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首页> 外文期刊>Geophysical Research Letters >Landslide subsurface slip geometry inferred from 3-D surface displacement fields
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Landslide subsurface slip geometry inferred from 3-D surface displacement fields

机译:从3D表面位移场推断滑坡地下滑动几何

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摘要

The stability of many large landslides is determined in part by deformation along buried, often inaccessible, slip surfaces. Factors such as infiltrating rainfall on the slip surface lead to stability changes. Yet characterizing the depth and shape of this slip surface is challenging. Here we examine the hypothesis that the subsurface slip geometry can be constrained by ground surface displacements in concert with two, mechanically distinct, forward models. We estimate a 3-D ground displacement field for the slow-moving Cleveland Corral landslide in California using repeat terrestrial laser scanner data. We test the efficacy of two models to estimate slip depth and slip magnitude of the slidea 2-D balanced cross-section method and an elastic dislocation model. The estimated slip surface depth using both methods matches in situ observations from shear rods installed in the slide within the 0.45m misfit indicating that these are valuable approaches for investigating landslide geometry and slip behavior.
机译:许多大型滑坡的稳定性部分取决于沿埋没的,通常难以接近的滑动面的变形。诸如降雨进入滑面表面等因素会导致稳定性变化。然而,表征该滑动表面的深度和形状是具有挑战性的。在这里,我们检查了以下假说,即与两个机械上不同的正向模型相一致,地下滑移的几何形状可以受地表位移的约束。我们使用重复的地面激光扫描仪数据估算了加利福尼亚缓慢移动的克利夫兰科拉尔滑坡的3-D地面位移场。我们测试了两个模型的有效性,以估计滑动2D平衡截面方法和弹性错位模型的滑动深度和滑动量。使用这两种方法估计的滑移表面深度与安装在滑坡中0.45m以内的滑杆的原位观测值相匹配,表明这是研究滑坡几何形状和滑坡行为的有价值的方法。

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