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Analysis techniques for coherent airborne radar sounding: Application to West Antarctic ice streams

机译:相干机载雷达探测的分析技术:在南极西部冰流中的应用

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摘要

Analysis of coherent radar sounding echoes from polar ice sheets can provide information suitable for classifying the subglacial environment. Echoes from a general interface consist of both specularly reflected and diffusely scattered contributions. Specular reflection results from smooth uniform interfaces, whereas diffuse scattering results from rough nonuniform interfaces and inhomogeneous media. This article discusses how these phenomena are important to the acquisition and analysis of coherent radar sounding data. Reflection results are presented from airborne surveys conducted in 1987 over the downstream portions of Whillans Ice Stream and Ice Stream C, West Antarctica. Additionally, reflection and scattering analyses along with new results are presented for repeat profiles flown in 2001 over Ice Stream C. Analysis methods include using echo amplitudes to compute reflection coefficients which are used for inferring the dielectric properties of the subglacial material. Echo phase analysis provides the locations of dominant scattering centers which relate to reflection or scattering from the interface as well as provide interface roughness estimates. Comparison of low- and high-resolution imaging obtained from synthetic aperture radar techniques indicates a reflecting and/or scattering interface. Combining the results from these independent analyses provides classification of the subglacial environment. Classified regions include smooth seawater, smooth saturated sediments, accreted marine ice, rough bottom crevasses, mixed conditions with partial subglacial water, and dry frozen conditions.
机译:对来自极地冰盖的相干雷达探测回波的分析可以提供适合分类冰下环境的信息。来自一般界面的回波既包含镜面反射的贡献,又包含分散散射的贡献。镜面反射是由光滑均匀的界面引起的,而漫反射是由粗糙的不均匀界面和不均匀的介质引起的。本文讨论了这些现象对于相干雷达探测数据的获取和分析如何重要。反射结果来自1987年在南极西部Whillans冰河和C冰河下游进行的机载调查。此外,还针对2001年冰河C上流经的重复剖面介绍了反射和散射分析以及新的结果。分析方法包括使用回波振幅来计算反射系数,这些系数用于推断冰下材料的介电特性。回波相位分析提供了主要散射中心的位置,该位置与界面的反射或散射有关,并提供了界面粗糙度的估计。从合成孔径雷达技术获得的低分辨率和高分辨率成像的比较表明反射和/或散射界面。结合这些独立分析的结果,可以对冰下环境进行分类。分类区域包括光滑的海水,光滑的饱和沉积物,增加的海冰,粗糙的底部裂缝,与部分冰河水混合的条件以及干燥的冷冻条件。

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