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个人简介黄权中,男,籍贯四川,工学博士,教授,博士生导师。在中国农业大学先后获工学学士、硕士、博士学位。1998年6月参加工作至今,先后受聘为中国农业大学助教、讲师、副教授、教授,期间分别赴以色列(2001)、英国(2005)、葡萄牙(2010)、美国(2012)做访问学者。研究领域为农业水文过程和水土环境效应及调控,发表学术论文90余篇,其中被SCI/EI收录60余篇,SCI引用1700余次;合作出版专著与会议文集3部。研究成果获教育部自然科学奖2项,获国际农业与生物系统工程学会青年才俊奖1项;获国家发明专利10件,软件著作权6项。现任中国-以色列国际农业研究培训中心副主任,负责中心对外科研合作、学术交流及国家援外培训,先后培训110多个国家的专家、学者和官员700多人次。 教学科研概况讲授课程: 本科生课程《土壤与农作学》、《土壤学基础》、《灌溉排水工程学》; 研究生课程《污水资源化原理与农业应用》、《溶质运移》。 研究方向: 近年围绕农业水循环与水转化过程、农业节水的生态环境效应与调控、变化环境条件下水土环境演变规律及应对、作物因需灌溉及智慧农业、多孔介质水热盐运移、再生水的安全利用等方向开展相关研究工作; 主持相关的国家及省部级科研项目10余项、参与项目20余项;在《Advances in Water Resources》、《Journal of Hydrology》、《Agricultural Water Management》、《Irrigation and Drainage》、《水利学报》、《农业工程学报》等国内外学术期刊及学术会议发表论文90余篇,被SCI/EI收录论文60余篇;参编专著/学术论文集3部;论文被SCI引用1700余次;获国家发明专利10项,获软件著作权6项。 开展项目: [1] 国家自然科学基金重点项目“水资源刚性约束下黄河流域农业节水机制与调控”,2022.1~ 2025.12,主持 [2] 科技部十四五重点研发项目“灌区水盐周年调控精量技术与智能系统研发”,2021.7~ 2025.12,主持 [3] 内蒙古科技发展资金项目“有机肥外源添加对盐碱地改良及面源污染调控机理研究”,2020.3~ 2023.7,主持 [4] 内蒙古科技推广项目“太阳能抽水蓄能的智能滴灌系统的示范应用”,2020.1~ 2022.12,主持 [5] 国家自然基金面上项目“多重驱动条件下河套灌区土壤水盐时空动态平衡机理研究”,2018.1~ 2021.12,主持 获奖情况: 教育部自然科学二等奖(2019) 中国农业节水和农村供水技术协会二等奖(2019) 中国农业大学研究生课程体系与核心课程建设及实践二等奖(2016) 教育部自然科学二等奖(2011) 全国大学生水利创新设计大赛一等奖指导教师(2011) 中国农业大学优秀班主任(2011) 国际农业与生物系统工程学会青年才俊奖(2004) 发表论文: [1] Pan W, Huang Q*, Huang G, Xing L. Modeling the effects of temperature on the migration and transformation of nitrate during riverbank filtration using HYDRUS-2D [J]. Science of the Total Environment, 2021. [2] 潘梦绮, 黄权中*, 冯榕, 黄冠华. 采用不同监测数据组合反演饱和均质石英砂水热运移参数[J]. 农业工程学报, 2020. [3] Pan W, Huang Q*, Xu Z, Pang G. Experimental investigation and simulation of nitrogen transport in a subsurface infiltration system under saturated and unsaturated conditions [J]. Journal of contaminant hydrology, 2020. [4] Pan M, Huang Q*, Feng R, Xu X, Xiong Y, Huang G. Improving the Estimation of Hydraulic and Thermal Properties of Heterogeneous Media via the Addition of Heat Loss[J]. Vadose Zone Journal, 2019. [5] 黄权中,吕玲娇,徐旭,任东阳,柯隽迪,熊云武,霍再林,黄冠华. 基于遥感反演河套灌区土壤盐分分布及对作物生长影响. 农业工程学报, 2018. [6] Pan W, Huang Q*, Huang G. Nitrogen and organics removal during riverbank filtration in a reclaimed water restored river in Beijing, China. Water, 2018. [7] Pan W, Xiong Y, Huang Q*, Huang G. Removal of Nitrogen and COD from Reclaimed Water during Long-Term Simulated Soil Aquifer Treatment System under Different Hydraulic Conditions. Water, 2017. [8] Zhang H, Xiong Y, Huang G, Xu X, Huang Q*. Effects of water stress on processing tomatoes yield, quality and water use efficiency with plastic mulched drip irrigation in sandy soil of the Hetao Irrigation District. Agricultural Water Management, 2017. [9] Wang J, Huang G*, Li J, Zheng J, Huang Q*. Effect of soil moisture-based furrow irrigation scheduling on melon (Cucumis melo L.) yield and quality in an arid region of Northwest China, Agricultural Water Management, 2017. [10] Yang H, Liu H*, Zheng J, Huang Q*. Effects of regulated deficit irrigation on yield and water productivity of chili pepper (Capsicum annuum L.) in the arid environment of Northwest China. Irrigation Science, 2017. [11] 潘维艳,黄权中*,张子元,普薇如,黄冠华. 不同补水方式下砂壤土渗滤系统对硝态氮去除效果. 农业工程学报, 2017. [12] 潘维艳,普薇如,黄权中*,黄冠华. 典型农渠渠系渗漏的温度示踪与模拟研究, 农业机械学报, 2017. [13] 潘维艳,普薇如,黄权中*,黄冠华. 河岸渗滤系统对再生水净化效果的室内试验研究, 农业机械学报, 2017. [14] 潘梦绮,黄权中*,冯蓉,黄冠华. 基于热示踪的饱和层状介质水热参数反演. 水利学报, 2017. [15] 郝远远,郑建华,黄权中*. 微咸水灌溉对土壤水盐及春玉米产量的影响, 灌溉排水学报, 2016. [16] 柯隽迪,黄权中*,任东阳,冀乃超,黄冠华,徐 旭,吕玲娇.