水下和空中爆炸冲击波传播特性对比分析

张社荣;孔源;王高辉;

振动与冲击 ›› 2014, Vol. 33 ›› Issue (13) : 148-153.

PDF(2101 KB)
PDF(2101 KB)
振动与冲击 ›› 2014, Vol. 33 ›› Issue (13) : 148-153.
论文

水下和空中爆炸冲击波传播特性对比分析

  • 张社荣1,孔源1,王高辉1,2

作者信息 +

A comparative analysis on shock wave propagation characteristics of underwater and air explosions

  • ZHANG Sherong1,KONG Yuan1,WANG Gaohui1,2
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摘要

由于水和空气的物理属性差异以及与爆炸产物的界面作用效应不同,使得爆炸冲击波在水和空气中传播特性存在较大差异。通过构建自由场水下和空中爆炸耦合数值仿真模型,对水下和空中爆炸冲击波传播特性进行对比分析,研究了起爆介质对冲击波峰值压力、冲量、传播速度的影响;同时考虑冲击波与自由面反射的稀疏波相互作用过程,研究了近自由面对水下和空中爆炸冲击波传播特性的影响。研究表明,水下爆炸冲击波传播压强峰值及冲量均较空中爆炸大很多,对结构的潜在破坏能力较强;自由界面对冲击波传播特性存在较大的影响,在近自由面水下爆炸产生了冲击波水面切断及气穴现象,而在近自由面空中爆炸产生了冲击波增强效应。

Abstract

There exists significant contrast in wave propagation phenomena in the water and the air medium due to their different physical properties and interface phenomena. The fully coupled numerical simulation models for free-field explosions in water and air are established. The shock wave propagation characteristics from explosions in water and air are simulated and compared. At the same time, taking the interaction between the shock wave and the rarefaction wave reflected by the free surface into consideration, the influence of the free surface on the shock wave propagation characteristics is investigated. The results show that the shock wave propagation peak pressures and impulses from underwater explosion are significantly higher than that from air blast. An underwater explosion can cause significantly more damage to the structure. The free surface has significant effects on the shock wave propagation characteristics. The cut-off effect and bulk cavitation phenomenon occur in underwater explosion near a free surface, and the enhancement effect appears in air explosion near a free surface.

关键词

冲击波传播特性 / 水中爆炸 / 空中爆炸 / 界面效应 / 切断效应 / 气穴

Key words

shock wave propagation characteristic / underwater explosion / air explosion / surface effect / cut-off effect / cavitation

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导出引用
张社荣;孔源;王高辉;. 水下和空中爆炸冲击波传播特性对比分析[J]. 振动与冲击, 2014, 33(13): 148-153
ZHANG Sherong;KONG Yuan;WANG Gaohui;. A comparative analysis on shock wave propagation characteristics of underwater and air explosions[J]. Journal of Vibration and Shock, 2014, 33(13): 148-153

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