高学睿
基本信息
姓名:高学睿,性别:男,职称:研究员,学历:博士
部门:水土保持科学与工程学院(水土保持研究所)国家节水灌溉杨凌工程技术研究中心
专业方向:流域治理与水土资源管理
工作经历
2013.7-2015.6,中国水利水电科学研究院,工程师;
2015.7-2016.12,西北农林科技大学水保所,助理研究员;
2017.1-2023.6,西北农林科技大学水保所,副研究员;
2020.06-2021.05,陕西省发改委农村经济处挂职锻炼;
2023.7-2023.12,西北农林科技大学水保学院(水保所),副研究员;
2024.1-至今,西北农林科技大学水保学院(水保所),研究员
荣誉获奖
(1)联合国环境规划署全球人居环境绿色技术奖,Photovoltaic Solar Water Pumping for the Conservation of Grassland and Farmland in China,2014年
(2)神农中华农业科技奖,西北农林科技大学旱区农业绿色高效用水创新团队,2021年,16/18
(3)大禹水利科学技术奖一等奖,海河流域水资源衰减机理与演变预测,2022年,12/15
(4)2024 年,成果入选第七届数字中国建设峰会“十佳解决方案”;
(5)2020年,获高等学校水利类专业教学成果一等奖;
(6)2014年,获北京市优秀工程咨询成果一等奖;
(7)2015年,获山东省水利软科学优秀成果一等奖;
(8)2011年,获中国水利学会青年科技创新优秀成果二等奖。
(9)2022 年,获中国农业节水与农村供水技术协会优秀论文一等奖;
(10)2024年,获第三届江苏省科技期刊优秀论文奖;
(11)2025年-至今,陕西省生态学会常务理事;
(12)中国水利学会第六届、第七届青年科技委员会委员;
(13)陕西省秦岭生态环境保护“青年学者”。
科学研究
主要从事变化环境下流域水循环过程模拟、适水发展与水资源管理、干旱半干旱地区水土资源管理和“水-能-粮-生”系统解耦、模拟和调控研究等领域研究,发展了高分辨率网格尺度旱作农田供需水过程与适水度评价方法,牵头开发农田水平衡过程模型(RWBAT4.0),提出了考虑实体水-虚拟水统筹的适水格局优化策略。
承担科研项目情况:先后主持国家自然科学基金青年项目、面上项目、重点项目子课题等3项;主持国家重点研发计划项目子课题、中国工程院重大咨询研究项目子课题等4项;主持陕西省自然科学基础研究计划青年项目和重点项目2项;主持国家重点实验室开放基金、中国科学院STS项目子课题、陕西省农业协同创新与推广联盟软科学项目等其他项目10余项。
部分项目列表:
(1)黄土高原小流域植被“适水-保土-固碳”多维提升机制与优化调控(国家自然科学基金面上项目,No. 42377346,2024-2027,主持)
(2)坡面蓄水-耗水-保土协同的产汇流生态化调控策略(国自然联合基金重点项目子课题,No.U22A20613-4,2023-2026,主持)
(3)城市生活单元耗用水过程机理与模拟(国家自然科学基金青年项目,No. 51409275,2015-2017,主持)
(4)黄土高原旱作适水格局评价与优化策略研究(“十四五”国家重点研发计划项目子课题,2022-2025,主持)
(5)全国虚拟水通量核算与时空演化解析(“十三五”国家重点研发计划项目子课题,2016-2019,主持)
(6)面向水资源可持续利用的综合评价研究(“十三五”国家重点研发计划项目子课题,2018-2021,主持)
(7)变化环境下引汉济渭工程可调水与需水演变预测与供水安全保障对策(陕西省自然科学基础研究计划重点项目,2022-2024,主持)
(8)董铺、大房郢水库防汛安全保障项目工程总承包(EPC)洪水预报模型及调度模型建设(中电建西北院委托项目,2023-2025,主持)
(9)黄土高原典型区域植被碳汇核算及水资源约束下空间格局优化调控(中央引导地方科技发展资金项目子课题,主持)
(10)变化环境下黄土高原典型区雨水资源化潜力分布式评价(陕西省自然科学基础研究计划青年项目,2016-2017,主持)
(11)小流域生态水文过程模拟与植被优化调控研究(国家重点实验室开放研究基金,2021-2023,主持)
(12)我国粮食生产水足迹时空格局及协同安全保障策略(中国工程院重大咨询研究项目子课题,2016-2017,主持)
(13)流域综合治理对水文过程调控效应(中国科学院STS项目子课题,2016-2017,主持)
(14)我国主要煤电基地火电生产水足迹与虚拟水流动格局(国家重点实验室开放基金,2016-2018,主持)
(15)极端气候对陕西农业生产的影响研究(陕西省农业协同创新与推广联盟软科学项目,2022-2023,主持)
(16)我省黄河流域湿地资源监测与用水过程解析(陕西省林科院合作项目,2020-2021,主持)
(17)引汉济渭工程洪水资源利用专题研究(中国电建北京勘测设计研究院有限公司合作项目,2019-2022,主持)
代表性论著:
先后在Nature旗下期刊npj Urban Sustainability, Scientific Data以及领域内主流期刊Applied Energy, Journal of Hydrology, Agricultural Water Management, Journal of Cleaner Production, 农业工程学报,生态学报,水资源保护等发表论文80余篇,其中第一/通讯作者发表的SCI/EI期刊收录论文43篇。完成著作5部,申请专利和软著15件,参加国内/国际学术会议并做主题和大会报告10余次。
[1] Xuerui Gao, Jiahong Liu, Jun Zhang, Jinyue Yan, Shujun Bao, He Xu, Tao Qin. Feasibility evaluation of solar photovoltaic pumping irrigation system based on analysis of dynamic variation of groundwater table. Applied Energy, 2013, 105, 182-193
