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Liuyue He, Zhenci Xu, Sufen Wang*, Jianxia Bao, Yunfei Fan, Andre Daccache. Optimal crop planting pattern can be harmful to reach carbon neutrality: Evidence from food-energy-water-carbon nexus perspective[J]. Applied Energy, 2022,308:118364. (SCI, 通讯作者, IF=9.746 ESI:10%)
Juan Gong, Liuyue He, Sufen Wang*. Optimizing the allocation of irrigation water for multi crops based on the crop water allocation priority[J]. Irrigation Science.(SCI, 通讯作者, IF=2.940)
Chen S C, Parsons D, Du T S, Kumar U, Wang S F*. Simulation of yield and water balance using WHCNS and APSIM combined with geostatistics across a heterogeneous field[J]. Agric. Water Manage. 2021, 258:107-174 (SCI,通讯作者, IF = 2.603 ESI:10%~20%)
Liu Y, Ortega-Farías S, Tian F, Wang S F*, Li S E. Estimation of Surface and Near-Surface Air Temperatures in Arid Northwest China Using Landsat Satellite Images. Front. Environ. Sci. 2021,9:791336. doi: 10.3389/fenvs.2021.791336(SCI,通讯作者, IF = 4.581 ESI:10%~20%)
Fan Y F., He L Y., Kang S Z., Wang S F*., Fang Y. A novel approach to dynamically optimize the spatio-temporal distribution of crop water consumption. Journal of Cleaner Production. 2021 (SCI收录, IF=7.246ESI:10%~20%)
He L Y., Bao J X., Adre.D., Wang S F*., Guo P. Optimization the spatial distribution of crop water consumption based on a cellular automata model: A case study of the middle Heihe River basin, China.Science of the Total Environment. 2020,720,137569(SCI收录, IF=6.551ESI:10%)
HeL Y., Wang S F*.,Peng C., Tan Q.,Optimization of Water Consumption Distribution Based on Crop Suitability in the Middle Reaches of Heihe River.Sustainability.2018,10,2119; doi:10.3390/su10072119(SCI收录, IF=2.075 )
Tang Y K., Zhang F., Wang S F*.,Zhang X D., Guo S S., Guo P*., A Distributed Interval Nonlinear Multiobjective Programming Approach for Optimal irrigation water management in an arid area. Agric. Water Manage. 2019, 220:13-26 (SCI收录, IF=2.603ESI:10%~20%)
Kang J., Zi X.,Wang S F*.,He L Y., Evaluation and Optimization of Agricultural Water Resources Carrying Capacity in Haihe River Basin, China..Water. 2019,11,999:doi:10.3390/w11050999(SCI收录, IF=2.069)
Zhang F., Enge B.A., Zhang C L., Guo S S., Guo P*.,Wang S F*.,Agricultural production planning approach based on interval fuzzy credibility-constrained bi-level programming and Nerlove supply response theory. Journal of Cleaner Production. 2019(SCI收录, IF=7.246ESI:10%~20%)
Wang S F*., VijayP. Singh. Spatio-Temporal Variability of Soil Water Content under Different Crop Covers in Irrigation Districts of Northwest China. Entropy. 2017, 19, 410; doi:10.3390/e19080410(SCI收录, IF = 1.821)
Sun H Y, Wang S F*, Hao X M., An Improved Analytic Hierarchy Process Method for the evaluation of agricultural water management in irrigation districts of north China. Agric. Water Manage. 2017, 179:324-337 (SCI收录, IF = 2.603 ESI:10%~20%)
