Fei Shang, Liangquan Wang
Nanjing University of Science and Technology, Jiangsu, 210094, Nanjing, China.
Sci Rep. 2024 Jun 19;14(1):14131. doi: 10.1038/s41598-024-62603-0.
To study the influence of pits on shock wave propagation and the propagation of shock waves within pits, numerical simulations were used to calculate the distribution of overpressure peak values at the bottom and rear of the pits at 5 depths and 5 explosion center distances. The results indicate that diffraction occurs when the explosion shock wave passes through the edge of the crater; The peak overpressure of the shock wave at the bottom of the pit exhibits a "spoon shaped" distribution, and the peak overpressure on the right side is significantly higher than that on the left side; There are two distinct boundary regions for the overpressure of the shock wave behind the crater due to the influence of the crater; The distance between the explosion centers has little effect on the distribution trend of the overpressure peak of the shock wave at the bottom and rear of the pit, mainly affecting the magnitude of the overpressure peak. The research results provide theoretical support for the analysis of the propagation law of explosion shock waves and guidance for the design of protective engineering structures, with significant engineering application value.
为研究坑对冲击波传播以及坑内冲击波传播的影响,采用数值模拟方法计算了5个深度和5个爆炸中心距离下坑底部和后方超压峰值的分布。结果表明:爆炸冲击波通过坑边缘时会发生绕射;坑底部冲击波超压峰值呈“勺形”分布,右侧超压峰值明显高于左侧;由于坑的影响,坑后方冲击波超压存在两个明显的边界区域;爆炸中心距离对坑底部和后方冲击波超压峰值的分布趋势影响较小,主要影响超压峰值大小。研究结果为爆炸冲击波传播规律分析提供了理论支撑,为防护工程结构设计提供了指导,具有重要的工程应用价值。