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On the burning and microexplosion of collision-generated two-component droplets: miscible fuels

机译:关于碰撞产生的两组分液滴的燃烧和微爆炸:可混溶燃料

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The combustion and microexplosion of freely falling two-component droplets, generated either independently or through the collision or merging of two droplets of the two fuels have been studied experimentally. The results show that the non-disruptive combustion characteristics, including the ignition delay, the flame shrinkage and the burning rates are largely similar for droplets generated with these two different modes, hence indicating the efficiency of mixing through the internal motion produced when droplets coalesce. Microexplosion induced by internal superheating and hence nucleation, however, was only observed for the collision-generated droplets, and is believed to be initiated by the air bubbles entrained during a collision. The potential importance of bubble entrainment during droplet and spray generation on spray atomization and burnout is emphasized.
机译:通过实验研究了自由下落的两组分液滴的燃烧和微爆炸,这些液滴是独立产生的,或者是通过两种燃料的两个液滴的碰撞或合并而产生的。结果表明,在这两种不同模式下产生的液滴,包括点火延迟,火焰收缩和燃烧速率在内的无干扰燃烧特性非常相似,因此表明了通过液滴聚结产生的内部运动进行混合的效率。但是,仅在碰撞产生的液滴中观察到由内部过热引起的微爆炸和成核现象,并且认为是由碰撞过程中夹带的气泡引发的。强调了在液滴和喷雾生成过程中夹带气泡对喷雾雾化和燃尽的潜在重要性。

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