[2] Xuerui Gao, Yong Zhao, Shibao Lu, Qianyun Chen, Tingli An, Xinxueqi Han, La Zhuo. Impact of coal power production on sustainable water resources management in the coal-fired power energy bases of Northern China. Applied Energy, 2019, 250: 821-833
[3] Jichao Wang, Xuerui Gao*, Kejing Huang, Yujie Yuan, Ai Wang, Leihua Dong, Xining Zhao*. A remote sensing-based method for high-resolution crop water footprint quantification in an irrigation district with complex planting structure, Journal of Hydrology, 2023, 617:129030
[4] Xining Zhao, Jichao Wang, Yelu Ding, Xiaodong Gao, Changjian Li, Hongwei Huang, Xuerui Gao*. High-resolution (10 m) dataset ofmulti-crop planting structure on the Loess Plateau during 2018–2022, Scientific Data, 2025, 12:1190.
[5] Hongwei Huang, Menglong Fan, Xinshi Zhang, Shuyu Zhang, Xining Zhao, Yong Zhao,Yangzi Zhao,Xuerui Gao*. China’s mega-city clusters grab water resources and carbon credit from vulnerable hinterlands, npj Urban Sustainability, 2026, DOI:10.1038/s42949-025-00279-9
[6] Xuerui Gao, Chengsheng Yan, Yubao Wang, Xining Zhao, Yong Zhao, Miao Sun, Shouzhang Peng. Attribution analysis of climatic and multiple anthropogenic causes of runoff change in the Loess Plateau—A case-study of the Jing River Basin. Land Degradation and Development, 2020, 31(13): 1622-1640
[7] Xuerui Gao, Qi Zhao, Xining Zhao, Pute Wu, Wenxiang Pan, Xiaodong Gao, Miao Sun, Temporal and spatial evolution of the standardized precipitation evapotranspiration index (SPEI) in the Loess Plateau under climate change from 2001 to 2050. Science of the Total Environment, 2017, 595: 191-200
[8] Xuerui Gao, Chuiyu Lu, Qinghua Luan, Shuyu Zhang, Jiahong Liu, Dongmei Han. Mapping Farmland-Soil Moisture at a Regional Scale Using a Distributed Hydrological Model: Case Study in the North China Plain. Journal of Irrigation and Drainage Engineering, 2016, 142 (9): 04016029
[9] Miao Sun#, Xuerui Gao#, Yulin Zhang, Xiaolin Song, Xining Zhao*. A new solution of high-efficiency rainwater irrigation mode for water management in apple plantation: Design and application, Agricultural Water Management, 2022, 259: 107243
[10] Hongwei Huang, Shan Jiang, Shuyu Zhang, Yuemeng Wang, Jichao Wang, Xining Zhao, Xuerui Gao*. Agricultural and energy products trade intensified the water scarcity in the grain and energy base in northern China. Agricultural Water Management, 2025, 307, 109208.
