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Combustion of a single emulsion fuel droplet in a rapid compression machine

机译:快速压缩机中单个乳化燃料液滴的燃烧

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The autoignition and combustion characteristics of a single water-decane emulsion droplet were examined using a rapid compression machine. A specific volume ratio of water was added to the n-decane, and a water-in-oil emulsion was formed by ultrasonication. The emulsion droplet was suspended at the tip of a fine thermocouple and placed at the center of the reaction chamber. The time evolutions of droplet temperature and diameter were observed. Droplet combustion was classified into four stages, and the characteristics of each stage varied little with the water volume ratio. Ignition delay increased monotonically with initial droplet diameter and water volume ratio. Increasing the water ratio boosted the intensity of micro explosions, while the rise in droplet temperature was hindered by the specific heat and latent heat of the water. The average burning rate was elevated when the initial droplet diameter increased. However, the burning rate was not affected much by the water volume ratio. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用快速压缩机检查单个水/正癸烷乳液液滴的自燃和燃烧特性。将一定体积比的水加入正癸烷中,并通过超声处理形成油包水乳液。将乳液液滴悬浮在精细热电偶的尖端,并置于反应室的中心。观察到液滴温度和直径的时间演变。液滴燃烧分为四个阶段,每个阶段的特性随水体积比的变化很小。点火延迟随初始液滴直径和水体积比而单调增加。增加水的比例会增加微爆炸的强度,而水的比热和潜热会阻碍液滴温度的上升。当初始液滴直径增加时,平均燃烧速率提高。但是,燃烧速度不受水体积比的影响很大。 (C)2016 Elsevier Ltd.保留所有权利。

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