首页> 外文期刊>Journal of Glaciology >Modelling 60 years of glacier mass balance and runoff for Chhota Shigri Glacier, Western Himalaya, Northern India
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Modelling 60 years of glacier mass balance and runoff for Chhota Shigri Glacier, Western Himalaya, Northern India

机译:建模60年冰川大规模平衡和黎明,北京西部喜马拉雅岛,印度北部

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Glacier mass balance and runoff are simulated from 1955 to 2014 for the catchment (46% glacier cover) containing Chhota Shigri Glacier (Western Himalaya) using gridded data from three regional climate models: (1) the Rossby Centre regional atmospheric climate model v. 4 (RCA4); (2) the REgional atmosphere MOdel (REMO); and (3) the Weather Research and Forecasting Model (WRF). The input data are downscaled to the simulation grid (300 m) and calibrated with point measurements of temperature and precipitation. Additional input is daily potential global radiation calculated using a DEM at a resolution of 30 m. The mass-balance model calculates daily snow accumulation, melt and runoff. The model parameters are calibrated with available mass-balance measurements and results are validated with geodetic measurements, other mass-balance model results and run-off measurements. Simulated annual mass balances slightly decreased from -0.3 m w.e. a(-1) (1955-99) to -0.6 m w.e. a(-1) for 2000-14. For the same periods, mean runoff increased from 2.0 m(3) s(-1) (1955-99) to 2.4 m(3) s(-1) (2000-14) with glacier melt contributing about one-third to the runoff. Monthly runoff increases are greatest in July, due to both increased snow and glacier melt, whereas slightly decreased snowmelt in August and September was more than compensated by increased glacier melt.
机译:冰川大规模平衡和径流是从1955年到2014年模拟的,其中包括三个区域气候模型的Chhota Shigri Glacier(Western Himalaya)的集水区(46%冰川覆盖物),其中包括来自三个区域气候模型的网格数据:(1)罗斯比中心区域大气气候模型诉4 (rca4); (2)区域大气模型(REMO); (3)天气研究和预测模型(WRF)。输入数据缩小到仿真网格(300米)并用温度和降水点测量校准。额外的输入是使用DEM以30米的分辨率计算的每日潜在全球辐射。质量平衡模型计算每日积雪,熔化和径流。使用可用的质量平衡测量校准模型参数,并通过大地测量结果,其他质量平衡模型结果和耗尽测量结果进行验证。模拟的年质量余额从-0.3 m w.e略有下降。 a(-1)(1955-99)至-0.6 m。 A(-1)2000-14。对于同一时期,平均径流从2.0米(3)秒(-1)(1955-99)增加到2.4米(3)秒(-1)(2000-14),冰川熔体促进约三分之一到径流。每月径流的增加在7月份最大,由于雪和冰川融化,而8月份略微下滑,9月份的融雪量比增加冰川融化了。

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