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Numerical simulation of detonation initiation with a shock wave entering a cloud of aluminum particles

机译:冲击波进入铝颗粒云的爆炸起爆的数值模拟

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Based on the mathematical model of a reacting two-phase medium in the two-velocity,two-temperature approximation,the process of planar shock wave entering a cloud of aluminum particles is numericcally studied.The incident shock wave may have either a rectangular or a triangular profile,i.e.,it may be accompanied bya rarefaction wave.An analysis of numerical data allowed us to determine conditions of possible establishment of a steady detonation regime in the cloud.Scenarios of initiation and types of detonation flows in the cloud are determined as functions of the amplitude of the incident shock wave and initiation energy.Criteria of detonation initiation for various fractions of particles are obtained,which express the dependence of the energy stored in the shock wave on its Mach number.
机译:基于在两速度,两温度近似下反应的两相介质的数学模型,数值研究了平面冲击波进入铝颗粒云的过程。入射冲击波可以是矩形或矩形。三角形轮廓,即可能伴有稀疏波。对数值数据的分析使我们能够确定在云中建立稳定爆轰体制的条件。确定了云中起爆和爆轰流的类型作为函数求出了不同部分粒子的爆炸起爆判据,表达了冲击波中储存的能量对其马赫数的依赖关系。

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