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闫浩芳

发布日期:2025-11-03浏览次数:

闫浩芳, 1983年生,博士,博士生导师,2008-2011年于日本爱媛大学(Ehime University)攻读博士学位。2011-2013于日本爱媛大学作物科学研究室任特别研究员, 2013-今入职江苏大学工作,2017-2018年赴荷兰代尔夫特理工大学(Delft University of Technology)留学一年。

主要研究方向为农业微气象及区域农田尺度耗水规律、SPAC系统水肥热耦合运移规律、蒸腾蒸发模型及其在温室微气象环境控制与智慧灌溉系统研发中的应用,同时在流域水文过程模拟与气候变化水文响应方面开展系统研究。主持国家自然科学基金、国家重点研发计划子课题、江苏省自然科学基金等多项科研项目,在蒸腾蒸发建模与气候变化水文响应等领域取得系列创新成果。发表学术论文100余篇,其中第一作者或通讯作者SCI检索论文70余篇;出版专著1部,授权发明专利7件;获江苏省科学技术进步奖1项。


部分代表性论文:

1.Yan H. and Oue H*. (2011) Application of the two-layer model for predicting transpiration from the rice canopy and water surface evaporation beneath the canopy. Agricultural Meteorology, 67(3). 89-97.

2.Zhang C., Yan H*., Shi H., Sugimoto H. (2013) Study of crop coefficient and the ratio of soil evaporation to evapotranspiration in an irrigated maize field in an arid area of Yellow River Basin in China. Meteorology and Atmospheric Physics, 121, 207–214. DOI 10.1007/s00703–013–0264–6.

3.Yan H*, Shi H, Oue H, Zhang C, Xue Z, Cai B, Wang G.(2015b) Modeling bulk canopy resistance from climatic variables for predicting hourly evapotranspiration of maize and buckwheat. Meteorology and Atmospheric Physics 127(3):305–312.

4.张川,闫浩芳*,大上博基,等,(2015). 表层有效土壤水分参数化及冠层下土面蒸发模拟,农业工程学报,31(2):102-107.

5.Zhang C., Yan H*., Takase K, Oue H. (2016) Comparison of the Soil Physical Properties and Hydrological Processes in Two Different Forest Type Catchments. Water Resources. 43(1): 225-237.

6.Darko R, Yuan S, Yan H., Liu J., Abbey A. (2016) Calibration and validation of AquaCrop for deficit and full irrigation of tomato. Int J Agric&Biol Eng., 9(3): 104-110. (中科院二区)

7.Darko R, Yuan S, Yan H., Liu J. Zhu X. (2017). Overview of advances in improving uniformity and water use efficiency of sprinkler irrigation. Int J Agric&Biol Eng, 10(2):1-15. (中科院二区)

8.Yan H*., Zhang C., Oue H., Peng G., Darko R. (2017) Determination of crop and soil evaporation coefficients for estimating evapotranspiration in a paddy field. IJABE. 10(4):130-139. (中科院二区)

9.Yan H*., Zhang C., Gerrits M., Acquah S., Zhang H., Wu H., Zhao B., Huang S., Fu H. (2018) Parametrization of aerodynamic and canopy resistances for modeling evapotranspiration of greenhouse cucumber. Agriculture and forest meteorology, 262:370-378. (中科院一区)

10.Tang, L., Yuan, S., Tang, Y., Yan, H. (2018) Performance experiment and numerical prediction on the optimization design of the micro-sized water turbine for the hose reel irrigator. IJABE,11(5):108-115. (中科院二区)

11.Yan H*., Acquah S. J., Zhang C. et al. (2019) Energy partitioning of greenhouse cucumber based on the application of Penman-Monteith and Bulk Transfer models,Agricultural Water Management,217:201:211. (中科院一区)

12.张川,张亨年,闫浩芳,Samuel Joe Acquah, 邢德科(2018) 微喷灌结合滴灌对温室高温环境和作物生长生理特性的影响,农业工程学报,34(20):83-89.

