首页> 外文会议>The 2001 ASME International Mechanical Engineering Congress and Exposition, 2001, Nov 11-16, 2001, New York, New York >Effects of Initial Diameter on Burning of Nonane Droplets in a Non-Buoyant and Buoyant Ambience: Burning Rate, Soot Formation and Flame Structure
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Effects of Initial Diameter on Burning of Nonane Droplets in a Non-Buoyant and Buoyant Ambience: Burning Rate, Soot Formation and Flame Structure

机译:初始直径对非浮性和浮性环境中壬烷液滴燃烧的影响:燃烧速率,烟尘形成和火焰结构

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摘要

The results from nonane droplet combustion experiments conducted at 1g and μg are analyzed and compared in the following aspects: the burning rate, soot formation, flame structure. By varying the initial droplet diameter, we observe and discuss the effect of D, on droplet burning. The μg experiments were performed in a drop tower and a drag shield was used to create a low buoyant environment. All experiments were fiber-supported and used the same experimental instruments. The droplet size between 0.40 to 0.95mm was examined in the experiments. Results showed that droplet burning is nonlinear in both a buoyant and a non-buoyant environment for the initial droplet diameters examined. Soot formation, which is influenced by D_o may strongly affect the droplet burning process in both environments. The large droplet produces more soot and bums slowly whereas the small droplet burns fast because there is less soot.
机译:分析了在1g和μg下进行的壬烷液滴燃烧实验的结果,并在以下方面进行了比较:燃烧速率,烟灰形成,火焰结构。通过改变初始液滴直径,我们观察和讨论了D对液滴燃烧的影响。微克实验是在吊塔中进行的,并使用了防风罩来创建低浮力的环境。所有实验均由纤维支撑,并使用相同的实验仪器。在实验中检查了0.40至0.95mm之间的液滴尺寸。结果表明,对于所检查的初始液滴直径,在浮力和非浮力环境中,液滴燃烧都是非线性的。受D_o影响的烟灰形成可能会强烈影响两种环境中的液滴燃烧过程。大的油滴产生更多的烟灰并缓慢燃烧,而小的油滴燃烧快,因为烟灰较少。

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