Incorporating snow model and snowmelt runoff model for streamflow simulation in a snow-dominated mountainous basin in the western Hindukush-Himalaya region
Author:
Affiliation:
1. Graduate School of Engineering, Nihon University, Japan
2. College of Engineering, Nihon University, Japan
Publisher
Japan Society of Hydrology and Water Resources
Subject
Earth and Planetary Sciences (miscellaneous),Water Science and Technology
Link
https://www.jstage.jst.go.jp/article/hrl/14/1/14_34/_pdf
Reference24 articles.
1. Adnan M, Nabi G, Saleem Poomee M, Ashraf A. 2017. Snowmelt runoff prediction under changing climate in the Himalayan cryosphere: A case of Gilgit River Basin. Geoscience Frontiers 8: 941–949. DOI: 10.1016/j.gsf.2016.08.008.
2. Asaoka Y, Kominami Y. 2012. Spatial snowfall distribution in mountainous areas estimated with a snow model and satellite remote sensing. Hydrological Research Letters 6: 1–6. DOI: 10.3178/hrl.6.1.
3. Asaoka Y, Kominami Y. 2013. Incorporation of satellite-derived snow-cover area in spatial snowmelt modeling for a large area: determination of a gridded degree-day factor. Annals of Glaciology 54: 205–213. DOI: 10.3189/2013AoG62A218.
4. Azizi AH, Asaoka Y. 2019. Estimating spatial and temporal snow distribution using numerical model and satellite remote sensing in the western Hindukush-Himalaya region. Japan Society of Civil Engineers, Ser. G (Environmental Research) 75: 125–134.
5. Azmat M, Liaqat UW, Qamar MU, Awan UK. 2017. Impacts of changing climate and snow cover on the flow regime of Jhelum River, Western Himalayas. Regional Environmental Change 17: 813–825. DOI: 10.1007/s10113-016-1072-6.
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