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DOI10.5194/tc-9-1075-2015
Unlocking annual firn layer water equivalents from ground-penetrating radar data on an Alpine glacier
Sold L.; Huss M.; Eichler A.; Schwikowski M.; Hoelzle M.
发表日期2015
ISSN19940416
卷号9期号:3
英文摘要The spatial representation of accumulation measurements is a major limitation for current glacier mass balance monitoring approaches. Here, we present a method for estimating annual accumulation rates on a temperate Alpine glacier based on the interpretation of internal reflection horizons (IRHs) in helicopter-borne ground-penetrating radar (GPR) data. For each individual GPR measurement, the signal travel time is combined with a simple model for firn densification and refreezing of meltwater. The model is calibrated at locations where GPR repeat measurements are available in two subsequent years and the densification can be tracked over time. Two 10.5 m long firn cores provide a reference for the density and chronology of firn layers. Thereby, IRHs correspond to density maxima, but not exclusively to former summer glacier surfaces. Along GPR profile sections from across the accumulation area we obtain the water equivalent (w.e.) of several annual firn layers. Because deeper IRHs could be tracked over shorter distances, the total length of analysed profile sections varies from 7.3 km for the uppermost accumulation layer (2011) to 0.1 km for the deepest (i.e. oldest) layer (2006). According to model results, refreezing accounts for 10% of the density increase over time and depth, and for 2% of the water equivalent. The strongest limitation to our method is the dependence on layer chronology assumptions. We show that GPR can be used not only to complement existing mass balance monitoring programmes on temperate glaciers but also to retrospectively extend newly initiated time series. © Author(s) 2015.
学科领域accumulation rate; chronology; data set; firn; glacier mass balance; ground penetrating radar; meltwater; snow water equivalent; temperate environment; time series; valley glacier; Alps
语种英语
scopus关键词accumulation rate; chronology; data set; firn; glacier mass balance; ground penetrating radar; meltwater; snow water equivalent; temperate environment; time series; valley glacier; Alps
来源期刊Cryosphere
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/119896
作者单位Department of Geosciences, University of Fribourg, Fribourg, Switzerland; Laboratory of Hydraulics, Hydrology and Glaciology, ETH Zurich, Switzerland; Laboratory of Radiochemistry and Environmental Chemistry, Paul Scherrer Institut, Villigen, Switzerland
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Sold L.,Huss M.,Eichler A.,et al. Unlocking annual firn layer water equivalents from ground-penetrating radar data on an Alpine glacier[J],2015,9(3).
APA Sold L.,Huss M.,Eichler A.,Schwikowski M.,&Hoelzle M..(2015).Unlocking annual firn layer water equivalents from ground-penetrating radar data on an Alpine glacier.Cryosphere,9(3).
MLA Sold L.,et al."Unlocking annual firn layer water equivalents from ground-penetrating radar data on an Alpine glacier".Cryosphere 9.3(2015).
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