河套灌区节水灌溉对土壤盐分累积规律的模拟研究, 节水灌溉, 2016. [17] Huang Q, G. Huang. Effect of NaCl salt on mineralization and nitrification of a silt loam soil in the North China Plain. International Journal of Agricultural and Biological Engineering, 2009. [18] 黄权中, 黄冠华. 基于R-L定义的分数微分对流-弥散方程有限元解. 武汉大学学报, 2009. [19] 黄权中, 叶德智, 黄冠华, 杨建国, 王诗景, 徐旭, 孟令广, 王军, 邰日坤. 宁夏引黄灌区春玉米微咸水灌溉管理模式研究, 灌溉排水学报, 2009. [20] Huang Q, G. Huang, H. Zhan. A Finite Element Solution for the Fractional Advection-Dispersion Equation. Advances in Water Resources, 2008. [21] Li Y, Huang G, Chen Z, Xiong Y, Huang Q, Xu X, Huo Z. Effects of irrigation and fertilization on grain yield, water and nitrogen dynamics and their use efficiency of spring wheat farmland in an arid agricultural watershed of Northwest China[J]. Agricultural Water Management, 2022. [22] Liu K, Huang G, Simunek J, Xu X, Xiong Y, Huang Q. Comparison of ensemble data assimilation methods for the estimation of time-varying soil hydraulic parameters[J]. Journal of Hydrology, 2021. [23] Liu S, Huang Q, Ren D, Xu X, Xiong Y, Huang G. Soil evaporation and its impact on salt accumulation in different landscapes under freeze-thaw conditions in an arid seasonal frozen region [J]. Vadose Zone Journal, 2021. [24] Ren D, Xu X, Engel B, Huang Q, Xiong Y, Huo Z, Huang G. A comprehensive analysis of water productivity in natural vegetation and various crops coexistent agro-ecosystems [J]. Agricultural Water Management, 2021. [25] Wang W, Wang X, Huo Z, Rong Y, Huang Q, Huang G. Variation and attribution of water use efficiency in sunflower and maize fields in an irrigated semi-arid area[J]. Hydrological Processes, 2021. [26] Xiao X, Xu X, Ren D, Huang Q, Huang G. Modeling the behavior of shallow groundwater system in sustaining arid agroecosystems with fragmented land use[J]. Agricultural Water Management, 2021. [27] Xiong L, Xu X, Engel B, Huang Q, Huo Z, Xiong Y, Han W, Huang G. Modeling agro-hydrological processes and analyzing water use in a super-large irrigation district (Hetao) of arid upper Yellow River basin[J]. Journal of Hydrology, 2021. [28] Xiong L, Xu X, Engel B, Xiong Y, Huang Q, Huang G. Predicting agroecosystem responses to identify appropriate water-saving management in arid irrigated regions with shallow groundwater: Realization on a regional scale [J]. Agricultural Water Management, 2021. [29] Dong L, Xiong Y, Huang Q, Xu X, Huo Z, Huang G. Evaporation-induced salt crystallization and feedback on hydrological functions in porous media with different grain morphologies[J]. Journal of Hydrology, 2021. [30] Li C, Xiong Y, Cui Z, Huang Q, Xu X, Han W, Huang G. Effect of irrigation and fertilization regimes on grain yield, water and nitrogen productivity of mulching cultivated maize (Zea mays L.) in the Hetao Irrigation District of China[J]. Agricultural Water Management, 2020. [31] Li C, Xiong Y, Huang Q, Xu X, Huang G. Impact of irrigation and fertilization regimes on greenhouse gas emissions from soil of mulching cultivated maize (Zea mays L.) field in the upper reaches of Yellow River, China [J]. Journal of Cleaner Production, 2020. [32] Liu K, Huang G, Jiang Z, Xu X, Xiong Y, Huang Q, Simunek J. A gaussian process-based iterative Ensemble Kalman Filter for parameter estimation of unsaturated flow [J]. Journal of Hydrology, 2020. [33] Liu K, Xiong Y, Xu X, Huang Q, Huo Z, Huang G. Modified Model for Simulating Water