shape of incident shock wave 入射激波形状
When the temperature and pressure behind incident shock wave decrease, the photochemical ignition delay times will increase.
光化学点火延迟时间随初始爆炸波后温度和压力的降低而增长。
For an incident shock wave, the strength of reflected shock waves from the boundary of different materials are calculated theoretically.
从理论上计算了同一强度的入射冲击波在不同材料界面上产生的反射冲击波强度。
Meanwhile, the strength of the incident shock wave has the most important influence on the transmitted flow system, that is, strong shock induces the whole flow field towards the shock direction.
对波系起 实质影响作用的是入射激波强度,激波越强,则整个透射流场呈现偏向激波的趋势;
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