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A remote sensing approach for the derivation of numerical modelling input data: insights from the Hope Slide,Canada

机译:一种遥感方法,用于衍生数值建模输入数据:加拿大希望幻灯片的见解

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In this paper,we describe an integrated remote sensing approach for the collection of geomechanical data to be used as input for continuum,discontinuum,and hybrid numerical analyses.Ground-based and aerial remote sensing techniques,including terrestrial digital photogrammetry(TDP),terrestrial laser scanning(TLS),structure-frommotion photogrammetry(SfM),and terrestrial infrared thermography(IRT)may be used for collecting rock mass data appropriate for input into varied numerical modelling approaches.To demonstrate our suggested approach,we have used the 1965 Hope Slide,British Columbia,Canada.We present the mapping of rock discontinuities for numerical modelling using a hierarchical geological structure order.Large-scale geological structures which were identified and mapped on the pre-failure and present-day topography are used in a preliminary analysis of the rock slope to investigate their influence on kinematic freedom and in bounding keyblocks.Detailed geomechanical mapping is performed on three-dimensional TDP models.IRT data is used to characterize surface water seepage.Unmanned aerial vehicle(UAV)SfM imagery of the landslide debris was used to analyse the block size distribution.Preliminary numerical discontinuum 3D-DEM modelling based on this data and assigned mechanical properties shows that with detailed planning and systematic field data collection techniques,the geological engineer can obtain the data necessary to reduce both model and parameter uncertainty and allow more reliable and realistic numerical slope simulations.
机译:在本文中,我们描述了地质力学数据的收集综合遥感方法被用作用于连续,非连续,和混合数值analyses.Ground基和航空遥感技术,包括地面数字摄影(TDP),地面输入激光扫描(TLS),构frommotion摄影(SFM),和地面红外热成像(IRT)可以被用于收集岩体数据适合于输入到变化数值模拟approaches.To证明我们建议的方法,我们已经使用了1965年希望滑动,不列颠哥伦比亚省,Canada.We使用其中被确定,并映射到故障前和现今地形中初步分析中使用了分层地质结构order.Large尺度地质结构岩石呈现不连续性的映射数值模拟石坡,调查他们对运动的自由和影响力的边界keyblocks.Detailed地质力学映射PERF ormed三维TDP models.IRT数据被用于表征表面水seepage.Unmanned飞行器(UAV)SFM图像滑坡碎片被用于分析的块尺寸数值distribution.Preliminary非连续3D-DEM建模设计基于该数据并指派的机械性能表明,用详细的规划和系统的野外数据收集技术,地质工程师能够获得必要的同时减少模型和参数不确定性的数据,并允许更可靠和更逼真的数值模拟坡。

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