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移动装药和固定装药爆炸中冲击波压力的测量与分析

Measurement and Analysis of Shock Wave Pressure in Moving Charge and Stationary Charge Explosions.

作者信息

Ma Xuejiao, Kong Deren, Shi Yucheng

机构信息

School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.

出版信息

Sensors (Basel). 2022 Aug 31;22(17):6582. doi: 10.3390/s22176582.

Abstract

Shock wave pressure is one of the most important parameters in an explosion. However, there have been few experimental and analytical investigations of moving charge explosions. In this article, we present an experimental method to measure the shock wave pressure from a moving charge explosion. Tests of stationary charges and moving charges with speeds of 580 m/s, 703 m/s and 717 m/s were carried out. The shock wave pressure curves and parameters at different measurement points were obtained and analyzed. The theoretical calculation of the shock wave overpressure was studied and compared with the experimental result. The differences between the stationary charge and moving charge explosions were investigated. The results showed that the shock wave pressure distribution of a moving charge had strong directionality. The shock wave pressure parameters (including overpressure, arrival time, duration and impulse) were influenced by the charge's moving velocity, direction angle and distance from the blast point. The shock wave overpressure value was greater than that of a stationary charge explosion at angles between 0° and 90°. The correlation model based on the velocity vector superposition method could describe the relationship of overpressure between the stationary charge and moving charge explosions.

摘要

冲击波压力是爆炸中最重要的参数之一。然而,对于移动装药爆炸的实验和分析研究较少。在本文中,我们提出了一种测量移动装药爆炸冲击波压力的实验方法。对静止装药以及速度为580米/秒、703米/秒和717米/秒的移动装药进行了测试。获得并分析了不同测量点处的冲击波压力曲线和参数。研究了冲击波超压的理论计算,并与实验结果进行了比较。研究了静止装药爆炸和移动装药爆炸之间的差异。结果表明,移动装药的冲击波压力分布具有很强的方向性。冲击波压力参数(包括超压、到达时间、持续时间和冲量)受装药移动速度、方向角和距爆炸点距离的影响。在0°至90°之间的角度处,冲击波超压值大于静止装药爆炸的超压值。基于速度矢量叠加法的相关模型可以描述静止装药爆炸和移动装药爆炸之间的超压关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c1d/9459780/23003f93670f/sensors-22-06582-g001.jpg

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