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首页> 外文期刊>Geophysical Research Letters >Rock falls in high-alpine rock walls quantified by terrestrial lidar measurements: A case study in the Mont Blanc area
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Rock falls in high-alpine rock walls quantified by terrestrial lidar measurements: A case study in the Mont Blanc area

机译:通过地面激光雷达测量量化的高高山岩墙中的岩石坠落:以勃朗峰地区为例

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摘要

The global warming observed in recent decades and its future increase may affect permafrost distribution on high-mountain faces with consequences for their stability. In this paper, we show that rock falls from high-alpine rock walls can be computed with a decimetre-resolution using lidar measurements. A laser scanner was used to create point clouds and triangulated irregular network models on the east face of the Tour Ronde at 3792 m asl (Mont Blanc massif). Comparison of the models realised from measurements of July 2005 and July 2006 enabled quantification of rock falls with reduced uncertainty. The volume of rock fall reached a total of 536 m(3) in the scanned area, which matches an erosion rate of 8.4 mm yr(-1). This rate slightly higher to the ones reported in former studies enable to assume that this rock fall may be the consequence of the permafrost degradation in this rock face.
机译:近几十年来观察到的全球变暖及其未来的加剧可能会影响高山面的多年冻土分布,并对其稳定性产生影响。在本文中,我们表明可以使用激光雷达测量结果以分米为分辨率计算从高高山岩壁上掉落的岩石。激光扫描仪被用于在3792 m asl(勃朗峰地块)的环朗德东面创建点云和不规则三角网模型。通过对2005年7月和2006年7月的测量结果实现的模型进行比较,可以对落石量进行量化,并减少不确定性。在扫描区域中,落石量总计达到536 m(3),与侵蚀速率8.4 mm yr(-1)相匹配。这个速率比以前的研究报告的速率稍高一些,因此可以假定该岩石崩塌可能是该岩石面多年冻土退化的结果。

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