首页> 外文会议>International Conference on Computational Science(ICCS 2006) pt.2; 20060528-31; Reading(GB) >A Virtual Test Facility for Simulating Detonation-Induced Fracture of Thin Flexible Shells
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A Virtual Test Facility for Simulating Detonation-Induced Fracture of Thin Flexible Shells

机译:虚拟试验装置,用于模拟薄壳爆炸引起的破裂

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摘要

The fluid-structure interaction simulation of detonation- and shock-wave-loaded fracturing thin-walled structures requires numerical methods that can cope with large deformations as well as topology changes. We present a robust level-set-based approach that integrates a Lagrangian thin shell finite element solver with fracture and fragmentation capabilities with an Eulerian Cartesian detonation solver with optional dynamic mesh adaptation. As an application example, the rupture of a thin aluminum tube due to the passage of an ethylene-oxygen detonation wave is presented.
机译:爆轰和冲击波加载的压裂薄壁结构的流固耦合仿真需要数值方法,能够应对较大的变形以及拓扑变化。我们提出了一种基于水平集的鲁棒方法,该方法将具有断裂和破碎功能的拉格朗日薄壳有限元求解器与具有可选动态网格自适应功能的欧拉笛卡尔爆震求解器集成在一起。作为应用实例,提出了由于乙烯-氧爆轰波的通过而导致的细铝管的破裂。

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