Application of Smoothed Particle Hydrodynamics (SPH) for the Simulation of Flow-like Landslides on 3D Terrains

Binghui Cui, Liaojun Zhang
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引用次数: 1

Abstract

Flow-type landslide is one type of landslide that generally exhibits characteristics of high flow velocities, long jump distances, and poor predictability. Simulation of it facilitates propagation analysis and provides solutions for risk assessment and mitigation design. The smoothed particle hydrodynamics (SPH) method has been successfully applied to the simulation of two-dimensional (2D) and three-dimensional (3D) flow-like landslides. However, the influence of boundary resistance on the whole process of landslide failure is rarely discussed. In this study, a boundary algorithm considering the friction is proposed, and integrated into the boundary condition of the SPH method, and its accuracy is verified. Moreover, the Navier-Stokes equation combined with the non-Newtonian fluid rheology model was utilized to solve the dynamic behavior of the flow-like landslide. To verify its performance, the Shuicheng landslide event, which occurred in Guizhou, China, was taken as a case study. In the 2D simulation, a sensitivity analysis was conducted, and the results showed that the shearing strength parameters have more influence on the computation accuracy in comparison with the coefficient of viscosity. Afterwards, the dynamic characteristics of the landslide, such as the velocity and the impact area, were analyzed in the 3D simulation. The simulation results are in good agreement with the field investigations. The simulation results demonstrate that the SPH method performs well in reproducing the landslide process, and facilitates the analysis of landslide characteristics as well as the affected areas, which provides a scientific basis for conducting the risk assessment and disaster mitigation design.
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光滑粒子流体力学(SPH)在三维地形流状滑坡模拟中的应用
流型滑坡是滑坡的一种类型,一般表现为流速大、跳跃距离远、可预见性差。它的模拟有助于传播分析,并为风险评估和缓解设计提供解决方案。光滑颗粒流体力学(SPH)方法已成功地应用于二维(2D)和三维(3D)流状滑坡的模拟。然而,边界阻力对滑坡破坏全过程的影响却鲜有讨论。本文提出了一种考虑摩擦的边界算法,并将其集成到SPH方法的边界条件中,验证了其精度。利用Navier-Stokes方程结合非牛顿流体流变模型求解流型滑坡的动力特性。为验证其性能,以贵州水城滑坡事件为例进行了研究。在二维模拟中,进行了敏感性分析,结果表明剪切强度参数对计算精度的影响大于粘度系数。然后,在三维模拟中分析了滑坡的动力学特征,如速度和冲击面积。模拟结果与现场调查结果吻合较好。仿真结果表明,SPH方法能较好地再现滑坡过程,便于对滑坡特征和受影响区域进行分析,为开展滑坡风险评估和减灾设计提供科学依据。
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