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Detonation diffraction in combustible high-speed flows

机译:可燃高速流中的爆轰衍射

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Detonation propagating in a T-shaped tube with quiescent and moving hydrogen/oxygen/argon mixtures is numerically examined based on the Euler equations with detailed finite-rate chemistry using the fifth-order weighted essentially non-oscillatory scheme. When diffracted in a quiescent combustible mixture, the detonation wave propagating from the bottom of the T-shaped tube is influenced by the corner rarefaction waves and decays into a non-reacting shock. Subsequently, the decoupled shock reflects irregularly from the top wall. Through several reflections back and forth between the top and bottom walls, a planar detonation is finally re-established. When the combustible mixture in the horizontal part flows from the left to the right, the detonation products ejected from the vertical tube will retard the flow, generating a compression flow upstream and a rarefaction flow downstream. The disturbed detonation on the left side is stronger than that on the right side. The final planar detonation in the upstream direction propagates faster than the Chapman-Jouguet (CJ) detonation with compressed, fine cellular structures, whereas the detonation in the downstream direction propagates more slowly than the CJ detonation with elongated, coarse cellular structures. The details of the transient behavior of diffracting detonation in high-speed flows are discussed.
机译:基于Euler方程,使用五阶加权基本非振荡方案,基于具有详细有限速率化学的Euler方程,对带有静态和移动的氢/氧/氩混合物的T形管中的爆轰传播进行了数值检查。当在静止的可燃混合物中衍射时,从T形管底部传播的爆炸波会受到拐角稀疏波的影响,并衰减为无反应的冲击波。随后,解耦的冲击不规则地从顶壁反射。通过顶壁和底壁之间的多次反射,最终重新建立了平面起爆。当水平部分中的可燃混合物从左向右流动时,从垂直管中喷出的爆炸产物将阻碍流动,在上游产生压缩流,在下游产生稀疏流。左侧的扰动爆震比右侧的强。在上游方向的最终平面起爆比在压缩,细孔结构的Chapman-Jouguet(CJ)起爆传播快,而在下游方向的起爆比细长,粗孔结构的起爆传播慢。讨论了高速流中衍射爆轰的瞬态行为的细节。

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