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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Coupled simulation of explosion-driven fracture of cylindrical shell using SPH-FEM method
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Coupled simulation of explosion-driven fracture of cylindrical shell using SPH-FEM method

机译:SPH-FEM方法耦合模拟圆柱壳爆炸驱动断裂

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A coupled Smoothed Particle Hydrodynamics-Finite Element Method (SPH-FEM) method was presented to simulate the dynamic fracture of cylindrical shell subjected to internal explosion. The movement of detonation products was modeled by SPH, and the fracture response of cylindrical shell was modeled by FEM, where they were coupled together by a penalty-based coupling approach. A rate-dependent failure criterion which was proposed and verified in our previous work was employed in the simulation to account for the adiabatic shear failure of the cylindrical shell. Also, the decoupled simulation was conducted to make a comparison with the coupled SPH-FEM simulation above. Results showed the interaction between blast wave and cylindrical shell, the dynamic crack propagation behavior and the leakage of detonation products. It is found that the coupled SPH-FEM method can well handle the fluid-structure interaction (FSI) problem which involves local topology changes and ruptures. Compared with decoupled simulation, the coupled SPH-FEM simulation gives a more reliable prediction of the final fracture morphology of cylindrical shell. The decoupled simulation tends to present a result with severer bulging deformation but smaller fracture size compared with the real situation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种耦合光滑粒子流体动力学有限元方法(SPH-FEM)来模拟圆柱壳在内部爆炸下的动态断裂。爆轰产物的运动通过SPH进行建模,圆柱壳的断裂响应通过FEM进行建模,然后通过基于惩罚的耦合方法将它们耦合在一起。在模拟中采用了速率依赖的破坏准则,该准则在我们先前的工作中提出并得到验证,以说明圆柱壳的绝热剪切破坏。此外,进行了解耦仿真,以与上面的耦合SPH-FEM仿真进行比较。结果表明,爆炸波与圆柱壳的相互作用,裂纹的动态扩展行为和爆炸产物的泄漏。研究表明,耦合SPH-FEM方法可以很好地处理涉及局部拓扑变化和破裂的流固耦合问题。与解耦仿真相比,SPH-FEM耦合仿真可以更可靠地预测圆柱壳的最终断裂形态。与实际情况相比,解耦模拟往往会呈现出更严重的凸起变形,但断裂尺寸较小的结果。 (C)2016 Elsevier Ltd.保留所有权利。

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