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首页> 外文期刊>Optics and Lasers in Engineering >Laser-induced Fluorescence Imaging Of Acetone Inside Evaporating And Burning Fuel Droplets
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Laser-induced Fluorescence Imaging Of Acetone Inside Evaporating And Burning Fuel Droplets

机译:丙酮在蒸发和燃烧燃料液滴内部的激光诱导荧光成像

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Laser-induced fluorescence was used to visualize acetone fields inside individual droplets of pure acetone as well as droplets composed of methanol or 1-propanol initially mixed with acetone. Droplets were supported on a horizontal wire and two vaporization conditions were investigated: (1) slow evaporation in room air and (2) droplet combustion, which leads to substantially faster droplet surface regression rates. Acetone was preferentially gasified, causing its concentration in droplets to drop in time with resultant decreases in acetone fluorescence intensities. Slowly vaporizing droplets did not exhibit large spatial variations of fluorescence within droplets, indicating that these droplets were relatively well mixed. Ignition of droplets led to significant variations in fluorescence intensities within droplets, indicating that these droplets were not well mixed. Ignited droplets composed of mixtures of 1-propanol and acetone showed large time-varying changes in shapes for higher acetone concentrations, suggesting that bubble formation was occurring in these droplets.
机译:激光诱导的荧光用于可视化纯丙酮单个液滴以及最初与丙酮混合的甲醇或1-丙醇组成的液滴内部的丙酮场。液滴被支撑在水平线上,并研究了两种蒸发条件:(1)室内空气中的缓慢蒸发和(2)液滴燃烧,这导致液滴表面的回归速率大大提高。丙酮优先被气化,使其在液滴中的浓度随时间下降,从而导致丙酮荧光强度降低。缓慢蒸发的液滴在液滴内的荧光没有大的空间变化,表明这些液滴混合得比较好。点燃液滴会导致液滴内的荧光强度发生显着变化,表明这些液滴未充分混合。由1-丙醇和丙酮的混合物组成的点火液滴显示出较高的丙酮浓度,其形状随时间变化较大,表明在这些液滴中形成了气泡。

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