Liu X, Wang S F* , Xue H, Singh VP .Simulating Crop Evapotranspiration Response under Different Planting Scenarios by Modified SWAT Model in an Irrigation District, Northwest China. 2015,PLOS ONE 10(10): e0139839. doi:10.1371/journal. pone.0139839(SCI收录, IF = 3.234 ESI:10%~20%)
Liu X, Wang S F*.,Huo Z L, Hao X M., Li F S. Optimizing layout of pumping well in irrigation district for groundwater sustainable use in northwest China. Hydrological Processes. 2015,29,4188-4198 (SCI/EI收录, IF = 2.768)
Liu X., Wang S F*.,Wang Y J., Kang S Z., Hao X M., Li F S. Comprehensive evaluation of farmland infrastructure in arid area of northwest China. Irrigation and Drainage. 2014, 63(5):561-572(SCI收录, IF = 0.72)
Wang S F,Kang S Z.,Zhang L., Li F S.Modeling the hydrologicalresponse to different land-use and climate change scenarios in the Zamu River Basin of Northwest China[J].Hydrological Processes,2008,22: 2502–2510(SCI/EI收录, IF = 2.768)
Wang S F *,Liu X. Runoff response of Zamu River basin to IPCC climate change scenarios in Northwest China.Communications in Computer and Information Science(Communications in Computer and Information Science), 2013, Vol.399, 223-231(EI收录)
Sun, Haoyang ;Wang,Sufen*; Hao, Xinmei ; Liu, Xin ; Kang, Jian.Analysis and trend prediction of water utilization structure in Haihe River Basin.Communications in Computer and Information Science(Communications in Computer and Information Science), 2013, Vol.398.692-703(EI收录)
Wang S.F., Kang S.Z. Streamflow variety to climate change in the Zamu River Basin .Abstracts of Bi-Annual Conference of Chinese Society of Agricultural Engineering. 2007
王素芬.黄河流域灌区节水农业高效管理对策.民主与科学.2019(3)178:58-60
魏榕,王素芬,訾信.区域用水结构演变研究进展. 中国农村水利水电, 2019, (10): 81-83
陈世超,杜太生,王素芬.基于模糊c均值聚类法的玉米农田管理分区研究. 农业机械学报, 2019, 50(11): 293-300
刘鑫,王素芬,郝新梅.基于GIS与熵权法的红崖山灌区机井空间布局适宜性评价.农业工程学报(EI),2013,29(2):101-109
刘鑫,王素芬.灌区机井布局理论及方法研究进展.节水灌溉.2012,1:70-74
户广勇,王素芬,杨杰. 河西走廊地区春小麦需水量驱动因素分析.节水灌溉. 2016. 1:151-157
单纯宇,王素芬.海河流域作物水足迹研究.灌溉排水学报,2016,35(5):50-55
牛亚婷,王素芬.基于SPI的黄河流域干旱时空特征分析.灌溉排水学报,2015,34(4):85-90
Sufen Wang,liyun Wang.Grey model and Linear regression approaches to agricultural water consumption forecasting in the Shiyang River Basin.2010 International conference on Engineering computation.2010,(9): 53-59 (ISTP)
王素芬,马黎华.基于时间序列的农业供水灰色建模.现代节水高效农业与生态灌区建设[M].2010,585-590
Li SE,Kang SZ,LI FS,Du TS ,Tong L,Wang SF,Lu HN.Greater effect of canopy conductance in regulating the energy partition above the maize field in arid northwest China[J].Hydrological Processes,2012(on line)(SCI/EI收录, IF = 2.768)
李建芳, 粟晓玲, 王素芬. 基于基尼系数的内陆河流域用水公平性评价—以石羊河流域为例[J]. 西北农林科技大学学报(自然科学版).2010,38(8):217-222
专著
《西北旱区绿洲农业水转化多过程耦合与高效用水调控--以甘肃河西走廊黑河流域为例》[M].北京:科学出版社,2020
《中国北方主要作物需水量与耗水管理》 [M].北京:中国水利水电出版社,参编,2018
《西北旱区水资源转化消耗规律及节水调控模式》[M].北京:中国水利水电出版社,参编,2009
《喷灌与微灌技术应用》[M].北京:中国水利水电出版社,参编,2015.,