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Modelling fragmentation of a 155 mm artillery shell IED in a buried mine blast event

机译:埋藏矿山爆炸事件中的155毫米炮弹的碎片模拟

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The shapes of improvised explosive devices (IEDs) used in conflicts are complex and take many forms. As device fragmentation and soil interaction must be included to provide accurate system physics, modelling unique IED device, artillery shell, and high explosive (HE) shapes is critical for the successful evaluation of protective structures for soldiers and civilians. Finite element and discrete particle method (DPM) techniques using the explicit non-linear transient finite element software IMPETUS Afea Solver? are documented for a series of studies ranging from a simple cylinder explosion to a complex full vehicle blast. Explored in detail are detonation results of a soil buried M795 artillery shell and its ejecta interaction with the TARDEC Generic Vehicle Hull containing a seated IMPETUS Afea hybrid III 50th percentile dummy. These studies also evaluate sensitivity to nine design variables and structure fragmentation response resulting from element type and the use of a node splitting algorithm.
机译:在冲突中使用的简易爆炸装置(IED)的形状是复杂的并且需要多种形式。由于设备碎片和土壤相互作用必须包括在内,以提供精确的系统物理,建模独特的IED设备,火炮壳和高爆炸(HE)形状对于士兵和平民的保护结构的成功评估至关重要。有限元和离散颗粒方法(DPM)技术使用明确的非线性瞬态有限元软件推动AFEA求解器?被记录在一系列研究中,从简单的气缸爆炸到复杂的全车爆炸。详细探索的是土壤埋藏M795炮弹的爆炸结果及其喷射器互动与含有坐着的动力驱动的TARDEC通用车辆船体的互动互动。这些研究还评估了元素类型和节点分裂算法产生的九个设计变量和结构碎片响应的敏感性。

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