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Simulation and Experiments of Hypervelocity Impact in Containers with Fluid and Granular Fillings

机译:流体和颗粒填充物容器中超细损伤的模拟与实验

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This paper presents both experiments and associated numerical simulations of hypervelocity impacts (approx. 3000 m/s) of spherical aluminum projectiles onto hollow aluminum cylinders with either water or sand filling, which serve as representative filling substances for fluid and powdery materials, respectively. High-speed video technique is used to monitor the impact process. The paper mainly focuses on the following two subjects: (a) A direct comparison of failure and fracture of the container shell and the associated release of the filling depending on its type.in both experiment and simulation, (b) With the above mentioned cases as reference examples, the applicability and efficiency of different numerical methods is investigated, such as Langrangian discretizations with Finite Element (FE)/Smoothed Particle Hydrodynamics (SPH) coupling, a coupled adaptive FE/SPH discretization and a coupled Euler/Lagrange method. The influence of the different simulation methods in terms of container failure representation and ejecta cloud properties is investigated and compared with the experimental results.
机译:本文介绍了具有水或砂填充的空心铝缸上的超高速撞击(约3000米/秒)的实验和相关数值模拟,其用水或砂填充物,分别作为流体和粉末材料的代表性填充物质。高速视频技术用于监控影响过程。本文主要集中在以下两个主题:(a)对容器壳的故障和断裂的直接比较,以及根据其类型的填充的相关释放。在实验和模拟中,(b)与上述情况作为参考实施例,研究了不同数值方法的适用性和效率,例如具有有限元(Fe)/平滑粒子流体动力学(SPH)耦合的Langrangian离散化,耦合自适应Fe / SPH离散化和耦合的欧拉/拉格朗日方法。研究了不同仿真方法对容器失效表示和喷射云性能的影响,并与实验结果进行了比较。

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