人民长江 ›› 2025, Vol. 56 ›› Issue (5): 136-142.doi: 10.16232/j.cnki. 1001-4179.2025.05.018

• • 上一篇    

基于 SPH-DEM 并行计算的滑坡涌浪模拟

唐岳灏,姜清辉   

  • 收稿日期:2024-08-09 出版日期:2025-05-28 发布日期:2025-05-28

Landslide surge simulation based on SPH-DEM parallel computing

TANG Yuehao,JIANG Qinghui   

  • Received:2024-08-09 Online:2025-05-28 Published:2025-05-28

摘要: 为解决滑坡体与水体的强耦合及非线性水波演化形成的复杂流 - 固耦合问题,采用光滑粒子流方法 (SPH) 模拟水体动力学特性,通过离散元方法 (DEM) 模拟滑坡体大变形与不连续问题,构建了 SPH-DEM 流 - 固耦合算法,并开发了基于分布式 MPI 的并行计算程序,实现了 SPH-DEM 耦合过程的大规模高性能计算。将该程序应用于湖北省江坪河水库白日垭崩塌体滑坡模拟,再现了滑坡发展、涌浪形成、河道传播、冲击大坝的灾害链过程。结果显示:涌浪在坝前最大高 474.00m,低于坝高 476.00m,此程序在进程数量 128 时取得了超过 70% 的并行加速效率。研究成果能有效分析滑坡涌浪灾害动力学过程,开发的并行程序可为其他国产同类软件提供借鉴。

关键词: 滑坡涌浪;流 - 固耦合;离散元 (DEM);光滑粒子流 (SPH);白日垭崩塌体;江坪河水库

Abstract: To solve the strong coupling between landslide body and water, and the complex fluid-solid coupling problem caused by the evolution of nonlinear water waves, the smoothed particle flow method (SPH) was used to simulate the hydrodynamic characteristics of water, and the discrete element method (DEM) was used to simulate the large deformation and discontinuity of landslides. Through constructing SPH-DEM fluid-solid coupling algorithm, and developing a parallel computing program based on distributed MPI, the large-scale high-performance calculation of the SPH-DEM coupling process was realized. This program was applied to the simulation of Bairiya landslide surge in Jiangpinghe Reservoir of Hubei Province. The disaster chain process of landslide development, surge formation, propagation along river channel and impact on the dam was reproduced. The results showed that the maximum surge height in front of the dam was 474.00 m, which was lower than the dam elevation of 476.00 m. This program achieved more than 70% parallel acceleration efficiency when the processes number was 128. The research results can effectively analyze the dynamic process of landslide surge disaster, and the developed parallel program can provide reference for other domestic similar software.

Key words: landslide surge; fluid-solid coupling; discrete element method (DEM); smoothed particle flow method (SPH); Bairiya landslide; Jiangpinghe Reservoir