238
Negi HS, Datt P, Thakur NK, Ganju A, Bhatia VK, Kumar GV (2017) Observed spatio-temporal
changes of winter snow albedo over the north-west Himalaya. Int J Climatol 37(5):2304–2317.
https://doi.org/10.1002/joc.4846
Negi HS, Kanda N, Shekhar MS, Ganju A (2018) Recent wintertime climatic variability over
North West Himalayan cryosphere. Curr Sci 114(4):760–770
Palazzi E, Hardenberg JV, Provenzale A (2013) Precipitation in the Hindu Kush Karakoram
Himalaya: observations and future scenarios. J Geophys Res Atmos 118:85–100. https://doi.
org/10.1029/2012JD018697
Schneider U, Becker A, Finger P, Meyer-Christoffer A, Zuise M, Rudolf B (2013) GPCC’s new
land surface precipitation climatology based on quality controlled in situ data and its role in
quantifying the global water cycle. Theor Appl Climatol 115:15–40. Available at:. https://doi.
org/10.1007/s00704-013-0860-x
Sharma SS, Ganju A (2000) Complexities of avalanche forecasting in Western Himalaya- an overview. Cold Reg Sci Technol 31:95–102
Sillmann J, Donat MG, Fyfe JC, Zwiers FW (2014) Observed and simulate temperature
extremes during the recent warming hiatus. Environ Res Lett 9(064023):8. https://doi.
org/10.1088/1748-9326/9/6/064023
Singh SK, Rathore BP, Bahuguna IM (2014) Snow cover variability in the Himalayan-Tibetan
region. Int J Climatol 34(2):446–452
Stocker TF, Qin D, Plattner GK, Tignor M, Allen SK, Boschung J, Nauels A, Xia Y, Bex B, Midgley
BM (2013) Working Group I contribution to the IPCC fifth assessment report (AR5) climate
change 2013: the physical science basis. Cambridge University Press, Cambridge
Sun Q, Miao C, Duan Q, Ashouri H, Sorooshian S, Hsu K-L (2018) A review of global precipitation datasets: data sources, estimation, and intercomparisons. Rev Geophys 56:79–107
Tahir AA, Adamowski JF, Chevallier P, Haq AU, Se T (2016) Comparative assessment of spatiotemporal snow cover changes and hydrological behavior of the Gilgit, Astore and Hunza
River basins (Hindukush–Karakoram–Himalaya region, Pakistan). Meteorog Atmos Phys
128(6):793–811
Tong K, Su F, Yang D, Zhang L, Hao Z (2013) Tibetan Plateau precipitation as depicted by gauge
observations, reanalyses and satellite retrievals. Int J Climatol 34(2):265–285. https://doi.
org/10.1002/joc.3682
Wang W, Huang X, Deng J, Xie H, Liang T (2015) Spatio-temporal change of snow cover and its
response to climate over the Tibetan Plateau based on an improve daily cloud-free snow cover
product. Remote Sens 7(1):169–194
Willmott C, Matsuura K (2001) Terrestrial air temperature and precipitation: Monthly and annual
time series (1950–1999) Version 1.02. Center for Climatic Research, University of Delaware,
Newark
Xie PP, Janowiak JE, Arkin PA, Adler R, Gruber A, Ferraro R, Curtis S (2003) GPCP Pentad
precipitation analyses: an experimental dataset based on gauge observations and satellite estimates. J Clim 16(13):2197–2214
Yatagai A, Kamiguchi K, Arakawa O, Hamada A, Yasutomi N, Kitoh A (2012) APHRODITE:
constructing a long-term daily gridded precipitation dataset for Asia based on a dense network
of rain gauges. Bull Am Meteorol Soc 93:1401–1415
H. S. Negi and N. Kanda
Negi HS, Datt P, Thakur NK, Ganju A, Bhatia VK, Kumar GV (2017) Observed spatio-temporal
changes of winter snow albedo over the north-west Himalaya. Int J Climatol 37(5):2304–2317.
https://doi.org/10.1002/joc.4846
Negi HS, Kanda N, Shekhar MS, Ganju A (2018) Recent wintertime climatic variability over
North West Himalayan cryosphere. Curr Sci 114(4):760–770
Palazzi E, Hardenberg JV, Provenzale A (2013) Precipitation in the Hindu Kush Karakoram
Himalaya: observations and future scenarios. J Geophys Res Atmos 118:85–100. https://doi.
org/10.1029/2012JD018697
Schneider U, Becker A, Finger P, Meyer-Christoffer A, Zuise M, Rudolf B (2013) GPCC’s new
land surface precipitation climatology based on quality controlled in situ data and its role in
quantifying the global water cycle. Theor Appl Climatol 115:15–40. Available at:. https://doi.
org/10.1007/s00704-013-0860-x
Sharma SS, Ganju A (2000) Complexities of avalanche forecasting in Western Himalaya- an overview. Cold Reg Sci Technol 31:95–102
Sillmann J, Donat MG, Fyfe JC, Zwiers FW (2014) Observed and simulate temperature
extremes during the recent warming hiatus. Environ Res Lett 9(064023):8. https://doi.
org/10.1088/1748-9326/9/6/064023
Singh SK, Rathore BP, Bahuguna IM (2014) Snow cover variability in the Himalayan-Tibetan
region. Int J Climatol 34(2):446–452
Stocker TF, Qin D, Plattner GK, Tignor M, Allen SK, Boschung J, Nauels A, Xia Y, Bex B, Midgley
BM (2013) Working Group I contribution to the IPCC fifth assessment report (AR5) climate
change 2013: the physical science basis. Cambridge University Press, Cambridge
Sun Q, Miao C, Duan Q, Ashouri H, Sorooshian S, Hsu K-L (2018) A review of global precipitation datasets: data sources, estimation, and intercomparisons. Rev Geophys 56:79–107
Tahir AA, Adamowski JF, Chevallier P, Haq AU, Se T (2016) Comparative assessment of spatiotemporal snow cover changes and hydrological behavior of the Gilgit, Astore and Hunza
River basins (Hindukush–Karakoram–Himalaya region, Pakistan). Meteorog Atmos Phys
128(6):793–811
Tong K, Su F, Yang D, Zhang L, Hao Z (2013) Tibetan Plateau precipitation as depicted by gauge
observations, reanalyses and satellite retrievals. Int J Climatol 34(2):265–285. https://doi.
org/10.1002/joc.3682
Wang W, Huang X, Deng J, Xie H, Liang T (2015) Spatio-temporal change of snow cover and its
response to climate over the Tibetan Plateau based on an improve daily cloud-free snow cover
product. Remote Sens 7(1):169–194
Willmott C, Matsuura K (2001) Terrestrial air temperature and precipitation: Monthly and annual
time series (1950–1999) Version 1.02. Center for Climatic Research, University of Delaware,
Newark
Xie PP, Janowiak JE, Arkin PA, Adler R, Gruber A, Ferraro R, Curtis S (2003) GPCP Pentad
precipitation analyses: an experimental dataset based on gauge observations and satellite estimates. J Clim 16(13):2197–2214
Yatagai A, Kamiguchi K, Arakawa O, Hamada A, Yasutomi N, Kitoh A (2012) APHRODITE:
constructing a long-term daily gridded precipitation dataset for Asia based on a dense network
of rain gauges. Bull Am Meteorol Soc 93:1401–1415
H. S. Negi and N. Kanda
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