Flow in Furrow Irrigation [J]. Journal of Irrigation and Drainage Engineering, 2020. [34] Liu M, Xu X, Jiang Y, Huang Q, Huo Z, Liu L, Huang G. Responses of crop growth and water productivity to climate change and agricultural water-saving in arid region[J]. Science of the Total Environment, 2020. [35] Liu K, Huang G, Xu X, Xiong Y, Huang Q, Aimůnek J. A coupled model for simulating water flow and solute transport in furrow irrigation [J]. Agricultural Water Management, 2019. [36] Xiong L, Xu X, Ren D, Huang Q, Huang G. Enhancing the capability of hydrological models to simulate the regional agro-hydrological processes in watersheds with shallow groundwater: Based on the SWAT framework [J]. Journal of Hydrology, 2019. [37] Ren D, Wei B, Xu X, Engel B, Li G, Huang Q, Xiong Y, Huang G. Analyzing spatiotemporal characteristics of soil salinity in arid irrigated agro-ecosystems using integrated approaches [J]. Geoderma, 2019. [38] Jiang Z, Huang Q*, Li G, Li G. Parameters Estimation and Prediction of Water Movement and Solute Transport in Layered, Variably Saturated Soils Using the Ensemble Kalman Filter[J]. Water, 2019. [39] Xue J, Huo Z, Huang Q, Wang F, Boll J, Huang G, Qu Z. Assessing sustainability of agricultural water saving in an arid area with shallow groundwater[J]. Irrigation and Drainage, 2019. [40] Ren D, Xu X, Engel B, Huang Q, Xiong Y, Huo Z, Huang G. Hydrological complexities in irrigated agro-ecosystems with fragmented land cover types and shallow groundwater: Insights from a distributed hydrological modeling method[J]. Agricultural Water Management, 2019. [41] Xu X, Jiang Y, Liu M, Huang Q, Huang G. Modeling and assessing agro-hydrological processes and irrigation water saving in the middle Heihe River basin[J]. Agricultural Water Management, 2019. [42] Xue J, Huo Z, Huang Q, Wang F, Boll J, Huang G, Qu Z. Assessing sustainability of agricultural water saving in arid area with shallow groundwater[J]. Irrigation and Drainage, 2018. [43] Li C, Xiong Y, Qu Z, Xu X, Huang Q, Huang G. Impact of biochar addition on soil properties and water-fertilizer productivity of tomato in semi-arid region of Inner Mongolia, China[J]. Geoderma, 2018. [44] Li Y, Huang G, Gu H, Huang Q, Lou C, Zhang L, Liu H. Assessing the Risk of Phthalate Ester (PAE) Contamination in Soils and Crops Irrigated with Treated Sewage Effluent[J]. Water, 2018. [45] Zhang H, Huang G, Xu X, Xiong Y, Huang Q. Estimating Evapotranspiration of Processing Tomato under Plastic Mulch Using the SIMDualKc Model[J]. Water, 2018. [46] Ren D, Xu X, Huang Q, Huo Z, Xiong Y, Huang G. Analyzing the Role of Shallow Groundwater Systems in the Water Use of Different Land-Use Types in Arid Irrigated Regions, Water, 2018. [47] Ren D, Xu X, Ramos T B, Huang Q, Huo Z, Huang G. Modeling and assessing the function and sustainability of natural patches in salt-affected agro-ecosystems: Application to tamarisk (Tamarix chinensis Lour.) in Hetao, upper Yellow River basin, Journal of Hydrology, 2017. [48] Jiang Y, Xu X, Huang Q, Huo Z, Huang G. Optimizing regional irrigation water use by integrating a two-level optimization model and an agro-hydrological model, Agricultural Water Management, 2016. [49] 能锋田,姜 瑶,徐 旭,黄权中. 