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Yan Haofang
Date:2019-12-07  View:

Haofang YAN, doctoral supervisor, graduated from Ehime University, Japan.

Research fields:
1. Micrometeorology and crop water consumption;
2. Water, heat and fertilizer coupled transport in SPAC system;
3. Transpiration and evaporation model and its application;
4. Greenhouse micrometeorology environment and evapotranspiration;
5. Intelligent water-saving irrigation equipment.

Main publications:
[1] 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.
[2] 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.
[3] Huang, S.; Yan, H.F.; 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
[4] Yan H., Zhang C. Oue H. (2018) Parameterization of canopy resistance for modeling the energy partitioning of a paddy rice field. Paddy and water environment, 16(1):109-123.
[5] Yan H., Zhang C., Peng G., Darko R., Cai B. (2018) Modeling canopy resistance for estimating latent heat flux at a tea field in south China. Experimental Agriculture, 54(4):563-576.
[6] Yan H, Shi H, Oue H, Zhang C, Xue Z, Cai B, Wang G.(2015) Modeling bulk canopy resistance from climatic variables for predicting hourly evapotranspiration of maize and buckwheat. Meteorology and Atmospheric Physics, 127(3):305–312.
[7] Yan H, Zhang C, Oue H et al. (2015) Study of evapotranspiration and evaporation beneath the canopy in a buckwheat field. Theoretical and applied climatology, 122:721–728.
[8] 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.
[9] 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.
[10] Abubaker B. Ali, Yan H., Li H., Wu Y.Y., Nazar A. Elshaikh, Grameraldawla Hussein, Sudhindra Pandab, Sami Hassan (2018) Enhancement of depleted loam soil as well as cucumber productivity utilizing biochar under water stress. Communication in soil science and plant analysis. DOI: 10.1080/00103624.2018.15473

Email: yanhaofang@yahoo.com; yanhaofangyhf@163.com
Tel:18252933901

 
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