1) detonation front
爆炸面
2) water surface explosion
水面爆炸
1.
The precision guided bomb GBU-28 which is equipping the American army is taken as the research object,By the three-dimensional numerical simulation for water surface explosion of large-aperture-heavy weapon,and using Arbitrary Lagrange-Eu1er method,the fluid-structure coupling dynamic problems for water surface explosion are studied.
选取美军制导炸弹GBU-28作为研究对象,通过对大口径、高弹重武器水面爆炸进行三维数值仿真,利用任意Lagrange-Eu1er计算方法,针对水面爆炸研究了"流-固"耦合动力学问题,分析了水中冲击波和空气冲击波的传播规律以及大坝的动态响应。
3) explosive reflector
爆炸面元
4) ground explosions
地面爆炸
1.
Characteristics of loads on shallow-buried structures under the ground explosions;
炸药地面爆炸条件下土中浅埋结构上荷载的作用特点
6) plane explosive wave
平面爆炸波
1.
The attenuation laws of plane explosive wave with the time-space in concrete are obtained based on the Johnson-Holmquist-Cook constitute model(JHC) for concrete.
采用非线性软件LS-DYNA,混凝土选用JHC模型的基础上,数值模拟了一维应变下爆炸波在半无限混凝土介质中的传播过程,得到了平面爆炸波在混凝土中随时间和空间的衰减规律,以及在爆炸冲击波作用下,脆性介质混凝土形成破碎区和损伤区的演化特性。
补充资料:水面核爆炸(见水下核爆炸)
水面核爆炸(见水下核爆炸)
shallow water nuclear explosion
shuimian hebaozha水面核爆炸(shallow Wa‘“f“ucle“rexplosion)见水下核爆炸。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条