1.
EXPERIMENTAL INVESTIGATIONS OF THE MACH REFLECTION IN A CONDENSED EXPLOSIVE

凝聚炸药中爆轰波马赫反射的实验研究
2.
Influences of microstructure on detonation-spreading performances of TATB-based explosives
TATB微观结构对炸药爆轰波传播性能的影响
3.
Effects of Focusing Angle on Laser-supported Detonation Wave in Air

聚焦角度对空气中激光维持爆轰波的影响
4.
Temperature Measurement of Laser-Induced Plasma Detonation Wave

激光支持等离子体爆轰波温度的实验测量
5.
Numerical Simulation of the Diffraction Detonation Wave Based on the Modified SPH Method

基于修正SPH方法的爆轰波绕射传播的数值模拟
6.
Research and Application the Radial Detonating Explosives in the Hole Detonation Wave Propagation Direction;
孔内炸药径向起爆爆轰波传播方向的研究及应用
7.
An experimental investigation is presented concerning the re-intension process of a detonation wave occurring downstream of the acoustic absorbing walled section in this paper.
实验研究了爆轰波在声学吸收段下游发生的再恢复过程。
8.
TWO DIMENSIONAL NUMERICAL SIMULATION FOR THE INERTIAL EFFECT OF EMV GAUGE MOVING WITH DETONATION WAVE
电磁量计随爆轰波运动惯性性质的二维数值模拟
9.
The Numerical Method and Simulation for Propagating Front of Non-Ideal 3D Detonation;

三维非理想爆轰波阵面传播过程的数值方法和数值模拟
10.
Experimental Study on Dynamic Behavior of Lead Plate Driven by Two Head-on Colliding Detonation Waves
爆轰波对碰驱动下平面铅飞层对碰区动载行为实验研究
11.
This paper presents a method of characteristics to calculate the structure of the detonation wave in condensed explosive by the decay shock curve data obtained in the aquarium test.
提出了一种利用爆轰波垂直入射时水中冲击波的衰减曲线计算凝聚炸药爆轰波剖面的特征线方法。
12.
As an example, the distribution of the detonation pressure, density, particle and sound velocity along the detonation profile are given for TNT.
以TNT为例进行了计算,给出了其爆轰波内压力、度、速和声速等参数的分布。
13.
Numerical Simulation of Metallic Sphere-shell's Pressure Caused by Detonation Wave Based on Modified SPH
基于修正光滑粒子流体动力学的爆轰波对金属球壳的压强数值模拟
14.
Numerical Simulation Shock Wave Exteral Flow of Pulse Detonation Engine

脉冲爆轰发动机冲击波外流场数值模拟
15.
A acoustooptic switch for shock wave and detonation physics experiments

用于冲击波和爆轰物理实验中的声光开关
16.
Investigation of detached detonation induced by oblique shock in premixed supersonic flow

预混超声速气流斜激波诱导脱体爆轰研究
17.
Boom! Boom! Boom! A series of explosions shook the valley.

轰!轰!轰!一连串爆破声震撼山谷。
18.
detonation limit for mixture gases

可燃混合气的爆轰范围