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  • Li, X., Long, D., Huang, Q., Han, P., Zhao, F., and Wada, Y. (2019). High-temporal-resolution water level and storage change data sets for lakes on the Tibetan Plateau during 2000–2017 using multiple altimetric missions and Landsat-derived lake shoreline positions. Earth Syst. Sci. Data, 11, 1603–1627, https://doi.org/10.5194/essd-11-1603-2019.
  • Li, X., Liu, S.M., Xiao, Q., Ma, M.G., Jin, R., Che, T., Wang, W.Z., Hu, X.L., Xu, Z.W., Wen, J.G., Wang, L.X. (2017). A multiscale dataset for understanding complex eco-hydrological processes in a heterogeneous oasis system. Scientific Data, 4, 170083. doi:10.1038/sdata.2017.83.
  • Guo, W.Q., Liu, S.Y., Xu, J.L., et al. (2015). The second Chinese glacier inventory: data, methods and results. Journal of Glaciology, 61(226), 357-372. doi: 10.3189/2015JoG14J209
  • Song, X.D., Brus, D.J., Liu, F., Li, D.C., Zhao, Y.G., Yang, J.L., Zhang, G.L. (2016). Mapping soil organic carbon content by geographically weighted regression: A case study in the Heihe River Basin, China. Geoderma, 261, 11–22.
  • Lu, L. , Li, X. , Veroustraete, F. , Kang, E. , & Wang, J. . (2009). Analysing the forcing mechanisms for net primary productivity changes in the heihe river basin, north-west china. International Journal of Remote Sensing, 30(3), 793-816.
  • Liu ZY, Ma LL, Tang LL, Qian YG. LAI Retrieval Based on PROSPECT-SAILH Model from Multi-Angular Data of WiDAS Imaging System. Advanced Materials Research, 2012, 518-523: 5697-5703.
  • Zhao, Shuhe, Jiang, Tenglong, Wang, Zhaojun. Snow Grain-Size Estimation Using Hyperion Imagery in a Typical Area of the Heihe River Basin, China. Remote Sensing, 2013, 5(1):238-253. doi:10.3390/rs5010238
  • Gao, X.J., Wu, J., Shi, Y., Wu, J., Han, Z.y., Zhang, D.F., Tong, Y., Li, R.K., Xu, Y. & Filippo, GIORGI. (2018). Future changes in thermal comfort conditions over China based on multi-RegCM4 simulations, Atmospheric and Oceanic Science Letters, 11(04), 291-299. DOI: 10.1080/16742834.2018.1471578
  • Hiroko B., Rodell M. (2016). NASA/GSFC/HSL: GLDAS Catchment Land Surface Model L4 daily 0.25×0.25 degree V 2.0, Greenbelt, Maryland, USA, Goddard Earth Sciences Data and Information Services Center (GES DISC). https://doi.org/10.5067/LYHA9088MFWQ.
  • Qin YC, Li B, Niu Z, Huang WJ, Wang CY. Stepwise decomposition and relative radiometric normalization for small footprint LiDAR waveform. Science in China Series D-Earth Sciences, 2011, 54(4): 625-630, doi: 10.1007/s11430-010-4120-y.
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