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Brief communication: An empirical relation between center frequency and measured thickness for radar sounding of temperate glaciers

机译:简要沟通:中心频率与温带冰川雷达响起的测量厚度的实证关系

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摘要

Radar sounding of the thickness of temperate glaciers is challenged by substantial volume scattering, surface scattering and high attenuation rates. Lower-frequency radar sounders are often deployed to mitigate these effects, but the lack of a global synthesis of their success limits progress in system and survey design. Here we extend a recent global compilation of glacier thickness measurements (GlaThiDa) with the center frequency for radar-sounding surveys. From a maximum reported thickness of ~ ?1500?m near 1?MHz, the maximum thickness sounded decreases by ~ ?500?m per frequency decade. Between 25–100?MHz, newer airborne radar sounders generally outperform older, ground-based ones. Based on globally modeled glacier thicknesses, we conclude that a multi-element, ≤30 ?MHz airborne radar sounder could survey most temperate glaciers more efficiently.
机译:温带冰川厚度的雷达探测是通过大量体积散射,表面散射和高衰减速率造成的挑战。 往往部署较低频率的雷达测量仪以减轻这些效果,但缺乏全球合成的成功限制了系统和调查设计的进展。 在这里,我们将最近的全局汇编绘制冰川厚度测量(Glathida)与雷达辐射调查的中心频率。 从最大报告的厚度为1?MHz近1?MHz,最大厚度令人震惊地减小〜500Ω·频率十年。 在25-100岁之间,较新的机载雷达探测器一般优于较老的地面基础。 基于全局建模的冰川厚度,我们得出结论,多元素≤30?MHz机载雷达测绘仪可以更有效地调查大多数温带冰川。

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