13.闫浩芳*,毋海梅,张川,Samuel Joe Acquah,赵宝山,黄松.(2018) 基于修正双作物系数模型估算温室黄瓜不同季节腾发量[J]. 农业工程学报, 34(15):117-125.

14.闫浩芳*,赵宝山,张川等. (2019) Penman-Monteith模型模拟Venlo型温室黄瓜植株蒸腾. 农业工程学报.35(8):149-157.

15.Huang, S.; Yan H*.; Zhang, C.; Wang, G.Q.; Acquah, S.J.; Yu, J.J.; Li, L.L.; Ma, J.M.; Opoku Darko, R. (2020) Modeling evapotranspiration for cucumber plants based on the Shuttleworth-Wallace model in a Venlo-type greenhouse. Agricultural Water Management.228,105861. https://doi.org/10.1016/j.agwat.2019.105861(中科院一区)

16.Zhang C., Li X.,Yan HF., IkramUllah., ZuoZY., Li LL., Yu JJ. (2020) Effects of irrigation quantity and biochar on soil physical properties, growth characteristics, yield and quality of greenhouse tomato. Agricultural Water Management. 241. (中科院一区)

17.毋海梅,闫浩芳*,张川,等. 温室滴灌黄瓜产量和水分利用效率对水分胁迫的响应 [J]. 农业工程学报,2020,36(9):84-93.

18.Yan H*., Yu, J., Zhang, C., Wang, G., Huang, S., Ma, J. (2020) Comparison of two canopy resistance models to estimate evapotranspiration for tea and wheat in southeast China. Agric. Water Manag. 245(28). https://doi.org/10.1016/j.agwat.2020.106581(中科院一区)

19.Yan H*., Mi L., Zhang C., et al. (2022) Comparison of evapotranspiration upscaling methods from instantaneous to daytime scale for tea and wheat in southeast China. Agricultural Water Management. 264:107464. https://doi.org/10.1016/j.agwat.2022.107464(中科院一区)

20.Yan H*., Huang S., Zhang J., Zhang C., Wang G., Li L., Zhao S., Li M., Zhao B. (2022) Comparison of Shuttleworth–Wallace and Dual Crop Coefficient Method for Estimating Evapotranspiration of a Tea Field in Southeast China. Agriculture 2022, 12(9), 1392. https://doi.org/10.3390/agriculture12091392(中科院二区)

21.Yan H*., Acquah, S. J., Zhang, J., Wang, G., Zhang, C., & Darko, R. O. (2022). Overview of modelling techniques for greenhouse microclimate environment and evapotranspiration. International Journal of Agricultural and Biological Engineering (IJABE), 14(6). https://doi.org/10.25165/J.IJABE.20211406.3948(中科院二区)

22.闫浩芳*,Samuel Joe Acquah,张建云,王国庆,张川,Ransford Opoku Darko.温室微气候环境与蒸散发模拟技术综述[J].农业工程技术,2022,42(09):100.

23.闫浩芳*,周裕栋,张建云,王国庆,张川,鱼建军,李迷,赵爽,邓帅帅,梁少威,蒋建辉,倪雨欣.苏南地区典型作物冠层阻力参数及潜热通量的模拟[J].农业工程学报,2022,38(09):101-107.

24.Yan H*., Deng S., Zhang C., Wang G., Zhao S., Li M., Liang S., Jiang J., Zhou Y. (2023) Determination of energy partition of a cucumber grown Venlo-type greenhouse in southeast China. Agricultural Water Management. 276:108047 https://doi.org/10.1016/j.agwat.2022.108047(中科院一区)

25.李迷,闫浩芳*,张川,等. 设施作物蒸腾蒸发模型的研究现状及存在问题[J]. 排灌机械工程学报,2024,42(1):57-63. DOI:10.3969/j.issn.1674-8530.22.0079.

