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Numerical Analysis of Shock Wave Propagation Law of Internal Gas Explosion

机译:内部瓦斯爆炸冲击波传播规律的数值分析

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The purpose of this paper is to research on shock wave propagation law of internal gas explosion. The multi-material Eulerian and Lagrangian coupling algorithm was adopt. Using ANSYS/LS-DYNA dynamic analysis software to build frame structure, air and gas explosion models. Multiple ALE elements for simulating air and gas explosion material the analysis of blast shock wave propagation in a threestory steel frame structure and the characteristics of explosion pressure using fluid-structure coupling method are carried out. The conclusions show that fluid-structure coupling method can well simulated shock wave propagation of internal gas explosion, and the pressure peak of blast shock wave increased with the increasing of the blast air initial energy. Locality is the characteristic of explosion pressure in sealed space, and the pressure pass weakly when it propagates in solid.
机译:本文的目的是研究内部气体爆炸的冲击波传播规律。采用了多种材料的欧拉和拉格朗日耦合算法。使用ANSYS / LS-DYNA动态分析软件来构建框架结构,空气和气体爆炸模型。进行了模拟空气和气体爆炸材料的多种ALE元素的分析,爆炸冲击波在三层钢框架结构中的传播以及采用流固耦合方法的爆炸压力特性。结论表明,流固耦合方法能够较好地模拟内部气体爆炸的冲击波传播,并且随着冲击空气初始能量的增加,冲击波的压力峰值增大。局部性是密闭空间内爆炸压力的特征,当压力在固体中传播时,压力会微弱地传递。

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