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Modeling the shock-induced multiple reactions in a random bed of metallic granules in an energetic material

机译:在高能材料的金属颗粒随机床中模拟激波诱发的多重反应

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An investigation of shock-particle interactions in reactive flows is performed using an Eulerian hydrodynamic method with a hybrid particle level-set algorithm to handle the material interface dynamics. The analysis is focused on the meso- to macro-scale numerical modeling of a granular metalized explosive containing randomly distributed metal particles intended to enhance its blast effect. The reactive flow model is used for the cyclotrimethylene-trinitramine (RDX) component, while thermally induced deflagration kinetics describes the aerobic reaction of the metal particles. The complex interfacial algorithm, which uses aligned level sets to track deforming surface between multi materials and to generate the random shape of granule elements, is described for aluminized and copperized RDX. Then, the shock-induced collapse of metal particles embedded in the condensed phase domain of a high explosive is simulated. Both aluminized and copperized RDX are shown to detonate with a shock wave followed by the burning of the metal particles. The energy release and the afterburning behavior behind the detonating shock wave successfully identified the precursor that gave rise to the development of deflagration of the metal particles. (C) 2019 The Authors. Published by Elsevier Inc. on behalf of The Combustion Institute.
机译:使用欧拉流体力学方法和混合粒子能级设置算法来处理材料界面动力学,对反应流中的冲击粒子相互作用进行了研究。分析的重点是包含随机分布的金属颗粒的金属化炸药的中尺度到宏观尺度的数值模拟,旨在增强其爆炸效果。反应流模型用于环三亚甲基三硝胺(RDX)组件,而热诱导爆燃动力学描述了金属颗粒的好氧反应。针对镀铝和镀铜的RDX,描述了复杂的界面算法,该算法使用对齐的水平集来跟踪多种材料之间的变形表面并生成颗粒元素的随机形状。然后,模拟了由爆炸引起的金属颗粒在高爆炸物的凝结相域中嵌入的坍塌。镀铝的RDX和镀铜的RDX均会在冲击波的作用下爆炸,然后燃烧金属颗粒。引爆冲击波背后的能量释放和后燃行为成功地识别出导致金属颗粒爆燃发展的前体。 (C)2019作者。由Elsevier Inc.代表燃烧研究所出版。

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