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首页> 外文期刊>Combustion, Explosion, and Shock Waves >Attenuation and Suppression of Detonation Waves in Reacting Gas Mixtures by Clouds of Inert Micro- and Nanoparticles
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Attenuation and Suppression of Detonation Waves in Reacting Gas Mixtures by Clouds of Inert Micro- and Nanoparticles

机译:用惰性微型和纳米颗粒反应气体混合物的爆轰波浪的衰减和抑制

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摘要

Physicomathematical models are proposed to describe the processes of detonation propagation, attenuation, and suppression in hydrogen-oxygen, methane-oxygen, and silane-air mixtures with inert micro- and nanoparticles. Based on these models, the detonation velocity deficit is found as a function of the size and concentration of inert micro- and nanoparticles. Three types of detonation flows in gas suspensions of reacting gases and inert nanoparticles are observed: steady propagation of an attenuated detonation wave in the gas suspension, propagation of a galloping detonation wave near the flammability limit, and failure of the detonation process. The mechanisms of detonation suppression by microparticles and nanoparticles are found to be similar to each other. The essence of these mechanisms is decomposition of the detonation wave into an attenuated frozen shock wave and the front of ignition and combustion, which lags behind the shock wave. The concentration limits of detonation in the considered reacting gas mixtures with particles ranging from 10 nm to 1 mu m in diameter are also comparable. It turns out that the detonation suppression efficiency does not increase after passing from microparticles to nanoparticles.
机译:提出了物理化学模型来描述氢 - 氧,甲烷 - 氧气和硅烷 - 空气混合物中的爆轰繁殖,衰减和抑制的过程。基于这些模型,发现爆炸速度不足作为惰性微型和纳米颗粒的尺寸和浓度的函数。观察到反应气体和惰性纳米颗粒的气体悬浮液中的三种类型的爆轰流动:稳定的爆轰波在气体悬浮液中的稳定传播,疾驰的爆轰波在可燃性极限附近传播,以及爆炸过程的失效。发现微粒和纳米颗粒的爆炸抑制机制彼此相似。这些机制的本质是将爆轰波分解成衰减的冷冻冲击波和点火和燃烧前面,这落后于冲击波。考虑反应气体混合物中爆炸的浓度限制在直径为10nm至1μm的颗粒中也是可比的。事实证明,从微粒通过微粒至纳米颗粒后,爆炸抑制效率不会增加。

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