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Influence of Charge Shape and Point of Detonation on Blast-Resistant Design

机译:装药形状和爆轰点对抗爆设计的影响

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摘要

Charts in technical manuals and standards of practice can be used to compute incident and reflected peak overpressures and scaled impulses generated by a detonation of a high explosive. Design values are reported for spherical free-air bursts and hemispherical surface bursts as a function of scaled distance and angle of incidence, where the charges are detonated at the center of the sphere. This paper describes a numerical study with a verified and validated computational fluid dynamics code that characterizes the influence of charge shape, charge orientation, and the point of detonation within the charge on free-field incident overpressures and impulses. Analyses are performed with cylindrical charges of different aspect ratios and masses, and results are compared with those of a baseline analysis of a spherical charge. In the near field and midfield, charge shape and point of detonation affect the peak overpressure and impulse, providing values that are significantly different from those associated with a central detonation of a spherical charge of the same mass. The effect of charge shape and point of detonation can be ignored, for the purpose of a design based on impulse, at scaled distance greater than 3 m/kg(1/3). (C) 2015 American Society of Civil Engineers.
机译:技术手册和实践标准中的图表可用于计算由于爆炸性高爆炸而产生的入射和反射峰值超压以及成比例的脉冲。报告了球形自由空气爆裂和半球形表面爆裂的设计值,它们是缩放距离和入射角的函数,在此处电荷在球体中心引爆。本文介绍了一个经过验证和验证的计算流体力学代码的数值研究,该代码表征了装药形状,装药方向以及装药内爆轰点对自由场入射超压和脉冲的影响。使用不同纵横比和质量的圆柱装药进行分析,并将结果与​​球形装药的基线分析进行比较。在近场和中场,装药形状和爆轰点会影响峰值超压和脉冲,提供的值与相同质量的球形装药的中心爆轰相关的值明显不同。对于基于脉冲的设计,在大于3 m / kg(1/3)的缩放距离上,可以忽略装药形状和爆轰点的影响。 (C)2015年美国土木工程师学会。

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