26.Zhang C., Akhlaq M., Yan H., et al. (2023) Chlorophyll fluorescence parameter as a predictor of tomato growth and yield under CO2 enrichment in protective cultivation. Agricultural Water Management.284(中科院一区)

27.Yan H*., Zhao S., Zhang C., Zhang J., Wang G., Li M., Deng S., Liang S., Jiang J. (2023) Calibration and assessment of evapotranspiration methods for cucumber plants in a Venlo-type greenhouse. Irrig. and Drain. 2023;1–17.

28.邓帅帅,闫浩芳*,张川,王国庆,张建云,梁少威,蒋建辉. 灌溉量与减氮配施有机肥模式对温室黄瓜及土壤的影响.农业工程学报. 2023.39(19):93-102.

29.Lakhiar, I.A.; Yan, H*.; Zhang, J.; Wang, G.; Deng, S.; Bao, R.; Zhang, C.; Syed, T.N.; Wang, B.; Zhou, R.; et al. Plastic Pollution in Agriculture as a Threat to Food Security, the Ecosystem, and the Environment: An Overview. Agronomy 2024, 14, 548. https://doi.org/10.3390/agronomy14030548(中科院二区)

30.Lakhiar, I.A.; Yan, H*.; Zhang, C.; Wang, G.; He, B.; Hao, B.;Han, Y.; Wang, B.; Bao, R.; Syed,T.N.; et al. A Review of Precision Irrigation Water-Saving Technology under Changing Climate for Enhancing Water Use Efficiency, Crop Yield, and Environmental Footprints. Agriculture 2024, 14, 1141. https://doi.org/10.3390/agriculture14071141(中科院二区)

31.Zhou R., Yan H*., Zhang C., Zhu X., Wang G., He B., Disasa K., Lakhiar I., Xue R., Zhou Y., Wang B., Li J., Wang X., Bao R., Liu Y., Han Y. 2025. Effects of alternating wet and dry irrigation regimes on rice growth and physiology characteristics in southeast China, paddy and water environment, 2025, https://doi.org/10.1007/s10333-025-01016-9

32.Zhou Y., Yan H*., Zhang J., Wang G., Zhang C., Zheng H., Wu J., Tian D., Yu Z., Wang B., Bao R. 2025. Energy partitioning mechanism and evapotranspiration modeling of maize fields in three different climate regions in China. Journal of Hydrology.662. https://doi.org/10.1016/j.jhydrol.2025.133888(中科院一区)

33.Zhou Y., Bao R., Yan H*., Zhang C., Zheng H., Wu J., Wang G., Tian D., Xue R., Wang B. 2025. Optimization of shallow buried drip irrigation and nitrogen management for spring maize in the sandy land of Northwest China, Field Crops Research. 333. https://doi.org/10.1016/j.fcr.2025.110056(中科院一区)

34.Jiang, J., Wang, B., Yan H*., Zhang C., Zhang J., Wang G., Liang S., Deng S., Zhou Y. 2025. Improving Jarvis Canopy Resistance Model by Modifying the Effective Leaf Area Index in a Venlo-Type Greenhouse. Journal of Agronomy and Crop Science 211, no. 4: e70103. https://doi.org/10.1111/jac.70103. (中科院二区)

35.Disasa, K.N., Yan H*, Bao, R., Zhang, J., Zhang, C., Wang, B., Wang, G., 2025. Modelling the impacts of future climate variable changes on rainfed maize production, evapotranspiration, and adaptation measures in Northeast China, Journal of Hydrology, Volume 662, 134051, https://doi.org/10.1016/j.jhydrol.2025.134051. (中科院一区)

36.Disasa, K. N., Yan H*., Bao, R., Zhang, J., Zhang, C., Wang, B., and Wang, G. (2025). Projection of Temperatures and Precipitation Using the LARS‐WG Model in Eastern China Under the CMIP6 Scenarios. International Journal of Climatology, e8929.

