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Interaction Of The Burning Spherical Droplets In Oxygen-enriched Turbulent Environment

机译:富氧湍流环境中燃烧球形液滴的相互作用

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Three-dimensional numerical studies on the interaction of vaporizing and burning droplets were conducted to understand the burning characteristics of multiple droplets in a turbulent environment. The burning droplets characteristics, such as lifetime, surface temperature, vaporization, reaction, and burning rate were examined for various oxygen mole-fractions and geometrical arrangements of droplets. Results from a single droplet combustion test were first verified and validated against existing experimental data. Results indicate that turbulent intensity has a moderate effect on droplet burning rate, but not as prominent an effect as the oxygen mole-fraction. At high oxygen mole-fractions, droplet lifetime was short due to enhanced burning. It is shown that evaporation processes of multiple droplets are notably affected by the inter-space distance between droplets both in streamwise and spanwise directions. The burning rate as a function of oxygen mole-fraction and inter-space distance is determined and can be used as a guideline for future studies on spray combustion.
机译:进行了关于汽化和燃烧液滴相互作用的三维数值研究,以了解在湍流环境中多个液滴的燃烧特性。对于各种氧气摩尔分数和液滴的几何排列,检查了燃烧液滴的特性,例如寿命,表面温度,汽化,反应和燃烧速率。首先对单个液滴燃烧测试的结果进行验证,并对照现有的实验数据进行验证。结果表明,湍流强度对液滴燃烧速率有中等影响,但没有氧摩尔分数那么明显。在高氧气摩尔分数下,由于燃烧增强,液滴的寿命很短。结果表明,多个液滴的蒸发过程在流向和跨度方向上都受到液滴之间的间距的显着影响。确定了燃烧速率随氧气摩尔分数和空隙间距的变化,可以用作未来喷雾燃烧研究的指南。

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