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Visual simulation of landslide fluidized movement based on smoothed particle hydrodynamics

机译:基于平滑粒子流体动力学的滑坡流化运动可视化模拟

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摘要

Earthquake-induced landslides can cause a large number of casualties and great economic loss. Presently, research methods for studying landslides are largely based on a framework of solid mechanics. In this work, visualization software, known as Visual SPH, is developed in Visual Basic 6.0, and can be used to analyze the fluidized movement of landslides based on smoothed particle hydrodynamics (SPH). First, the accuracy of the software is verified through simulating a benchmark problem of a dam-break. Then, fluidized movement analysis of the Tangjiashan landslide is carried out using this software. The simulation derives plots of displacement versus time, reproduces the entire flow process of the Tangjiashan landslide, and determines the run-out, which coincides exactly with the characteristics of flow-like landslides observed in the field. All of these are essential in the design of supporting structures and site selection for reconstruction in earthquake-prone regions.
机译:地震引起的滑坡会造成大量人员伤亡和巨大的经济损失。当前,用于研究滑坡的研究方法主要基于固体力学的框架。在这项工作中,Visual Basic 6.0中开发了可视化软件,称为Visual SPH,可用于基于平滑粒子流体动力学(SPH)分析滑坡的流化运动。首先,通过模拟溃坝基准问题来验证软件的准确性。然后,利用该软件对唐家山滑坡进行了流化运动分析。模拟得出了位移与时间的关系图,再现了唐家山滑坡的整个流动过程,并确定了跳动量,这与现场观察到的类似流动的滑坡特征完全吻合。所有这些对于地震多发地区的支撑结构设计和选址重建都是至关重要的。

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