37.梁少威, 闫浩芳*, 张川, 张建云, 王国庆, 蒋建辉, 邓帅帅, 周裕栋. 高温胁迫下CO2浓度升高对番茄光化学效率的影响[J]. 排灌机械工程学报, 2025, 43 (02): 187-193, 216.

38.Disasa, K. N., Yan H*., Zhang, J., Wang, G., Zhang, C., Zhang, D., Wang, B., Hao, H. 2026. Comprehensive review of drought characteristics and intensification under climate change: implications for agriculture and water resources, Journal of Hydrology, 664, 134571, https://doi.org/10.1016/j.jhydrol.2025.134571 (中科院一区)

39.Bao, R., Yan H*., Zhang, C., Wang, G., Zhang, J., Zhang, D., Zhou, Y., Wang, B., Wang, X., Zhou, R., Liu, Y., Han, Y., 2026. Estimation of daily net radiation based on the continuous meteorological data observed from different underlying surfaces. Climate Dynamics, 64: 156. https://doi.org/10.1007/s00382-026-08115-1 (中科院二区)

40.Wang, B., Yan H*., Zhang, J., Wang, G., Zhang, D., Zhang, C., Wang, X., Bao, R., Liu, Y., Han, Y., Zeng, Y., Liu, Z. and Wang, R., 2026. Canopy resistance-based modeling of maize evapotranspiration in Heilongjiang Province: a multi-site assessment integrating Sentinel-2 data and ground observations. Journal of Hydrology, 673: 135462. (中科院一区)

41.Zheng, H., Wang, B., Wang, X., Yan H*., Wu, J., Wang, G., Bao, R., Hao, B. and Han, Y., 2025. Global sensitivity analysis of SIMDual-Kc for modeling evapotranspiration in maize field under film-mulched and drip irrigation. Irrigation Science, 43(6): 1503-1519. (中科院二区)

42.Liu, Y., Yan H*., Zhang, C., Zhang, J., Wang, G., Zhang, D., Bao, R., Wang, B., Zhou, Y., Han, Y., 2026. Application of Evapotranspiration Models Coupled With Single and Dual‐Source Hypotheses in Maize (Zea mays L.) Fields in Northwest and Northeast China. Journal of Agronomy and Crop Science, 212(2), e70163. (中科院二区)

43.Liu, Y., Yan H*., Zhang, C., Zhang, J., Wang, G., Zhang, D., Bao, R., Han, Y., 2026. Application of Irrigation Decision‐Making Methods for Smart Irrigation Systems: A Review. Irrigation and Drainage.

44.Bao, R., Yan H*., Zhang, J., Wang, G., Zhang, C., Zhang, D., Zhou, Y., Wang, B., Han, Y., Liu, Y., Wang, X., Zhou, R. 2026. Environmental and physiological regulation of evapotranspiration key parameters and subsequent modeling in a rain-fed maize field, Northeast China, Journal of Hydrology, 679, 136087(中科院一区)

45.Wang, B., Yan H*., Zhang, C., Zheng, H., Wu, J., Zhang, J., Wang, G., Zhang, D., Wang, X., Bao, R., Liu, Y., Han, Y. 2026. Response mechanisms of soil water-heat-nitrogen transport and crop growth to shallow buried drip irrigation with film mulching, Journal of Hydrology, 676,135743, https://doi.org/10.1016/j.jhydrol.2026.135743. (中科院一区)

46.Yan H*., Wang R., Zhang, C., Qin, Z., Zhang, D., Zheng, Z., Wu, H., Zhang, K. (2026). Regionalizing meteorological-to-agricultural drought propagation for agricultural risk management using event metrics and explainable machine learning. Agriculture, 16(15), 1660. https://doi.org/10.3390/agriculture16151660(中科院二区)

专著:

闫浩芳 等.作物蒸腾蒸发过程模拟及模型参数化研究 农业科学[M].黄河水利出版社,2023.