基于LH-OAT方法的SWAP-EPIC模型参数敏感性分析, 中国科技论文, 2016. [50] Jiang Y, Xu X, Huang Q, Huo Z, Huang G. Assessment of irrigation performance and water productivity in irrigated areas of the middle Heihe River basin using a distributed agro-hydrological model, Agricultural Water Management, 2015. [51] Wang X, Huang G, Yang J, Huang Q, Liu H, Yu L. An assessment of irrigation practices: Sprinkler irrigation of winter wheat in the North China Plain, Agricultural Water Management, 2015. [52] Xu X, Sun C, Qu Z, Huang Q, Ramos T B, Huang G. Groundwater recharge and capillary rise in irrigated areas of the upper yellow river basin assessed by an agro-hydrological model. Irrigation and Drainage, 2015. [53] 郝远远,徐旭,任东阳,黄权中,黄冠华. 河套灌区土壤水盐和作物生长的HYDRUS-EPIC模型分布式模拟, 农业工程学报, 2015. [54] Wang J, Huang G, Zhan H, Mohanty B P, Zheng J, Huang Q, Xu X. Evaluation of soil water dynamics and crop yield under furrow irrigation with a two-dimensional flow and crop growth coupled model, Agricultural Water Management, 2014. [55] 郝远远,徐旭,黄权中,黄冠华. 土壤水盐与玉米产量对地下水埋深及灌溉响应模拟, 农业工程学报, 2014. [56] Zheng J, Huang G, Wang J, Huang Q, Pereira L S, Xu X, Liu H.Effects of water deficits on growth, yield and water productivity of drip-irrigated onion (Allium cepa L.) in an arid region of Northwest China, Irrigation Science, 2013. [57] Xu X, Huang G, Sun C, Pereira L S, Ramos T B, Huang Q, Hao Y. Assessing the effects of water table depth on water use, soil salinity and wheat yield: Searching for a target depth for irrigated areas in the upper Yellow River basin, Agricultural Water Management, 2013. [58] Zheng J, Huang G, Jia D., Wang J, Mota M, Pereira L, Huang Q, Xu X, Liu H. Responses of drip irrigated tomato (Solanum lycopersicum L.) yield, quality and water productivity to various soil matric potential thresholds in an arid region of Northwest China, Agricultural Water Management, 2013. [59] Xu X, Huang G, Zhan H, Qu Z, Huang Q, Integration of SWAP and MODFLOW-2000 for modeling groundwater dynamics in shallow water table areas, Journal of Hydrology, 2012. [60] Huang G., Huang Q., Zhan H., Evidence of One-dimensional Scale-dependent Fractional Advection Dispersion. Journal of Contaminant Hydrology, 2006. [61] Xiong Y., G. Huang, Huang Q., Modeling Solute Transport in One-Dimensional Homogeneous and Heterogeneous Soil Columns with Continuous Time Random Walk. Journal of Contaminant Hydrology , 2006. [62] Huang G., R. Zhang, Q. Huang. Modeling Soil Water Retention Curve with a Fractal method, Pedosphere, 2006. [63] Nigel W., Huang Q., K. Yilmaz et al. Sustainable Soil Use in the UK. LANDWARDS, 2005. [64] Huang G., Huang Q., Zhan H., Chen J., Xiong Y., S. Feng. Modeling Contaminant Transport in Homogeneous Porous Media with Fractional Advection-dispersion Equation, Science in China, Ser. D Earth Sciences 2005. 社会职务《Frontiers in Agronomy》灌溉部副主编 内蒙古河套灌区管理总局副局长(挂职,2019-2021) 中国农业大学河套灌区研究院核心成员 中国农业大学内蒙古黄河河套教授工作站核心成员 中国农业大学四川威远教授工作站成员 国际农业与生物系统工程(CIGR)学会会员 美国地球物理学会会员 CIGR世界大会(World Congresses)水土分会委员、副秘书长(2014) CIGR国际会议(International Conferences)水土分会执行秘书(2004) 北京水利学会会员 活动动态研究领域1. 多孔介质水-热-盐(溶质)运移机制及定量表征 2. 农田水文与养分过程及高效利用调控 3. 再生水安全利用及污染控制 4. 作物因需灌溉及智慧农业 5. 变化环境条件下水土环境演变规律及应对 开授课程
本科生课程:近十年课程数据
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软件著作
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招生信息研究生招生专业: 水利工程(水文学及水资源方向)、农业水土工程 指导研究生: 指导毕业硕士研究生23名,指导毕业博士研究生3名。 欢迎对农业水文过程和水土环境效应及调控领域感兴趣的本科生(URP)及研究生加入! 联系方式: 通讯地址:北京市海淀区清华东路17号中国农业大学东区151# 办公地址:东校区中以楼B302 邮编:100083 电 话:010-62737148 传 真:010-62737979 E-mail:huangqzh@cau.edu.cn 在读研究生: 硕士研究生
博士研究生
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