用物质点法模拟海底滑坡跳动

IF 3.4 3区 工程技术 Q1 MECHANICS
Youkou Dong , Dong Wang , Mark F. Randolph
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引用次数: 41

摘要

目前大多数关于海底滑坡的知识都依赖于利用地球物理技术确定的破坏后沉积物的反向分析。本文使用物质点法(MPM)对刚性基础上滑动的跳动进行了探讨,重点是形态学的岩土工程方面。在粒子点法中,将滑动材料和基底离散为若干拉格朗日粒子,并采用背景欧拉网格对粒子状态进行更新。通过跟踪动态过程中的拉格朗日粒子,可以再现玻片的形态。用MPM法和深度平均法对潜艇滑动的真实历史进行了反分析。从陡峭的斜坡到温和的基地的幻灯片的跳动被复制。然后假定土基参数的不同组合触发了延伸、块体滑动和扩展的跳动机制。MPM预测的跳动距离与大变形有限元分析的伸长和块滑模式吻合较好。地堑和地堑呈扩张状。然而,目前对高灵敏度材料的MPM模拟相对网格敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Runout of submarine landslide simulated with material point method

Most of the present knowledge on submarine landslides relies upon back-analysis of post-failure deposits identified using geophysical techniques. In this paper, the runout of slides on rigid bases is explored using the material point method (MPM) with focus on the geotechnical aspects of the morphologies. In MPM, the sliding material and bases are discretised into a number of Lagrangian particles, and a background Eulerian mesh is employed to update the state of the particles. The morphologies of the slide can be reproduced by tracking the Lagrangian particles in the dynamic processes. A real case history of a submarine slide is back-analyzed with the MPM and also a depth-averaged method. Runout of the slides from steep slopes to moderate bases are reproduced. Then different combinations of soil and basal parameters are assumed to trigger runout mechanisms of elongation, block sliding and spreading. The runout distances predicted by the MPM match well with those from large deformation finite element analysis for the elongation and block sliding patterns. Horst and grabens are shaped in a spreading pattern. However, the current MPM simulations for materials with high sensitivities are relatively mesh sensitive.

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来源期刊
CiteScore
5.90
自引率
0.00%
发文量
1240
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