个人资料
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个人简介四川广安人,2020年中国农业大学杰出人才引进,入选国家级青年人才计划,现任中国农业大学水利工程系教授、博士生导师。主要从事极端气候与农业水文过程方面的前沿基础研究,在Sci. Adv.、ES&T、WRR、GBC、AFM、Science、NF、PNAS、NC等期刊发表70余篇论文,受邀担任Nature旗下期刊Communications Earth & Environment及中国工程院期刊Frontiers of Agricultural Science and Technology等6个高水平期刊副主编/编辑,以及50余个国际期刊审稿人(包括NCC、NF、NS、One Earth、ES&T、WRR、AFM、GEC等)。荣获2017年度国家优秀自费留学生奖学金和2018年度瑞士Otto Jaag水资源保护奖(唯一华人获奖者)、2023年北京市优秀青年人才等奖励;获得中国国家自然科学基金和瑞士国家科学基金等项目资助。 个人主页: ORCID: http://orcid.org/0000-0002-8699-3677 ResearchGate: https://www.researchgate.net/profile/wenfeng_liu4 Google Scholar: https://scholar.google.ch/citations?user=mydWnZkAAAAJ 教学科研概况十篇代表性第一/通讯作者论文 [1] Liu, W.*; Li, M.; Huang, Y.; Makowski, D.; Su, Y.; Bai, Y.; Schauberger, B.; Du, T.; Abbaspour, K. C.; Yang, K.; Yang, H.; Ciais, P., Mitigating nitrogen losses with almost no crop yield penalty during extremely wet years. Science Advances 2024, 10, (9), eadi9325. https://doi.org/10.1126/sciadv.adi9325 [2] Liu, J.; Fu, Z.; Liu, W.*, Impacts of precipitation variations on agricultural water scarcity under historical and future climate change. Journal of Hydrology 2023, 617. https://doi.org/10.1016/j.jhydrol.2022.128999 [3] Liu, W.*; Liu, X.; Yang, H.; Ciais, P.; Wada, Y., Global water scarcity assessment incorporating green water in crop production. Water Resources Research 2022, e2020WR028570. https://doi.org/10.1029/2020WR028570 [4] Liu, W.*; Ciais, P.; Liu, X.; Yang, H.; Hoekstra, A. Y.; Tang, Q.; Wang, X.; Li, X.; Cheng, L., Global phosphorus losses from croplands under future precipitation scenarios. Environmental Science & Technology 2020, 54, (22), 14761-14771. https://doi.org/10.1021/acs.est.0c03978 [5] Liu, W.*; Yang, H.*; Ciais, P.; Kummu, M.; Hoekstra, A.Y., China's food supply sources under trade conflict with the United States and limited domestic land and water resources. Earth’s Future 2020, 8, (3), e2020EF001482. https://doi.org/10.1029/2020EF001482 [6] Liu, W.*; Antonelli, M.; Kummu, M.; Zhao, X.; Wu, P.; Liu, J.; Zhuo, L.; Yang, H., Savings and losses of global water resources in food‐related virtual water trade. Wiley Interdisciplinary Reviews: Water 2018, 6, (1), e1320. https://doi.org/10.1002/wat2.1320 [7] Liu, W.*; Yang, H.; Folberth, C.; Müller, C.; Ciais, P.; Abbaspour, K.C.; Schulin, R., Achieving high crop yields with low nitrogen emissions in global agricultural input intensification. Environmental Science & Technology 2018, 52, 13782–13791.https://doi.org/10.1021/acs.est.8b03610 [8] Liu W.*; Yang H.; Ciais P.; Stamm C.; Zhao X.; Williams J.; Abbaspour K.; Schulin R., 2018.Integrative crop-soil-management modelling to assess global phosphorus losses from major crop cultivations.Global Biogeochemical Cycles 2018, 32, 1074–1086. https://doi.org/10.1029/2017GB005849 [9] Liu, W.; Antonelli, M.; Liu, X.; Yang, H., Towards improvement of grey water footprint assessment: with an illustration for global maize cultivation. Journal of Cleaner Production 2017, 147, 1–9. https://doi.org/10.1016/j.jclepro.2017.01.072 10] Liu, W.*; Yang, H.; Folberth, C.; Wang, X.; Luo, Q.; Schulin, R., Global investigation of impacts of PET methods on simulating crop-water relations for maize. Agriculture and Forest Meteorology 2016, 221, 164–175.https://doi.org/10.1016/j.agrformet.2016.02.017
