科研论文(五篇代表作):
1. Wang,
YP., Li, R.*, Min, Q., Fu, Y., Wang, Y., Zhong, L.,
& Fu, Y. (2019). A three-source satellite algorithm for retrieving all-sky
evapotranspiration rate using combined optical and microwave vegetation index
at twenty AsiaFlux sites. Remote Sensing of Environment, 235,
111463. (SCI, Impact Factor= 13.85)
2. Wang,
YP., Li, R.*, Hu J. et al. (2021).Daily Estimation
of Gross Primary Production Under all Sky Using a Light Use Efficiency Model
Coupled with Satellite Passive Microwave Measurements. Remote Sensing
of Environment,267, 112721. (SCI, Impact Factor= 13.85).
3.Wang, YP., Li, R.*, Hu, J., Fu, Y.,
Duan, J., Cheng, Y., and Song, B.(2021). Understanding the non-linear
response of summer evapotranspiration to clouds in a temperate forest
under the impact of vegetation water content. Journal of Geophysical Research: Atmospheres, 126, e2021JD035239. (Nature Index Journal, Impact Factor=5.22)
4.Wang, YP., Li, R.*, Hu, J., Fu, Y., Duan, J., Cheng, Y., and Song, B.(2021).Evaluation of
evapotranspiration under cloud impact over continental China using ground
observations and multiple satellite optic and microwave measurements. Agricultural and Forest Meteorology,314,108806 (Impact Factor=6.42 )
5. Wang,
YP.+, Li, R.+, Hu J. Wang, X; Kabeja, C.; Min, Q,
Wang Y*. (2021). Evaluations of MODIS and Microwave based Satellite
Evapotranspiration Products under Varied Cloud Conditions over East Asia
Forests. Remote Sensing of Environment,264, 112606. (SCI, Impact Factor= 13.85)
发明专利:
1. 王怿璞,李锐,胡继恒. 一种基于卫星被动微波遥感的植被总初级生产力估算方法 (已公布)