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Reflected Near-field Blast Pressure Measurements Using High Speed Video

机译:使用高速视频反射近场爆炸压力测量

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Background: The design and analysis of protective systems requires a detailed understanding of, and the ability to accurately predict, the distribution of pressure loads acting on an obstacle following an explosive detonation. In particular, there is a pressing need for accurate characterisation of blast loads in the region very close to a detonation, where even small improvised devices can produce serious structural or material damage. Objective: Accurate experimental measurement of these near-field blast events, using intrusive methods, is demanding owing to the high magnitudes (> 100 MPa) and short durations (< 1 ms) of loading. The objective of this article is to develop a non-intrusive method for measuring reflected blast pressure distributions using image analysis. Methods: This article presents results from high speed video analysis of near-field spherical PE4 explosive blasts. The Canny edge detection algorithm is used to track the outer surface of the explosive fireball, with the results used to derive a velocity-radius relationship. Reflected pressure distributions are calculated using this velocity-radius relationship in conjunction with the Rankine-Hugoniot jump conditions. Results: The indirectly measured pressure distributions from high speed video are compared with directly measured pressure distributions and are shown to be in good qualitative agreement with respect to distribution of reflected pressures, and in good quantitative agreement with peak reflected pressures (within 10% of the maximum recorded value). Conclusions: The results indicate that it is possible to accurately measure blast loads in the order of 100s MPa using techniques which do not require sensitive recording equipment to be located close to the source of the explosion.
机译:背景:保护系统的设计和分析需要详细了解,并准确地预测的能力,压力负荷的分布在爆炸性爆炸后作用于障碍物。特别地,在非常接近爆炸的区域中精确地表征爆炸载荷的精确表征,在这种情况下,即使是小的简易装置也会产生严重的结构或材料损坏。目的:使用侵入性方法的准确实验测量这些近场爆炸事件,由于高幅度(> 100MPa)和持续的载荷(<1毫秒)而要求。本文的目的是开发一种非侵入性方法,用于使用图像分析测量反射的爆破压力分布。方法:本文提出了近场球面PE4爆炸爆炸的高速视频分析的结果。 Canny Edge检测算法用于跟踪爆炸性火球的外表面,结果用于推导速度半径关系。使用这种速度 - 半径的关系计算反射压力分布,与兰氏帽 - Hugoniot跳转条件相结合。结果:将高速视频的间接测量的压力分布与直接测量的压力分布进行了比较,并且良好的定性协议与反射压力分布,以及与峰值反射压力的良好定量协议(10%以内)最大录制值)。结论:结果表明,可以使用不需要靠近爆炸源的敏感记录设备的技术来准确地测量100S MPa的爆破载荷。

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