十篇代表性合作论文 [11] Chen, S.; Liu, W.; Yan, Z.; Morel, J.; Parsons, D.; Du, T., Adaptation strategy can ensure seed and food production with improving water and nitrogen use efficiency under climate change. Earth's Future 2023, 11, (2), e2022EF002879. https://doi.org/10.1029/2022EF002879 [12] Cinner, J. E.; Caldwell, I. R.; Thiault, L.; Ben, J.; Blanchard, J. L.; Coll, M.; Diedrich, A.; Eddy, T. D.; Everett, J. D.; Folberth, C.; Gascuel, D.; Guiet, J.; Gurney, G. G.; Heneghan, R. F.; Jagermeyr, J.; Jiddawi, N.; Lahari, R.; Kuange, J.; Liu, W.; Maury, O.; Muller, C.; Novaglio, C.; Palacios-Abrantes, J.; Petrik, C. M.; Rabearisoa, A.; Tittensor, D. P.; Wamukota, A.; Pollnac, R., Potential impacts of climate change on agriculture and fisheries production in 72 tropical coastal communities. Nature Communications 2022, 13, (1), 3530. https://doi.org/10.1038/s41467-022-30991-4 [13] Franke, J. A.; Muller, C.; Minoli, S.; Elliott, J.; Folberth, C.; Gardner, C.; Hank, T.; Izaurralde, R. C.; Jagermeyr, J.; Jones, C. D.; Liu, W.; Olin, S.; Pugh, T. A. M.; Ruane, A. C.; Stephens, H.; Zabel, F.; Moyer, E. J., Agricultural breadbaskets shift poleward given adaptive farmer behavior under climate change. Global Change Biology 2022, 28, 167-181.https://doi.org/10.1111/gcb.15868 [14] Liu, X.; Liu, W.; Liu, L.; Tang, Q.; Liu, J.; Yang, H., Environmental flow requirements largely reshape global surface water scarcity assessment. Environmental Research Letters 2021, 16, (10), 104029.https://doi.org/10.1088/1748-9326/ac27cb [15] Thiery, W.; Lange, S.; Rogelj, J.; Schleussner, C. F.; Gudmundsson, L.; Seneviratne, S. I.; Andrijevic, M.; Frieler, K.; Emanuel, K.; Geiger, T.; Bresch, D. N.; Zhao, F.; Willner, S. N.; Buchner, M.; Volkholz, J.; Bauer, N.; Chang, J.; Ciais, P.; Dury, M.; Francois, L.; Grillakis, M.; Gosling, S. N.; Hanasaki, N.; Hickler, T.; Huber, V.; Ito, A.; Jagermeyr, J.; Khabarov, N.; Koutroulis, A.; Liu, W.; Lutz, W.; Mengel, M.; Muller, C.; Ostberg, S.; Reyer, C. P. O.; Stacke, T.; Wada, Y., Intergenerational inequities in exposure to climate extremes. Science 2021, 374, (6564), 158-160.https://doi.org/10.1126/science.abi7339 [16] Jägermeyr, J.; Müller, C.; Ruane, A. C.; Elliott, J.; Balkovic, J.; Castillo, O.; Faye, B.; Foster, I.; Folberth, C.; Franke, J. A.; Fuchs, K.; Guarin, J. R.; Heinke, J.; Hoogenboom, G.; Iizumi, T.; Jain, A. K.; Kelly, D.; Khabarov, N.; Lange, S.; Lin, T.-S.; Liu, W.; Mialyk, O.; Minoli, S.; Moyer, E. J.; Okada, M.; Phillips, M.; Porter, C.; Rabin, S. S.; Scheer, C.; Schneider, J. M.; Schyns, J. F.; Skalsky, R.; Smerald, A.; Stella, T.; Stephens, H.; Webber, H.; Zabel, F.; Rosenzweig, C., Climate impacts on global agriculture emerge earlier in new generation of climate and crop models. Nature Food 2021.https://doi.org/10.1038/s43016-021-00400-y [17] Wang, X.; Muller, C.; Elliot, J.; Mueller, N. D.; Ciais, P.; Jagermeyr, J.; Gerber, J.; Dumas, P.; Wang, C.; Yang, H.; Li, L.; Deryng, D.; Folberth, C.; Liu, W.; Makowski, D.; Olin, S.; Pugh, T. A. M.; Reddy, A.; Schmid, E.; Jeong, S.; Zhou, F.; Piao, S., Global irrigation contribution to wheat and maize yield. Nature Communications 2021, 12, (1), 1235. https://doi.org/10.1038/s41467-021-21498-5 [18] Zabel, F.; Muller, C.; Elliott, J.; Minoli, S.; Jagermeyr, J.; Schneider, J. M.; Franke, J. A.; Moyer, E.; Dury, M.; Francois, L.; Folberth, C.; Liu, W.; Pugh, T. A. M.; Olin, S.; Rabin, S. S.; Mauser, W.; Hank, T.; Ruane, A. C.; Asseng, S., Large potential for crop production adaptation depends on available future varieties. Global Change Biology 2021, 27, (16), 3870-3882. https://doi.org/10.1111/gcb.15649 [19] Jägermeyr, J., Robock, A., Elliott, J., Müller, C., Xia, L., Khabarov, N., Folberth, C., Schmid, E., Liu, W., Zabel, F., Rabin, S.S., Puma, M.J., Heslin, A.C., Franke, J., Foster, I., Asseng, S., Bardeen, C.G., Toon, O.B., Rosenzweig, C., 2020. A regional nuclear conflict would compromise global food security. Proceedings of the National academy of Sciences of the United States of America, 117, 7071–7081. https://doi.org/10.1073/pnas.1919049117 [20] Müller, C.; Elliott, J.; Chryssanthacopoulos, J.; Arneth, A.; Balkovic, J.; Ciais, P.; Deryng, D.; Folberth, C.; Glotter, M.; Hoek, S.; Iizumi, T.; Izaurralde, R. C.; Jones, C.; Khabarov, N.; Lawrence, P.; Liu, W.; Olin, S.; Pugh, T. A. M.; Ray, D. K.; Reddy, A.; Rosenzweig, C.; Ruane, A. C.; Sakurai, G.; Schmid, E.; Skalsky, R.; Song, C. X.; Wang, X. H.; de Wit, A.; Yang, H., Global gridded crop model evaluation: benchmarking, skills, deficiencies and implications. Geoscientific Model Development 2017, 10, (4), 1403-1422.https://doi.org/10.5194/gmd-10-1403-2017 社会职务期刊编委: 1) Communications Earth & Environment 2) Frontiers in Sustainable Food Systems 3) Frontiers of Agricultural Science & Engineering 4) Frontiers in Agronomy 5) Water 6) 南水北调与水利科技 期刊审稿人: 1) Nature Climate Change 2) Nature Sustainability 3) Nature Food 4) One Earth 5) Environmental Science & Technology 6) Global Environmental Change 7) Water Resources Research 8) Water Research 9) Plants, People, Planet 10) Communications Earth & Environment 11) iScience 12) Global Biogeochemical Cycles 13) Agricultural and Forest Meteorology 14) Hydrology and Earth System Sciences 15) Economic Systems Research 16) Global Change Biology Bioenergy 17) Science of the Total Environment 18) Environmental Pollution 19) Environmental Research Letters 20) Agricultural Water Management 21) Journal of Cleaner Production 22) Advances in Water Resources 23) Global and Planetary Change 24) Sustainable Cities and Society 25) Environmental Science and Pollution Research 26) Journal of Environmental Management 27) Atmospheric Research 28) Hydrological Processes 29) Atmospheric ResearchHydrology Research 30) International Journal of Climatology 31) Catena 32) Geography and Sustainability 33) Geo-Spatial Information Science 34) Frontiers of Agricultural Science & Engineering 35) Journal of Integrative Agriculture 36) Irrigation and Drainage ...
活动动态研究领域1. 大尺度水文与作物模型模拟; 2. 水-粮-环境-贸易耦合研究; 3. 水资源安全与粮食安全评价; 4. 极端气候与农业水文过程; 5. 遥感、大数据分析与机器学习。 开授课程
本科生课程:近十年课程数据
科研项目
纵向项目
论文科技成果
软件著作
荣誉及奖励
招生信息本课题组常年欢迎科研助理、访问学生、硕士生、博士生、及博士后咨询相关课题、项目与合作。 由于团队发展和项目需要,面向国内外常年公开招聘全职博士后1-2名,欢迎相关人才加入。课题组将为入选者提供充足的科研经费支持,丰厚的科研成果奖励,以及全方位的科研训练指导。 一、应聘条件与岗位职责 1、符合中国农业大学博士后招收条件; 2、获得博士学位3年以内或即将获得博士学位; 3、年龄在35周岁及以下(含35周岁); 4、基础理论坚实、专业能力强,具有水文水资源、农业工程、遥感与地理信息系统等方面的专业背景,优先考虑具有较好的编程或大数据处理能力的申请者; 5、具有高度责任心、较强的独立工作能力和团队合作精神; 6、具有较高的英文阅读和写作能力以及良好的口头表达能力。近年来,在相关领域以第一作者发表过SCI科研论文; 7、入选者办理入站手续时须将人事关系转入中国农业大学并保证全脱产从事博士后研究工作; 8、入站后将围绕大尺度水文与作物模拟、粮食与水资源安全评估、极端气候对水资源与水环境影响等方面开展研究。 二、相关待遇 按照学校分类管理的要求,博士后招收根据资助渠道、评价标准不同,依据应聘类型制定相关待遇政策(国家项目博士后、学校项目博士后和自筹经费博士后),合同期原则上为2年,进站之后享受学校规定的博士后人员相关政策。 1、国家项目博士后:由国家博士后专项经费资助,根据入选的项目类型和相关政策兑现待遇,如博士后创新人才支持计划和博士后国(境)外交流项目。提供充足的科研经费,并依据科研成果,再给予相应绩效奖励。 2、学校项目博士后:资助总额20万+元/年,包括工资、住房补贴、学校和个人缴纳的各类税费、保险等。特别优秀者待遇面议。提供充足的科研经费,并依据科研成果,再给予相应绩效奖励。 3、出站后优先推荐国内知名高校和科研机构工作,特别优秀者可协助申请学校教师岗位。 4、其它详细内容请参考中国农业大学人才工作办公室“博士后”专题网站内容(http://rcb.cau.edu.cn/col/col35796/index.html)。 三、应聘程序 有意者请将以下材料发送至wenfeng.liu@cau.edu.cn: 1、个人简历(包含已发表科技论文情况); 2、博士研究生学历、学位证书及复印件; 3、其他能证明本人能力的相关资料; 4、一页纸以内的工作设想。 硕士研究生
博士研究生
团队展示 |