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Development of a Coupled DDA-SPH Method and its Application to Dynamic Simulation of Landslides Involving Solid-Fluid Interaction

机译:耦合DDA-SPH方法的开发及其在涉及固体流体相互作用的滑坡动态模拟的应用

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摘要

Landslides involving solid-fluid interaction such as submarine landslides and landslide dams occur frequently around the world, which may bring severe damage to human lives and properties. Investigation of such landslides is thus of significance to hazard prevention and mitigation. To conduct the analysis, there are three key points to be addressed: (a) the landslide failure process, (b) the free surface flow, and (c) the solid-fluid interaction process. Discontinuous deformation analysis (DDA) method is suitable for analyzing discontinuous blocky systems and has outstanding advantages in simulating the landslide failure process. Meanwhile, smoothed particle hydrodynamics (SPH) method is well-suited for modeling the free surface flow. However, the consideration of solid-fluid interaction in these two methods is seldom, which somehow restricts their applications. With the aim to take advantages of these two methods, a coupled DDA-SPH method in two-dimensional case is proposed, in which the solid-fluid interaction is forced using a penalty approach. The SPH formulations are implemented into DDA code. Several numerical examples are presented to check the validity of the proposed method. A dam-break test is first investigated to show the success of implementing SPH into DDA code for modeling the fluid flow in later simulations of fluid-solid systems. Subsequently, the performance of the coupled DDA-SPH method is validated through a submarine rigid landslide, and the simulation results are in good agreement with the experimental data. Further, an extension study on the submarine deformable landslide is performed, in which the landslide mass consists of multiple blocks and a sensitivity analysis on the interface friction angle between blocks is conducted. Finally, a designed landslide dam is simulated to show the applicability and feasibility of the coupled DDA-SPH method.
机译:涉及固体流体互动的山体滑坡,如潜艇滑坡和滑坡水坝在世界各地发生,这可能对人类的生命和性质带来严重损害。因此,对这种山体滑坡的调查是对防治和缓解的重要性。为了进行分析,有三个关键点待解决:(a)滑坡失效过程,(b)自由表面流动,和(c)固体流体相互作用过程。不连续变形分析(DDA)方法适用于分析不连续的块状系统,在模拟滑坡故障过程方面具有出色的优势。同时,平滑的粒子流体动力学(SPH)方法非常适合于建模自由表面流动。然而,在这两种方法中对固体流体相互作用的考虑很少,以某种方式限制了它们的应用。利用这两种方法的目的,提出了一种二维壳体中的耦合DDA-SPH方法,其中使用惩罚方法强制固体流体相互作用。 SPH配方在DDA代码中实施。提出了几个数值例子以检查所提出的方法的有效性。首先研究了坝断裂测试,以显示将SPH实现为DDA代码,以便在稍后模拟流体固体系统中进行模拟流体流动。随后,通过潜艇刚性滑坡验证耦合DDA-SPH方法的性能,并且模拟结果与实验数据吻合良好。此外,执行对潜艇可变形滑坡的扩展研究,其中滑坡质量由多个块组成,对块之间的界面摩擦角进行灵敏度分析。最后,模拟了设计的滑坡大坝以显示耦合DDA-SPH方法的适用性和可行性。

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