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MATHEMATICAL MODELING OF DETONATION WAVE SUPPRESSION BY CLOUD OF CHEMICALLY INERT SOLID PARTICLES

机译:化学惰性固体团簇抑制爆轰波的数学模型

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摘要

The effect of volume concentration and particle diameter on the velocity of the detonation wave (DW) in hydrogen/oxygen and a methane /oxygen mixtures with addition of inert particle cloud was investigated based on the developed physical and mathematical model of weakening and suppressing the detonation process in the mixtures, which takes into account the detailed kinetics of chemical reactions. The concentration limits (by volume concentration of particles) of detonation in mixtures of hydrogen/oxygen, methane/oxygen, and methane /hydrogen/oxygen were obtained. The comparison of the detonation suppression data in these mixtures revealed that the critical volume concentration quenching DW highest in the methane /hydrogen /oxygen mixture and the lowest in the hydrogen/oxygen mixture. Geometric limits of detonation are determined, and a comparison with similar results predicted by the simple "frozen" model is performed.
机译:基于已开发的弱化和抑制爆轰的物理和数学模型,研究了体积浓度和粒径对氢气/氧气和甲烷/氧气混合物中的爆炸波(DW)速度以及惰性粒子云的影响。在混合物中的过程,其中考虑到了化学反应的详细动力学。获得了氢气/氧气,甲烷/氧气和甲烷/氢气/氧气的混合物中爆炸的浓度极限(按颗粒的体积浓度)。在这些混合物中的爆震抑制数据的比较表明,临界体积浓度的淬火DW在甲烷/氢气/氧气混合物中最高,而在氢气/氧气混合物中最低。确定爆炸的几何极限,并与由简单“冻结”模型预测的相似结果进行比较。

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