3390/atmos13060962
(6) Cheng, Y., Huang, M.*, Zhu, B., Bisht, G., Zhou, T., Liu, Y., et al. 2021. Validation of the Community Land Model version 5 over the contiguous United States (CONUS) using in situ and remote sensing data sets. Journal of Geophysical Research: Atmospheres, 126, e2020JD033539.
(7) Yang, S., Chen, K.*, Zhu, B., Tian, Y., Zeng, Z., Liu, M., & Zheng, C.* 2022. How does irrigation alter the water, carbon, and nitrogen budgets in a large endorheic river basin? Journal of Hydrology, 613, 128317.
(8) Meng, S., Xie, X.*, Zhu, B., Wang, Y., 2020. The relative contribution of vegetation greening to the hydrological cycle in the Three-North region of China: A modelling analysis. Journal of Hydrology, 591, 125689.
(9) Jiang, F., Xie, X.*, Liang, S., Wang, Y., Zhu, B., et al., 2021. Loess Plateau evapotranspiration intensified by land surface radiative forcing associated with ecological restoration. Agricultural and Forest Meteorology. 311, 108669
(10) Wang, Y., X. Xie*, J. Shi, B. Zhu, F. Jiang, Y. Chen, and Y. Liu (2022), Accelerated hydrological cycle on the Tibetan Plateau evidenced by ensemble modeling of long-term water budgets, Journal of Hydrology, 128710, doi: https://doi.org/10.1016/j.jhydrol.2022.128710.
(11) Jiang, F., X. Xie*, Y. Wang, S. Liang, B. Zhu, S. Meng, X. Zhang, Y. Chen, and Y. Liu (2022), Vegetation greening intensified transpiration but constrained soil evaporation on the Loess Plateau, Journal of Hydrology, 614, 128514, doi: https://doi.org/10.1016/j.jhydrol.2022.128514.
(12) Zhang, K., X. Xie*, B. Zhu, S. Meng, and Y. Yao(2019), Unexpected groundwater recovery with decreasing agricultural irrigationin the Yellow River Basin, Agricultural Water Management, 213,858-867.
(13) Yao, Y., X. Xie*, S. Meng, B. Zhu, K. Zhang, andY. Wang (2019), Extended Dependence of the Hydrological Regime on the LandCover Change in the Three-North Region of China: An Evaluation under Future Climate Conditions, Remote Sensing, 11(1), 81.
(15) Wang. Y., X. Xie*, S. Liang, B. Zhu, Y. Yao, S. Meng, and C. Lu (2020), Quantifying the response of potential flooding risk to urban growth in Beijing, Science of the Total Environment, 705, 135868
(16) Wang. Y., X. Xie*, S. Meng, D. Wu, Y. Chen, F. Jiang, and B. Zhu (2020), Magnitude Agreement, Occurrence Consistency, and Elevation Dependency of Satellite-Based Precipitation Products over the Tibetan Plateau, Remote Sensing, 12(11), 1750.
会议报告:
(1) Bowen Zhu; Maoyi Huang; Yanyan Cheng; Xianhong Xie ; Effects of Irrigation on Water, Carbon, and Nitrogen Budgets in a Semi-arid Watershed, AGU Fall Meeting, San Francisco, 2019-12-9至2019-12-13. (oral presentation)
(2) Bowen Zhu; Maoyi Huang; Yanyan Cheng ; Hydrologic and Biogeochemistry Dynamics of a Semiarid Watershed in the Pacific Northwest under a Changing Climate, CESM Land Model & Biogeochemistry Working Group Meeting, Denver, 2020-3-3至2020-3-5. (oral presentation)
(3) Bowen Zhu; Xianhong Xie; Shanshan Meng ; Quantifying water storage anomaly in the 2009/10 drought across North China, AGU Fall Meeting, New Orleans, 2017-12-10至2017-12-17. (poster presentation)