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DARRIEUS-LANDAU AND THERMO-ACOUSTIC INSTABILITIES IN CLOSED VESSEL EXPLOSIONS

机译:封闭容器爆炸中的DARRIEUS-LANDAU和热声不稳定性

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Experiments involving a spherical explosion bomb are reported, in which Darrieus-Landau thermo-diffusive, D-L,T-D, flame instabilities interacted with primary and secondary, self-excited, thermo-acoustic oscillations. Explosions with central ignition demonstrated that rich i-octane and lean hydrogen-air mixtures generated strong pressure oscillations, a consequence of their negative Markstein numbers. Utilizing dual wall ignitions, the structures of high pressure flames were studied using appropriate optical techniques. The conditions that gave rise to the greatest increase in the rate of combustion were strong initial D-L,T-D, flame instabilities and a high rate of change of the heat release rate, sufficient to generate strong secondary pressure oscillations. These, in turn, generated Rayleigh-Taylor instabilities that further wrinkled the flames. The bomb was equipped with four fans which showed that an rms turbulent velocity in excess of about 0.6 m/s was sufficient to reduce, and almost eradicate, the effect of these instabilities on the flame speed.
机译:报道了涉及球形爆炸弹的实验,其中达里厄斯-兰道热扩散,D-L,T-D火焰不稳定性与一次和二次自激热声振荡相互作用。中央点火装置的爆炸表明,富正辛烷和稀氢-空气混合物会产生强烈的压力振荡,这是其负马克斯坦数的结果。利用双壁点火,使用适当的光学技术研究了高压火焰的结构。导致燃烧速率最大增加的条件是:强烈的初始D-L,T-D,火焰不稳定性和放热率的高变化率,足以产生强烈的二次压力振荡。这些反过来产生了瑞利泰勒不稳定性,进一步使火焰起皱。炸弹配备了四个风扇,这些风扇显示均方根湍流速度超过约0.6 m / s足以减少并几乎消除这些不稳定性对火焰速度的影响。

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