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首页> 外文期刊>Geophysical Research Letters >Rock glacier surface motion in Beacon Valley, Antarctica, from synthetic-aperture radar interferometry - art. no. 1607
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Rock glacier surface motion in Beacon Valley, Antarctica, from synthetic-aperture radar interferometry - art. no. 1607

机译:来自合成孔径雷达干涉法的南极信标谷岩石冰川表面运动-艺术。没有。 1607

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1] We present radar interferograms of rock glaciers in the Beacon Valley sector of the McMurdo Dry Valleys, in East Antarctica, as part of a comprehensive study of surface processes in the area. Due to the relative absence of net precipitation (snow) in this region and the stability of the surface, the rock glaciers maintain excellent coherence of the radar returns over several years. As a result, we obtain a spatially continuous surface velocity field with a precision of fractions of a millimeter per year. On distinct rock glaciers entering Beacon Valley, we find coherent velocity patterns, with peak velocities approaching 40 mm per year. The ice supply from these rock glaciers nourishes the central portion of Beacon Valley, where velocities are found to be vanishingly small, and partly compensates for mass losses induced by sublimation. This analysis is consistent with the tantalizing notion that Beacon Valley ice is the oldest on Earth. [References: 22
机译:1]我们提出了南极东部麦克默多干旱谷的信标谷地区岩石冰川的雷达干涉图,作为对该地区地表过程进行全面研究的一部分。由于该区域相对缺乏净降水(雪)以及地表的稳定性,因此,冰川冰川在数年内保持了雷达回波的出色连贯性。结果,我们获得了空间连续的表面速度场,精度为每年几毫米。在进入信标谷的不同岩石冰川上,我们发现了相干的速度模式,峰值速度每年接近40毫米。这些岩石冰川提供的冰块滋养了笔架谷的中心部分,那里的速度已经消失得很小,并且部分补偿了升华引起的质量损失。该分析与诱人的观点一致,即信标谷的冰是地球上最古老的。 [参考:22

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