专利:

一种测量干湿球温度的波文比水热通量监测系统及方法,2025.12.12,ZL2023 1 0549656.8

一种温室太阳能集热系统及方法,2022.05.20,ZL2021 1 0644820.4

一种基于负压的加速土壤洗盐排水的系统,2023.02.17,ZL2021 1 1135270

一种Venlo型玻璃温室清洗装置,2022.01.11,ZL2020 1 0807056.3

一种用于叶绿素荧光监测的叶片原位暗适应装置及方法,2023.4.11,ZL 2022 1 0275625.3

一种基于分布式光纤测温的空气相对湿度观测装置及观测方法, 2024-06-28, 中国, CN202410857640.8

一种基于电吸附结合蒸发冷凝法的土壤洗盐水循环利用系统及方法, 2023-09-22, 中国, CN202210332554.6


科研项目:

1、国家重点研发计划专题:流域生态环境变化与河川径流之间的互馈机制(2021YFC3201103-02),60 万,    2021-2025。

2、国家重点研发专项:养分原位监测与水肥一体化施肥技术及其装备(化学肥料和农药减施增效综合技术研发)130万,2016-2020。

3、国家重点研发项目:东北粮食主产区高效节水灌溉技术与集成应用(2016YFC0400104),78万,2016-2020。

4、国家级星火计划重点项目:丘陵山区果园微灌水肥药一体化技术示范与应用,100万,2015-2017。

5、国家自然科学基金项目:温室黄瓜蒸腾蒸发对环境的响应机理及双层预测模型的研究(51509107),23.5万,2015-2018。

6、江苏省自然科学基金项目:温室茄子耗水对环境的响应及预测模型的研究(BK20140546),20万,2014-2017。

7、江苏省农机三新项目:江苏省茶叶精确灌溉模式及智能化喷灌系统的研究(NJ2014-10),30万,2014-2017。

8、公益性行业(农业)科研专项:黄淮流域小麦玉米水稻田间节水节肥节药综合技术方案,35.6万,2015-2019。

9、横向课题:秦淮河流域洪水模拟模型调试与洪水风险分析等,32万,2018-2021。

10、横向课题:智能化灌溉系统及灌水决策方案研发,150万,2023-2028。

11、江苏省重点研发项目:基于数字孪生的水稻高标准农田智慧灌排关键技术与装备,300万,2022-2026.

12、教育部留学回国人际科研启动基金,3.5万,2015-2018。

13、日本政府基础科研基金项、18255008、“熱帯泥炭湿地林でのCDM植林を含む総合的環境修復を可能にするための基礎研究” (Basic study for overall environmental rehabilitation including CDM plantation in tropical pest swamp forest) 、2006-2010、42640千日元、项目参与者、主要承担热带林地蒸腾计算模拟等方面的研究工作。

14、日本政府基础科研基金项目,対流圏オゾン濃度の上昇が植生の蒸発散と群落微気象に及ぼす影響 (Effects of the elevated tropospheric O3 content on evapotranspiration and micrometeorology within and above the vegetation canopy),2007-2008、4550千日元、项目参与者、主要承担植被冠层蒸腾计算模拟等方面的研究工作。

15、内蒙古自治区自然科学基金重点项目,编号200508010303,盐渍化土壤水-热-盐迁移与节水灌溉理论研究、2005-2006、20万元、项目参与人、主要承担土壤冻融试验及土壤水运移数值模拟方面的研究工作。

16、中日国际合作项目,黄河流域水资源合理利用管理与优化调度(The CREST- Yellow River Project of JST)、2001-2006、100万元、项目参与人、主要承担灌溉农田不同农作物蒸腾蒸发模拟方面的研究工作。


参与社会活动:

日本农业气象学会会员,ASABE学会会员,中国农机学会排灌机械分会/中国农机标协排灌专业委员会委员,中国农机学会高级会员。


联系方式:

Email:  yanhaofangyhf@163.com