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A comparison of hydrodynamic and analytic predicted blast pressure profiles

机译:流体动力和解析预测爆炸压力曲线的比较

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Modeling the structural response to blast relies on accurate descriptions of the blast loading pressure profiles. Traditionally, empirically based blast pressure histories are used for this modeling. However, the structural response and geometric configuration can strongly affect the blast loading profile, particularly for close-in blast loading configurations. As a result, high rate continuum modeling is being increasingly applied to directly resolve both the blast profiles and structural response. A variety of computer models exist for the purpose of analyzing blast pressures associated with different types of explosive charges and ranges. These computer models range from simple empirically based analytic models based off of the Hopkinson cube root scaling to multi-physics high rate finite element approaches, commonly known as "hydrocodes", which are capable of tracking shocks through the conservation equations of continuum mechanics. The purpose of this paper is to provide comparisons of blast profiles predicted by analytic models with a hydrodynamic model at various standoffs. Three computer models; BlastX, Conwep, and ALE3D, were used to model the detonation of five pounds of TNT. Pressure profiles for various standoffs were gathered from each computer model and compared. The ALE3D result is greatly dependant on the mesh size and appears to converge to the BlastX and Conwep solutions with increased mesh resolution.
机译:对爆炸的结构响应进行建模依赖于爆炸载荷压力曲线的准确描述。传统上,基于经验的爆炸压力历史记录用于此建模。但是,结构响应和几何形状会严重影响爆破载荷分布,特别是对于近距离爆破载荷构造。结果,高速率连续体建模正越来越多地应用于直接解析爆炸轮廓和结构响应。为了分析与不同类型的炸药和射程有关的爆炸压力,存在各种计算机模型。这些计算机模型的范围从基于Hopkinson立方根缩放的简单基于经验的分析模型到通常称为“水码”的多物理场高速率有限元方法,都可以通过连续体力学的守恒方程跟踪冲击。本文的目的是提供分析模型预测的爆破剖面与水力模型在不同距离之间的比较。三种计算机模型; BlastX,Conwep和ALE3D用于模拟5磅TNT的爆炸。从每个计算机模型中收集各种支座的压力曲线并进行比较。 ALE3D结果在很大程度上取决于网格尺寸,并且似乎已收敛到具有更高网格分辨率的BlastX和Conwep解决方案。

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