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Modelling blast loads in rail vehicles

机译:铁路车辆爆炸载荷建模

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The open, accessible and crowded nature of urban mass transit networks has attracted previous attacks in London, Madrid and other cities, and it is very difficult to prevent an attacker entering while retaining normal operation of the system. The research presented here contributes to the modelling capability needed to apply a 'passive safety' approach in vehicle design, whereby the impact and consequences of a blast in a mass transit vehicle could be reduced. The multi-material Arbitrary Lagrangian Eulerian (mm-ALE) approach with Fluid Structure Interaction (FSI) is widely reported in the literature, but has been seen as requiring to fine a mesh to be applicable to large scale structures. Reductions in computing cost and improvements in the speed of finite element codes allows large ALE models to be solved, and mm-ALE approach is shown to be effective at predicting the effects of explosions. Also studied is the recently implemented 2D to 3D mapping function available in LS-Dyna, and comparisons are made with the standard 3D approach in terms of computational expense and solution accuracy.
机译:城市公交网络的开放性,可访问性和拥挤性已吸引了伦敦,马德里和其他城市的先前袭击,因此很难在保持系统正常运行的同时阻止攻击者进入。本文介绍的研究有助于在车辆设计中应用“被动安全”方法所需的建模能力,从而可以减少公共交通车辆中爆炸的影响和后果。具有流体结构相互作用(FSI)的多材料任意拉格朗日欧拉(mm-ALE)方法已在文献中广泛报道,但已被视为要求细化网格以适用于大型结构。降低计算成本和提高有限元代码的速度可以解决大型ALE模型,并且mm-ALE方法被证明可有效预测爆炸的影响。还研究了LS-Dyna中最近实现的2D到3D映射功能,并在计算费用和解决方案精度方面与标准3D方法进行了比较。

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