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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Compensating Changes in the Penetration Depth of Pulse-Limited Radar Altimetry Over the Greenland Ice Sheet
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Compensating Changes in the Penetration Depth of Pulse-Limited Radar Altimetry Over the Greenland Ice Sheet

机译:补偿格陵兰冰盖上脉冲受限雷达测高仪的穿透深度的变化

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Changes in firn properties affect the shape of pulse-limited radar altimeter echoes acquired over the polar ice sheets. We apply a waveform deconvolution model to CryoSat-2 low-resolution mode echoes to determine the depth distribution of radar backscattering across the Greenland Ice Sheet. The deconvolution allows us to calculate the relative contributions of surface and volume scattering and the effective penetration depth of the radar echoes into the snowpack. The most prominent signal is associated with the extreme surface melting of summer 2012, which resulted in a shift of the dominant radar scattering horizon toward the snow surface in the accumulation zone. At locations above 2000 m, the average penetration depth in July 2012 (prior to the melt event) was 3.79 1.12 m. Following the melt event, there was an abrupt reduction in the average penetration depth across the same region to 1.45 0.94 m. The average penetration depth then gradually increased to 3.28 1.13 m by the end of 2017, as fresh snow accumulated on the ice sheet surface. Although the variation in penetration is evident in surface height estimates derived from the CryoSat-2 echoes, the magnitude of the effect is reduced by waveform retracking. Using airborne laser altimeter data recorded over the same time period, we show that the penetration variation can be compensated effectively by incorporating the deconvolution penetration depth into the surface height retrieval.
机译:发射特性的变化会影响在极地冰原上采集的脉冲受限雷达高度计回波的形状。我们将波形反卷积模型应用于CryoSat-2低分辨率模式回波,以确定整个格陵兰冰原上雷达反向散射的深度分布。解卷积使我们能够计算表面和体积散射的相对贡献以及雷达回波进入积雪的有效穿透深度。最突出的信号与2012年夏季的极端地表融化有关,这导致主要雷达散射层向积聚区的雪面移动。在2000 m以上的位置,2012年7月(融化事件之前)的平均穿透深度为3.79 1.12 m。融化事件之后,同一区域的平均渗透深度突然降低至1.45 0.94 m。到2017年底,由于新鲜积雪在冰盖表面积聚,平均渗透深度逐渐增加到3.28 1.13 m。尽管从CryoSat-2回波推导出的表面高度估算值中穿透力的变化很明显,但通过波形重新跟踪可以减小影响的幅度。使用同期记录的机载激光高度计数据,我们表明,通过将反褶积穿透深度合并到表面高度检索中,可以有效地补偿穿透变化。

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