globalchange  > 影响、适应和脆弱性
DOI: 10.5194/tc-8-2195-2014
Scopus记录号: 2-s2.0-84914095332
论文题名:
Processes governing the mass balance of Chhota Shigri Glacier (western Himalaya, India) assessed by point-scale surface energy balance measurements
作者: Azam M; F; , Wagnon P; , Vincent C; , Ramanathan A; L; , Favier V; , Mandal A; , Pottakkal J; G
刊名: Cryosphere
ISSN: 19940416
出版年: 2014
卷: 8, 期:6
起始页码: 2195
结束页码: 2217
语种: 英语
英文关键词: ablation ; albedo ; assessment method ; climate variation ; computer simulation ; energy balance ; glacier mass balance ; measurement method ; melting ; meteorology ; net radiation ; precipitation (climatology) ; surface temperature ; Chhota Shigri Glacier ; Himachal Pradesh ; India
英文摘要: Some recent studies revealed that Himalayan glaciers were shrinking at an accelerated rate since the beginning of the 21st century. However, the climatic causes for this shrinkage remain unclear given that surface energy balance studies are almost nonexistent in this region. In this study, a point-scale surface energy balance analysis was performed using in situ meteorological data from the ablation zone of Chhota Shigri Glacier over two separate periods (August 2012 to February 2013 and July to October 2013) in order to understand the response of mass balance to climatic variables. Energy balance numerical modelling provides quantification of the surface energy fluxes and identification of the factors affecting glacier mass balance. The model was validated by comparing the computed and observed ablation and surface temperature data. During the summer-monsoon period, net radiation was the primary component of the surface energy balance accounting for 80 % of the total heat flux followed by turbulent sensible (13%), latent (5%) and conductive (2%) heat fluxes. A striking feature of the energy balance is the positive turbulent latent heat flux, suggesting re-sublimation of moist air at the glacier surface, during the summer-monsoon characterized by relatively high air temperature, high relative humidity and a continual melting surface. The impact of the Indian Summer Monsoon on Chhota Shigri Glacier mass balance has also been assessed. This analysis demonstrates that the intensity of snowfall events during the summer-monsoon plays a key role on surface albedo (melting is reduced in the case of strong snowfalls covering the glacier area), and thus is among the most important drivers controlling the annual mass balance of the glacier. The summer-monsoon air temperature, controlling the precipitation phase (rain versus snow and thus albedo), counts, indirectly, also among the most important drivers.
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被引频次[WOS]:133   [查看WOS记录]     [查看WOS中相关记录]
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/74759
Appears in Collections:影响、适应和脆弱性
气候变化与战略

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作者单位: IRD/UJF Andndash; Grenoble I/CNRS/G-INP, LGGE-UMR5183, LTHE-UMR5564, Grenoble CEDEX, France; School of Environmental Sciences, Jawaharlal Nehru University, New Delhi, India; ICIMOD, G.P.O. Box 3226, Kathmandu, Nepal; UJF-Grenoble I/CNRS, LGGE-UMR5183, Grenoble CEDEX, France

Recommended Citation:
Azam M,F,, Wagnon P,et al. Processes governing the mass balance of Chhota Shigri Glacier (western Himalaya, India) assessed by point-scale surface energy balance measurements[J]. Cryosphere,2014-01-01,8(6)
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