作为远场高爆震波诊断的到达时间

IF 2.1 Q2 ENGINEERING, CIVIL
Dain G. Farrimond, S. Rigby, S. Clarke, A. Tyas
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引用次数: 8

摘要

准确确定爆炸载荷参数的能力将使对爆炸参数变异性的来源及其对载荷本身的大小和形式的影响进行更基本的研究成为可能。这将最终导致对爆炸波行为的更好的基本理解,并将导致更高效和有效的保护系统,并增强关键基础设施的弹性。本文利用大量的历史试验和新进行的实验结果,利用高速摄像机(HSV)拍摄传播激波前沿,对到达时间作为远场高爆爆炸的诊断方法进行了研究。开发并验证了一种用于远场爆炸试验的光学冲击跟踪新方法,并将全场到达时间结果与使用传统压力表记录的历史数据进行了比较。到达时间变异性明显低于峰值压力和峰值比冲,并随着尺度距离的增加呈指数下降。此外,本文中提出的使用HSV相机确定到达时间的方法进一步减少了可变性。结果表明,该方法可以准确地确定高爆药的远场TNT当量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time of arrival as a diagnostic for far-field high explosive blast waves
The ability to accurately determine blast loading parameters will enable more fundamental studies on the sources of blast parameter variability and their influence on the magnitude and form of the loading itself. This will ultimately lead to a better fundamental understanding of blast wave behaviour, and will result in more efficient and effective protective systems and enhanced resilience of critical infrastructure. This article presents a study on time of arrival as a diagnostic for far-field high explosive blasts, and makes use of the results from a large number of historic tests and newly performed experiments where the propagating shock front was filmed using a high-speed video (HSV) camera. A new method for optical shock tracking of far-field blast tests is developed and validated, and full-field arrival time results are compared against those determined from the historic data recorded using traditional pressure gauges. Arrival time variability is shown to be considerably lower than peak pressure and peak specific impulse, and is shown to decrease exponentially with increasing scaled distance. Further, the method presented in this article using HSV cameras to determine arrival time yields further reductions in variability. Finally, it is demonstrated that the method can be used to accurately determine far-field TNT equivalence of high explosives.
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来源期刊
CiteScore
4.30
自引率
25.00%
发文量
48
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