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首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Contribution of multi-temporal remote sensing images to characterize landslide slip surface ? Application to the La Clapière landslide (France)
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Contribution of multi-temporal remote sensing images to characterize landslide slip surface ? Application to the La Clapière landslide (France)

机译:多时间遥感图像表征滑坡滑面的贡献?在LaClapièreLandslide(法国)的应用

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Landslide activity is partly controlled by the geometry of the slip surface. This activity is traduced at the surface by displacements and topographic variations. Consequently, multi-temporal remote sensing images can be used in order to characterize the geometry of landslide slip surface and its spatial and temporal evolution. Differential Digital Elevation Models (DEMs) are obtained by subtracting two DEMs of different years. A method of multi-temporal images correlation allows to generate displacement maps that can be interpreted in terms of velocity and direction of movements. These data are then used to characterize qualitatively the geometry of the slip surface of the la Clapière landslide (French Southern Alps). Distribution of displacement vectors and of topographic variations are in accordance with a curved slip surface, characterizing a preferential rotational behaviour of this landslide. On the other hand, a spatial and temporal evolution of the geometry of the slip surface is pointed out. Indeed, a propagation of the slip surface under the Iglière bar, in the W part of the landslide, is suspected and can be linked to the acceleration of the landslide in 1987. This study shows the high potential of multi-temporal remote sensing images for slip surface characterization. Although this method could not replace in situ investigations, it can really help to well distribute geophysical profiles or boreholes on unstable areas.
机译:滑坡活动部分由滑动表面的几何形状控制。该活动通过位移和地形变化在表面进行。因此,可以使用多时间遥感图像,以表征滑坡滑动表面的几何形状及其空间和时间演进。通过减去不同年的两个DEM获得差分数字高度模型(DEMS)。一种多时间图像相关方法允许生成可以在速度和运动方向上解释的位移映射。然后,这些数据用于定性地表征LaClapièreLandslide(法国南部阿尔卑斯州)的滑动表面的几何形状。位移矢量和地形变化的分布均根据弯曲的滑动表面,表征该滑坡的优先旋转行为。另一方面,指出了滑动表面的几何形状的空间和时间演变。实际上,怀疑Iglière棒下的滑动表面的传播,并且可以涉及1987年的滑坡的加速度。该研究表明了多时间遥感图像的高潜力滑动表面表征。虽然这种方法无法取代原位调查,但它可以真正有助于在不稳定的区域上分配地球物理曲线或钻孔。

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