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Energy analysis of secondary droplet atomization schemes

机译:二次液滴雾化方案的能量分析

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This paper presents the energy analysis of the secondary atomization of droplets with various component compositions. We use the following four schemes together or separately: initial droplets colliding with each other, interaction with a solid wall, droplet transformation due to the oncoming air flow, and micro-explosive breakup of a droplet being heated. We consider the kinetic energies of primary (pre-atomization) and secondary (post-atomization) droplets and determine the heat spent on atomization. To show the need to atomize secondary droplets, we establish the differences between the heat released per unit time during the combustion of primary and secondary droplets. We also show that the least energy-consuming scheme is the one involving droplets colliding with each other and the most effective one in terms of fine aerosol production is the scheme with the micro-explosive droplet breakup. The latter may increase the liquid surface area more than tenfold. The research findings show that the energy spent on the atomization of fuel droplets is less than 1% of the energy released from their combustion. A combination of several atomization schemes becomes more effective with larger initial liquid droplets and their complex component composition.
机译:本文介绍了各种组分组合物的液滴二次雾化的能量分析。我们一起使用以下四个方案或单独使用:初始液滴彼此碰撞,与实心墙相互作用,由于迎面而来的空气流动,由于迎面而来的气流液滴转换,以及被加热的液滴的微爆炸分解。我们考虑初级(预雾化)和次级(雾化后)液滴的动力学能量,并确定在雾化上花费的热量。为了表明需要雾化次级液滴,我们在初级和次级液滴的燃烧期间确定每单位时间释放的热量之间的差异。我们还表明,最少的能耗方案是涉及彼此碰撞的液滴的方案,并且在精细气溶胶生产方面最有效的是具有微爆炸液滴分析的方案。后者可能增加液体表面积超过十倍。研究结果表明,在燃料液滴雾化上花费的能量小于其燃烧中释放的能量的1%。几种雾化方案的组合对于较大的初始液滴及其复杂的组分组合物变得更有效。

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