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A model for the analysis of rapid landslide motion across three-dimensional terrain

机译:跨三维地形的快速滑坡运动分析模型

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摘要

A new numerical model for the dynamic analysis of rapid flow slides, debris flows, and avalanches has been developed. The model is an extension of an earlier algorithm and is implemented using a numerical method adapted from smoothed particle hydrodynamics. Its features include (i) the ability to simulate flow across complex three-dimensional terrain; (ii) the ability to allow nonhydrostatic and anisotropic internal stress distributions, coupled with strain changes through frictional relationships; (iii) the ability to simulate material entrainment; (iv) a choice of different rheological kernels, including frictional, plastic, viscous, Bingham, and Voellmy; (v) a meshless solution, which eliminates problems with mesh distortion during long displacements; and (vi) highly efficient and simple operation. The model has been tested by analysing a series of laboratory flume experiments with granular materials, both on straight and curved paths. The model is capable of accurately predicting the margins of various curving flows using a single set of input parameters. A preliminary analysis of a real rock avalanche case history is also included.
机译:已经开发了一种用于快速分析滑坡,泥石流和雪崩的新数值模型。该模型是早期算法的扩展,并使用了一种适用于平滑粒子流体动力学的数值方法来实现。其特征包括:(i)能够模拟复杂的三维地形上的流量; (ii)允许非静水和各向异性内应力分布的能力,以及通过摩擦关系引起的应变变化; (iii)模拟物质夹带的能力; (iv)选择不同的流变学内核,包括摩擦,塑性,粘性,宾厄姆和伏尔米; (v)无网格解决方案,消除了长位移时网格变形的问题; (vi)高效,简单的操作。该模型已通过分析一系列在直线和弯曲路径上使用粒状材料的实验室水槽实验进行了测试。该模型能够使用一组输入参数准确预测各种弯曲流的边距。还包括对真实岩石雪崩案例历史的初步分析。

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