定量三维探地雷达分析估算冰川的总体积和含水量

M. Dossi, E. Forte, M. Pipan, R. Colucci
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引用次数: 4

摘要

我们对高山冰川的三维探地雷达数据集应用自动拾取和反演算法,研究其内部地层、密度分布、总体积和含水量。探地雷达调查对冰川学研究特别有用,因为发射的信号可以有效地在整个冰川体积中传播,而大量记录的痕迹使任何定量分析在统计上都是合理的。所应用的自动拾取算法旨在准确、客观地识别GPR数据集中的主要反射,并根据其峰值幅度、行进时间和极性对其进行表征。然后,反演算法利用这些量来恢复每条GPR剖面的地下地层和电磁速度分布。在空气-冰混合物中,通过众所周知的经验公式,电磁速度与密度有关。因此,我们的反演算法能够恢复冰川内部的密度分布,并将其与内部地层相结合来估算其含水量。通过将此程序应用于三维GPR数据集,我们可以获得整个冰川的精确模型,而4d调查可以用于监测其时间变化并估计其年度和季节性质量平衡。
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Quantitative 3-D GPR analysis to estimate the total volume and water content of a glacier
We apply an automated picking and inversion algorithm to a 3-D GPR data set acquired on an alpine glacieret, to study its internal stratigraphy, density distribution, total volume, and water content. GPR surveys are particularly useful for glaciological studies, since the transmitted signal can propagate efficiently through the entire glacier volume, while the large number of recorded traces makes any quantitative analysis statistically sound. The applied auto-picking algorithm is designed to accurately and objectively identify the main reflections within a GPR data set, and to characterize them in terms of their peak amplitudes, travel times, and polarities. The inversion algorithm then uses these quantities to recover the subsurface stratigraphy and EM velocity distribution along each GPR profile. In air-ice mixtures, the EM velocity is linked to the density through well-known empirical formulas. Therefore, our inversion algorithm is able to recover the density distribution within a glacier, and combine it with the internal stratigraphy to estimate its water content. By applying this procedure to a 3-D GPR data set, we can obtain an accurate model of an entire glacier, while 4-D surveys can be used to monitor its temporal changes and estimate its annual and seasonal mass balances.
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