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Initiation and sustaining mechanisms of stabilized Oblique Detonation Waves around projectiles

机译:弹丸周围稳定爆轰波的起爆和维持机制

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摘要

Direct initiations and stabilizations of three-dimensional conical detonation waves were attained by launching spheres with 1.06–1.31 times the C–J velocities into detonable mixtures. We conducted high time-resolution Schlieren visualizations of the whole processes over unsteady initiations to stable propagations of the stabilized Oblique Detonation Waves (ODWs) using a high-speed camera. The detonable mixtures were stoichiometric oxygen mixtures with acetylene, ethylene or hydrogen. They were diluted with argon in a 50% volumetric fraction, and a 75% diluted mixture was also tested for the acetylene/oxygen. The direct initiation of detonation by the projectile and the DDT process like the re-initiation appeared in the initiation process of stabilized ODW. This process eventually led to the stabilized ODW supported by the projectile velocity and the ringed shape detonation wave originating in the re-initiation. We modeled the spatial evolution of stabilized ODW after the re-initiation based on its C–J velocity and angle. The model qualitatively reproduced the measured development rate of stabilized ODW. We also discussed about the detonation stability for the curvature effect arising from the three-dimensional nature of stabilized ODW around the projectile. The curvature effect attenuated the detonation wave below its C–J velocity at the vicinity of projectile. The propagation limits of curvature effect will be responsible for the criticality to attain the stabilized ODWs. By accessing the detailed distributions of propagation velocities and curvature radiuses, the critical curvature radiuses normalized by the cell sizes experimentally revealed to be 8–10 or 15–18 for mixtures diluted with each 50% argon or 75% argon/krypton.
机译:通过以1.06–1.31倍C–J速度将球发射到可爆炸混合物中,可以实现三维圆锥形爆轰波的直接起爆和稳定化。我们使用高速摄像机对从不稳定启动到稳定爆轰波(ODW)稳定传播的整个过程进行了高分辨率的Schlieren可视化。可爆炸混合物是与乙炔,乙烯或氢的化学计量的氧气混合物。将它们用氩气按体积分数50%稀释,并对75%稀释的混合物的乙炔/氧气进行测试。由弹丸和DDT过程直接引发的爆炸像重新引发一样,出现在稳定的ODW的引发过程中。该过程最终导致了弹丸速度和源自重新初始化的环形爆震波所支持的稳定的ODW。我们根据稳定的ODW的C–J速度和角度对重新初始化后的空间演化进行了建模。该模型定性地再现了测得的稳定ODW的发展速度。我们还讨论了由弹丸周围稳定ODW的三维性质引起的曲率效应的爆轰稳定性。曲率效应使弹丸附近的爆轰波在其C–J速度以下衰减。曲率效应的传播极限将决定获得稳定ODW的临界程度。通过访问传播速度和曲率半径的详细分布,通过以50%的氩气或75%的氩气/ diluted稀释的混合物,通过晶胞大小归一化的临界曲率半径实验显示为8-10或15-18。

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