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Dimensional analysis of impulse loading resulting from detonation of shallow-buried charges

机译:浅埋炸药爆炸引起的脉冲载荷的尺寸分析

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Purpose - Development of military vehicles capable of surviving shallow-buried explosive blast is seldom done using full-scale prototype testing because of the associated prohibitively high cost, the destructive nature of testing, and the requirements for large-scale experimental-test facilities and a large crew of engineers committed to the task. Instead, tests of small-scale models are generally employed and the model-based results are scaled up to the full-size vehicle. In these scale-up efforts, various dimensional analyses are used whose establishment and validation requires major experimental testing efforts and different-scale models. The paper aims to discuss these issues. Design/methodology/approach - In the present work, a critical assessment is carried out of some of the most important past efforts aimed at developing the basic dimensional analysis formulation for the problem of impulse loading experienced by target structures (e.g. vehicle hull) due to detonation of explosive charges buried to different depths in sand/soil (of different consistency, porosity, and saturation levels). Findings - It was found that the analysis can be substantially simplified if only the physical parameters associated with first-order effects are retained and if some of the sand/soil parameters are replaced with their counterparts which better reflect the role of soil (via the effects of soil compaction in the region surrounding the explosive and via the effects of sand-overburden stretching and acceleration before the associated sand bubble bursts and venting of the gaseous detonation products takes place). Once the dimensional analysis is reformulated, a variety of experimental results pertaining to the total blast impulse under different soil conditions, charge configurations, charge deployment strategies, and vehicle ground clearances are used to establish the underlying functional relations. Originality/value - The present work clearly established that due to the non-dimensional nature of the quantities formulated, the established relations can be utilized across different length scales, i.e. although they are obtained using mainly the small-scale model results, they can be applied at the full vehicle length scale.
机译:目的-由于相关的过高的成本,测试的破坏性以及对大型实验测试设施和设备的需求,很少使用全尺寸的原型测试来开发能够在浅埋炸药中幸存的军用车辆。大量的工程师致力于这项任务。取而代之的是,通常采用小规模模型的测试,并将基于模型的结果按比例放大至全尺寸车辆。在这些扩大规模的工作中,使用了各种维度分析,其建立和验证需要大量的实验测试工作和不同规模的模型。本文旨在讨论这些问题。设计/方法/方法-在当前工作中,对过去一些最重要的工作进行了严格的评估,这些工作旨在开发基本尺寸分析公式,以解决目标结构(例如,船体)由于脉冲载荷而引起的冲击载荷问题。爆炸炸药埋在沙子/土壤中的不同深度(具有不同的稠度,孔隙度和饱和度)。研究结果-研究发现,如果仅保留与一阶效应相关的物理参数,并且将某些沙/土参数替换为能更好地反映土壤作用(通过效应)的对应参数,则可以大大简化分析爆炸物周围区域的土壤压实作用,以及在相关的沙泡破裂和气体爆炸产物排出之前,通过砂土覆盖层拉伸和加速的作用)。重新进行尺寸分析后,可以使用各种与不同土壤条件,装药配置,装药部署策略和车辆离地间隙有关的总爆炸冲击力的实验结果来建立基本的功能关系。原创性/价值-本工作清楚地确定,由于所配制数量的无量纲性质,可以在不同的长度范围内利用已建立的关系,即,尽管它们主要是使用小规模模型结果获得的,但它们可以以整车长度比例应用。

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