[11] Xuerui Gao, Miao Sun, Qinghua Luan, Xining Zhao, Jichao Wang, Guohua He, Yong Zhao. The spatial and temporal evolution of the actual evapotranspiration (AET) based on the remote sensing method in the Loess Plateau. Science of the Total Environment, 2020, 708: 135111
[12] Yujie Yuan, Xuerui Gao*, Kejing Huang, Jichao Wang, Xuehua Zhao, Xiaodong Gao, Anxin Wu, Xining Zhao. Evolution of the water–carbon relationship at basin scale under the background of a vegetation restoration program. Land Degradation & Development, 2023, 34(10): 2975-2989
[13] Shibao Lu, Xuerui Gao*, Pute Wu, Wei Li, Xiao Bai, Miao Sun, Ai Wang. Assessment of the treatment of domestic sewage by a vertical-flow artificial wetland at different operating water levels. Journal of Cleaner Production, 2019, 208, 649-655
[14] Tingli An, Lizhen Wang, Xuerui Gao*, Xinxueqi Han, Yong Zhao, Lixing Lin, Pute Wu. Simulation of the virtual water flow pattern associated with interprovincial grain trade and its impact on water resources stress in China. Journal of Cleaner Production, 2021, 288, 125670
[15] Xinxueqi Han, Yong Zhao, Xuerui Gao*, Shan Jiang, Lixing Lin, Tingli An. Virtual water output intensifies the water scarcity in Northwest China: Current situation, problem analysis and countermeasures, Science of the Total Environment, 2021, 765: 144276
[16] Xinxueqi Han, Yong Zhao, Xuerui Gao*, Yubao Wang, Shan Jiang, Yongnan Zhu, Tingli An. The historical footprint and future challenges of water-energy-food nexus research: a bibliometric review towards sustainable development, Environmental Reviews, 2021, 29(2): 260-276
[17] Lixing Lin, Xuerui Gao*, Yong Zhao, Lizhen Wang, Tingli An, Chang Liu, Yougang Qiao, Pute Wu. Evaluation of the water consumption of animal products and the virtual water flow pattern associated with interprovincial trade in China, Journal of Cleaner Production, 2021, 328: 129599
[18] Ai Wang, Xuerui Gao*, Zeyu Zhou, Hao Yang, Xuehua Zhao, Yuemeng Wang, Min Li, Xining Zhao*. Dynamic responses of tree-ring growth to drought over Loess Plateau in the past three decades, Ecological Indicators, 2022, 143: 109423
[19] Yuemeng Wang, Shuyu Zhang, Hongwei Huang, Lizhen Wang, Xinxueqi Han, Nana Zhao, Xining Zhao, Yong Zhao, Xuerui Gao*. A new water allocation scheme considering the optimization of industrial structures in arid areas of the Chinese Loess Plateau. Journal of Hydrology: Regional Studies, 2023, 49: 111503
[20] Miao Sun, Chengsheng Yan, Nana Zhao, Xining Zhao*, Xuerui Gao*, Yingxin Lian, Yujie Yuan, Hao Yang. Evaluating the long-term ecohydrological suitability of restoration efforts in a typical watershed of the Loess Plateau, Hydrological Processes, 2021, 35: e14362
[21] Jichao Wang, Hongwei Huang, Ariyasena H.H.S., Jian Zhao, Xinyue Zhang, Xuerui Gao*, Xining Zhao, Yangzi Zhao. A UAV-Based Method for Root Zone Soil Moisture Modeling of Different Farmland Scale with Grain and Economic Crops, Agricultural Water Management, 2025.
[22] Yujie Yuan, Jichao Wang, Xuerui Gao*, Kejing Huang, Xining Zhao. Optimizing planting management practices considering a suite of crop water footprint indicators -A case study of the Fengjiashan Irrigation District, Agricultural Water Management, 2025, 307: 109261.
[23] Yujie Yuan, Xueping Zhu, Xining Zhao, Xuerui Gao*. Vegetation Optimization Methods Considering Water Supply Security, Vegetation Carbon Sequestration, and Sediment Reduction Benefits: A Case Study of the Yanhe River Basin on the Loess Plateau, Land Degradation & Development, 2025, 36(8): 2719-2733.
[24] 高学睿, 董斌, 秦大庸, 孙宁宁, 张芝永. 用DrainMOD模型模拟稻田排水与氮素流失.农业工程学报, 2011, 27 (6): 52-58
[25] 高学睿,陆垂裕,秦大庸,栾清华,胡剑,时元智.基于URMOD模型的市区蒸散发模拟与遥感验证.农业工程学报, 2012, 28 (S1): 117-123
[26] 高学睿, 闫程晟, 王玉宝, 赵西宁, 赵旗, 吴普特. 黄土高原典型区雨水资源化潜力模拟与评价. 农业机械学报, 2020, 51 (1): 275-283
[27] 赵勇, 黄可静, 高学睿*, 安婷莉, 何国华, 姜珊. 黄河流域粮食生产水足迹及虚拟水流动影响评价. 水资源保护, 2022, 38 (4): 39-47
[28] 丁也璐, 赵娜娜, 黎明, 梁梦茵, 高学睿*, 王纪超, 赵西宁. 陕北农田作物生产的碳源/汇及碳足迹空间特征分析. 生态学报, 2024, 44(11): 4574-4583
专著、专利和软著:
(1)刘家宏,高学睿,刘淼,秦韬,栾清华. 海河流域土壤水监测数据集成与土壤水效用评价, 科学出版社, 2015. 06
(2)赵西宁,高学睿,高晓东. 黄土高原植被干旱过程评价与适水格局调控, 科学出版社,2025,11
(3)王浩,褚俊英,栾清华,刘扬,高学睿,秦韬. 海河流域城市水循环模式, 科学出版社,2016. 01
(4)高学睿, 闫程晟, 吴普特, 赵西宁等,一种河流径流量的研究方法, 2022-10-11, ZL201811355723.8
(5)高学睿,王纪超,陈镜元. 旱作农田水平衡过程与适水格局评价系统V1.0, 2025SR0085990, 2025-1-14
联系方式
电话: 15114808319
传真: 029-87011354
电子邮件:gaoxr@nwsuaf.edu.cn; gaoxuerui666@163.com
通讯地址:陕西杨凌西农路28号水土保持研究所西区210室,712100