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A new continuum dynamic model for the analysis of extremely rapid landslide motion across complex three-dimensional terrain.

机译:一个新的连续动力学模型,用于分析复杂的三维地形中极快速的滑坡运动。

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摘要

Runout analysis, the prediction of landslide motion and its effects, is an essential component of landslide risk assessment. A new continuum dynamic model has been developed for the runout analysis of extremely rapid, flow-like landslides, including rock avalanches, debris avalanches, debris flows and flow slides. The new model, DAN3D, is a 3D extension of the existing 2D model DAN. It uses a meshless, Lagrangian numerical method adapted from Smoothed Particle Hydrodynamics to discretize and solve the depth-averaged equations of motion for an "equivalent fluid", a hypothetical material governed by simple rheological relationships. The required rheological parameters, rather than measured, are calibrated through back-analysis of real landslide case studies. The key capabilities of the model include: (1) the ability to simulate motion across complex 3D terrain without the need to input a pre-defined path direction or width and without introducing problems due to mesh distortion; (2) the ability to simulate strain-dependent, non-hydrostatic, anisotropic internal stresses due to 3D deformation of material with internal shear strength; (3) the ability to simulate mass and momentum transfer due to entrainment of path material; (4) the ability to simulate variations in rheology along the path and within the landslide; and (5) efficient and simple operation. The model outputs the simulated spatial distribution of hazard intensity parameters, including flow velocity and depth, which are required for delineating the potential impact area, estimating the vulnerability of elements within this area and designing protective measures. It has been tested using both analytical and experimental methods, and its general behaviour has been demonstrated using a series of simple parametric analyses. The model has also been applied at full-scale to the simulation of a wide variety of landslide types. These back-analyses form the basis for a more thorough calibration, but some useful patterns have already emerged. This experience has been applied in practice to landslide runout prediction, although so far only in a parametric way. With continued back-analysis of real cases and the development of a probabilistic approach to forward-analysis, true landslide runout prediction, including quantification of uncertainty, should eventually be possible using the new model.
机译:跳动分析是滑坡运动及其影响的预测,是滑坡风险评估的重要组成部分。已经开发了一种新的连续动力学模型,用于对极其快速的,类似水流的滑坡进行跳动分析,包括岩崩,泥石崩塌,泥石流和泥石流。新模型DAN3D是现有2D模型DAN的3D扩展。它使用了一种适用于平滑流体流体动力学的无网格拉格朗日数值方法,离散化和求解了“等效流体”(一种受简单流变关系控制的假设材料)的深度平均运动方程。通过对真实滑坡案例研究的反分析,可以校准而不是测量所需的流变参数。该模型的关键功能包括:(1)在复杂的3D地形上模拟运动的能力,而无需输入预定义的路径方向或宽度,并且不会由于网格变形而引起问题; (2)能够模拟由于材料具有内部剪切强度而产生的3D变形所引起的应变相关的,非静液压的各向异性内部应力; (3)模拟路径材料夹带引起的质量和动量传递的能力; (4)模拟沿路径和滑坡内部流变学变化的能力; (5)高效,简单的操作。该模型输出危险强度参数(包括流速和深度)的模拟空间分布,这是描述潜在影响区域,估计该区域内元素的脆弱性并设计防护措施所需的。它已使用分析和实验方法进行了测试,并且已通过一系列简单的参数分析证明了它的一般性能。该模型也已全面应用于模拟各种滑坡类型。这些反向分析构成了更彻底校准的基础,但是一些有用的模式已经出现。尽管迄今为止仅以参数方式,但这种经验已在实践中应用于滑坡跳动预测。随着对真实案例的持续反向分析以及对前向分析的概率方法的发展,使用新模型最终可能会实现包括不确定性量化在内的真实滑坡跳动预测。

著录项

  • 作者

    McDougall, Scott.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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