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An integrated field and remote sensing based approach for estimating influence of debris thickness on glacier surface elevation changes

机译:一种基于现场和遥感的综合方法,用于估算碎片厚度对冰川表面高程变化的影响

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This article uses an integrated field and remote sensing based approach to estimate the debris thickness and its influence on glacier down-wasting. The Panchhi Nala glacier, western Himalaya was selected as test site. The spatial distribution of debris thickness (1-50 cm) was obtained by correlating field measured debris thickness and remotely acquired surface temperatures. The surface elevation changes were deduced by differencing 2004 and 2013 ASTER DEMs which revealed an average surface lowering of -1.97 ± 0.30 m/y. Further, a significant control (r
机译:本文使用基于场和遥感的综合方法来估算碎片厚度及其对冰川消减的影响。喜马拉雅西部的Panchhi Nala冰川被选为测试地点。通过将现场测得的碎屑厚度与远程获取的表面温度相关联,可以获得碎屑厚度(1-50 cm)的空间分布。表面高度变化是通过对2004年和2013年的ASTER DEM进行差分得出的,得出的平均表面下降值为-1.97±0.30 m / y。此外,重大控制(r

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