1. Wang, Xian; Zhong, Lei; Ma, Yaoming; Fu, Yunfei; Han, Cunbo; Li, Peizhen; Wang, Zixin; Qi, Yuting. (2023). Estimation of hourly actual evapotranspiration over the Tibetan Plateau from multi-source data. Atmospheric Research, 281: 106475.
2. Fan, Weiwei; Hu, Zeyong; Ma, Weiqiang; Ma, Yaoming; Han, Cunbo; Han, Xiang; Yang, Yaoxian; Yu, Haipeng; Fu, Chunwei; Wu, Di. (2022). Dominant modes of Tibetan Plateau summer surface sensible heating and associated atmospheric circulation anomalies. Remote Sensing, 14(4): 956.
3. Han, Cunbo; Ma, Yaoming; Wang, Binbin; Zhong, Lei; Ma, Weiqiang; Chen, Xuelong; and Su, Zhonbgo. (2021). Long-term variations in actual evapotranspiration over the Tibetan Plateau. Earth Syst. Sci. Data, 13(7): 3513-3524.
4. Li, Maoshan; Wang, Lingzhi; Chang, Na; Gong, Ming; Ma, Yaoming; Yang, Yaoxian; Chen, Xuelong; Han, Cunbo; Sun, Fanglin. (2021). Characteristics of the water vapor transport in the canyon area of the southeastern Tibetan Plateau. Water, 13(24): 3620.
5. Ma, Yaoming; Zhong, Lei; Ma, Weiqiang; and Han, Cunbo. (2021). Determination of Land Surface Heat Fluxes at Different Temporal Scales over the Tibetan Plateau. Journal of Geodesy and Geoinformation Science, 4(1): 144-152.
6. Su, Zhongbo; Ma, Yaoming; Chen, Xuelong; Dong, Xiaohua; Du, Junping; Han, Cunbo; He, Yanbo; Hofste, Jan G; Li, Maoshan; Li, Mengna. (2021). Monitoring water and energy cycles at climate scale in the Third Pole Environment (CLIMATE-TPE). Remote sensing, 13(18): 3661.
7. Wang, Chunxiao; Ma, Yaoming; Wang, Binbin; Ma, Weiqiang; Chen, Xuelong; Han, Cunbo. (2021). Analysis of the radiation fluxes over complex surfaces on the Tibetan Plateau. Water, 13(21): 3084.
8. Ma, Yaoming; Hu, Zeyong; Xie, Zhipeng; Ma, Weiqiang; Wang, Binbin; Chen, Xuelong; Li, Maoshan; Zhong, Lei; Sun, Fanglin; Gu, Lianglei; Han, Cunbo; Zhang, Lang; Liu, Xin; Ding, Zhangwei; Sun, Genhou; Wang, Shujin; Wang, Yongjie; and Wang, Zhongyan. (2020). A long-term (2005–2016) dataset of hourly integrated land–atmosphere interaction observations on the Tibetan Plateau. Earth Syst. Sci. Data, 12(4): 2937-2957.
9. Han, Cunbo; Brdar, Slavko; Raasch, Siegfried; and Kollet, Stefan. (2019a). Large-eddy simulation of catchment-scale circulation. Quarterly Journal of the Royal Meteorological Society, 145(720): 1218-1233.
10. Han, Cunbo; Brdar, Slavko; and Kollet, Stefan. (2019b). Response of convective boundary layer and shallow cumulus to soil moisture heterogeneity: A large-eddy simulation study. Journal of Advances in Modeling Earth Systems, 11(12): 4305-4322.
11. Ma, Yaoming; Wang, Yuyang; and Han, Cunbo. (2018). Regionalization of land surface heat fluxes over the heterogeneous landscape: from the Tibetan Plateau to the Third Pole region. International Journal of Remote Sensing, 39(18): 5872-5890.
12. Han, Cunbo; Ma, Yaoming; Chen, Xuelong; and Su, Zhongbo. (2017). Trends of land surface heat fluxes on the Tibetan Plateau from 2001 to 2012. International Journal of Climatology, 37(14): 4757-4767.
