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Tiggering of Detonation upon Flame Interaction with an Expansion Wave

机译:火焰与膨胀波相互作用时引爆的触发

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The transition of a deflagration wave into an abruptly expanding part of a plane channel, where a quasi-steady supersonic underexpanded jet of an unburned gas is formed, is studied for a propane-oxygen mixture using schlieren pictures. Two explosion-initiation modes (weak and strong) are registered. In the first case, almost instantaneous onset of the detonation wave occurs when the flame front enters the expanding section; the initial velocity of this wave is approximately 1.5 times the Chapman-Jouguet detonation velocity (D_CJ) and then decrease to a value corresponding to self-sustaining detonation. In the second case, the front velocity gradually increases from approx = 0.4 D_CJ to approx = 1.0 D_CJ. It is established that the starting pulse triggering the transformation of turbulent combustion to explosion and detonation regimes is generated by interaction of the flame front with expansion waves, which are elements of the structure of the initial section of the jet.
机译:使用schlieren图片研究了丙烷-氧气混合物的爆燃波过渡到平面通道的突然扩展部分,在该部分中形成了未燃烧气体的准稳态超音速欠扩展射流。记录了两种爆炸初始化模式(弱和强)。在第一种情况下,当火焰前沿进入膨胀区时,几乎立即发生爆炸波的爆发。该波的初始速度约为Chapman-Jouguet爆轰速度(D_CJ)的1.5倍,然后减小到与自持爆轰相对应的值。在第二种情况下,前部速度从大约= 0.4 D_CJ逐渐增加到大约= 1.0 D_CJ。可以确定的是,触发脉冲将湍流燃烧转变为爆炸和爆炸形式是通过火焰前沿与膨胀波的相互作用产生的,膨胀波是射流初始部分结构的组成部分。

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