Yao, Y.; Di, Z.; Xie, Z.; Xiao, Z.; Jia, K.; Zhang, X.; Shang, K.; Yang, J.; Bei, X.; Guo, X.;
et al. Simplified Priestley–Taylor Model to Estimate Land-Surface Latent Heat of Evapotranspiration from Incident Shortwave Radiation, Satellite Vegetation Index, and Air Relative Humidity. Remote Sens. 2021, 13, 902.
https://doi.org/10.3390/rs13050902
AMA Style
Yao Y, Di Z, Xie Z, Xiao Z, Jia K, Zhang X, Shang K, Yang J, Bei X, Guo X,
et al. Simplified Priestley–Taylor Model to Estimate Land-Surface Latent Heat of Evapotranspiration from Incident Shortwave Radiation, Satellite Vegetation Index, and Air Relative Humidity. Remote Sensing. 2021; 13(5):902.
https://doi.org/10.3390/rs13050902
Chicago/Turabian Style
Yao, Yunjun, Zhenhua Di, Zijing Xie, Zhiqiang Xiao, Kun Jia, Xiaotong Zhang, Ke Shang, Junming Yang, Xiangyi Bei, Xiaozheng Guo,
and et al. 2021. "Simplified Priestley–Taylor Model to Estimate Land-Surface Latent Heat of Evapotranspiration from Incident Shortwave Radiation, Satellite Vegetation Index, and Air Relative Humidity" Remote Sensing 13, no. 5: 902.
https://doi.org/10.3390/rs13050902
APA Style
Yao, Y., Di, Z., Xie, Z., Xiao, Z., Jia, K., Zhang, X., Shang, K., Yang, J., Bei, X., Guo, X., & Yu, R.
(2021). Simplified Priestley–Taylor Model to Estimate Land-Surface Latent Heat of Evapotranspiration from Incident Shortwave Radiation, Satellite Vegetation Index, and Air Relative Humidity. Remote Sensing, 13(5), 902.
https://doi.org/10.3390/rs13050902