13. Ma, Yaoming; Ma, Weiqiang; Zhong, Lei; Hu, Zeyong; Li, Maoshan; Zhu, Zhikun; Han, Cunbo; Wang, Binbin; and Liu, Xin. (2017). Monitoring and Modeling the Tibetan Plateau’s climate system and its impact on East Asia. Scientific Reports, 7(1): 44574.
14. Meng, Chunchun; Ma, Yaoming; Han, Cunbo; and Gou, Peng. (2017). Effect of reducing the topographical altitude of the Tibetan Plateau on a severe winter drought in eastern China as determined using RAMS. Theoretical and Applied Climatology, 129(3): 891-900.
15. Sun, Fanglin; Ma, Yaoming; Hu, Zeyong; Li, Maoshan; Gerken, Tobias; Zhang, Lang; Han, Cunbo; and Sun, Genhou. (2017). Observation of strong winds on the northern slopes of Mount Everest in monsoon season. Arctic, Antarctic, and Alpine Research, 49(4): 687-697.
16. Amatya, Pukar Man; Ma, Yaoming; Han, Cunbo; Wang, Binbin; and Devkota, Lochan Prasad. (2016). Mapping regional distribution of land surface heat fluxes on the southern side of the central Himalayas using TESEBS. Theoretical and Applied Climatology, 124(3): 835-846.
17. Han, Cunbo; Ma, Yaoming; Chen, Xuelong; and Su, Zhongbo. (2016). Estimates of land surface heat fluxes of the Mt. Everest region over the Tibetan Plateau utilizing ASTER data. Atmospheric Research, 168: 180-190.
18. Amatya, Pukar Man; Ma, Yaoming; Han, Cunbo; Wang, Binbin; and Devkota, Lochan Prasad. (2015a). Estimation of net radiation flux distribution on the southern slopes of the central Himalayas using MODIS data. Atmospheric Research, 154: 146-154.
19. Amatya, Pukar Man; Ma, Yaoming; Han, Cunbo; Wang, Binbin; and Devkota, Lochan Prasad. (2015b). Recent trends (2003–2013) of land surface heat fluxes on the southern side of the central Himalayas, Nepal. Journal of Geophysical Research: Atmospheres, 120(23): 11,957-911,970.
20. Han, Cunbo; Ma, Yaoming; Su, Zhongbo; Chen, Xuelong; Zhang, Lang; Li, Maoshan; and Sun, Fanglin. (2015). Estimates of effective aerodynamic roughness length over mountainous areas of the Tibetan Plateau. Quarterly Journal of the Royal Meteorological Society, 141(689): 1457-1465.
21. Zhu, Zhikun; Ma, Yaoming; Li, Maoshan; Hu, Zeyong; Xu, Chao; Zhang, Lang; Han, Cunbo; Wang, Yongjie; and Ichiro, Tamagawa. (2015). Carbon dioxide exchange between an alpine steppe ecosystem and the atmosphere on the Nam Co area of the Tibetan Plateau. Agricultural and Forest Meteorology, 203: 169-179.
22. Han, Cunbo; Ma, Yaoming; Liu, Xin; and Ma, Weiqiang. (2014). Land surface characteristic variables estimated from ASTER images over Qomolangma area. Plateau Meteorology, 33(3): 596-606 (in Chinese with English abstract).
23. Ma, Yaoming; Zhu, Zhikun; Zhong, Lei; Wang, Binbin; Han, Cunbo; Wang, Zhongyan; Wang, Yong; Lu, Liping; Amatya, Pukar M.; Ma, Weiqiang; and Hu, Zeyong. (2014a). Combining MODIS, AVHRR and in situ data for evapotranspiration estimation over heterogeneous landscape of the Tibetan Plateau. Atmos. Chem. Phys., 14(3): 1507-1515.
24. Ma, Yaoming; Han, Cunbo; Zhong, Lei; Wang, Binbin; Zhu, Zhikun; Wang, Yongjie; Zhang, Lang; Meng, Chunchun; Xu, Chao; and Amatya, Pukar Man. (2014b). Using MODIS and AVHRR data to determine regional surface heating field and heat flux distributions over the heterogeneous landscape of the Tibetan Plateau. Theoretical and Applied Climatology, 117(3): 643-652.