Himalayas

Sun, F., Ma, Y., Hu, Z., Li, M., Tartari, G., Salerno, F., et al. (2018). Mechanism of daytime strong winds on the northern slopes of Himalayas, near Mount Everest: Observation and simulation. Journal Of Applied Meteorology And Climatology. http://doi.org/10.1175/JAMC-D-16-0409.1
Putero, D., Marinoni, A., Bonasoni, P., Calzolari, F., Rupakheti, M., & Cristofanelli, P. (2018). Black carbon and ozone variability at the kathmandu valley and at the southern himalayas: A comparison between a “Hot Spot” and a downwind high-altitude site. Aerosol And Air Quality Research. http://doi.org/10.4209/aaqr.2017.04.0138
Balanzino, A., & Castelli, T. (2018). Numerical experiments with RAMS model in highly complex terrain. Environmental Fluid Mechanics. http://doi.org/10.1007/s10652-017-9553-9
Putero, D., Marinoni, A., Bonasoni, P., Calzolari, F., Rupakheti, M., & Cristofanelli, P. (2018). Black carbon and ozone variability at the kathmandu valley and at the southern himalayas: A comparison between a “Hot Spot” and a downwind high-altitude site. Aerosol And Air Quality Research. http://doi.org/10.4209/aaqr.2017.04.0138
Coen, M. C., Andrews, E., Aliaga, D., Andrade, M., Angelov, H., Bukowiecki, N., et al. (2018). Identification of topographic features influencing aerosol observations at high altitude stations. Atmospheric Chemistry And Physics. http://doi.org/10.5194/acp-18-12289-2018
Jacobi, H. -W., Lim, S., Ménégoz, M., Ginot, P., Laj, P., Bonasoni, P., et al. (2015). Black carbon in snow in the upper Himalayan Khumbu Valley, Nepal: Observations and modeling of the impact on snow albedo, melting, and radiative forcing. Cryosphere. http://doi.org/10.5194/tc-9-1685-2015
Palazzi, E., Filippi, L., & von Hardenberg, J. (2017). Insights into elevation-dependent warming in the Tibetan Plateau-Himalayas from CMIP5 model simulations. Climate Dynamics. http://doi.org/10.1007/s00382-016-3316-z
Tahir, A. A., Adamowski, J. F., Chevallier, P., Haq, A. U., & Terzago, S. (2016). Comparative assessment of spatiotemporal snow cover changes and hydrological behavior of the Gilgit, Astore and Hunza River basins (Hindukush–Karakoram–Himalaya region, Pakistan). Meteorology And Atmospheric Physics. http://doi.org/10.1007/s00703-016-0440-6
Norris, J., Carvalho, L. M. V., Jones, C., Cannon, F., Bookhagen, B., Palazzi, E., & Tahir, A. A. (2017). The spatiotemporal variability of precipitation over the Himalaya: evaluation of one-year WRF model simulation. Climate Dynamics. http://doi.org/10.1007/s00382-016-3414-y
Kirillova, E. N., Marinoni, A., Bonasoni, P., Vuillermoz, E., Facchini, M. C., Fuzzi, S., & Decesari, S. (2016). Light absorption properties of brown carbon in the high Himalayas. Journal Of Geophysical Research. http://doi.org/10.1002/2016JD025030