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THE EFFECT OF WATER CONTENT DIAMETER ON THE STRUCTURE OF LIGHT OIL-WATER EMULSION SPRAY FLAME

机译:含水量对轻质油水乳状液喷射火焰结构的影响

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摘要

Microexplosions of light oil-water emulsified fuel droplets were successfully documented using a high-speed video camera with laser illumination. The local frequency of the explosion occurrence, temperature profile and exhaust gas emissions were measured in spray flames of water-in-oil type emulsion formed using an air-assist atomizer with a ring pilot burner. Those results indicate that the flame structure changes as the water droplet diameter in the emulsion fuel was varied, even if the fuel components and their fractions were same. When the fuel includes the water droplet, whose median diameter was about 75μm, HC and CO emission were reduced as compared to those for the fuel of smaller water droplet content. It is probable that if the water droplet diameter is uniform, avalanching microexplosions occur at certain local region in the flame, and the water content vaporizes almost at once and extinguishes the flame. It leads to HC and CO emission increase. When the water droplet diameters are large, atomizer atomizes those; therefore, emulsion droplets include various size of water droplet in the flame. Consequently, the avalanching microexplosion occurrence is avoided, and HC and CO emissions are reduced.
机译:使用带激光照明的高速摄像机成功记录了轻质油水乳化的燃油滴的微爆炸。在使用带环形引燃器的空气辅助雾化器形成的油包水型乳化液的喷雾火焰中,测量爆炸发生的局部频率,温度曲线和废气排放。这些结果表明,即使燃料成分及其分数相同,乳化燃料中的水滴直径也会随着火焰结构的变化而变化。当燃料包含水滴(中值直径约为75μm)时,与水滴含量较小的燃料相比,HC和CO的排放量减少了。如果水滴直径均匀,则很可能在火焰中的某些局部区域发生雪崩性微爆炸,并且水分几乎立即蒸发并熄灭火焰。这导致HC和CO排放增加。当水滴直径大时,雾化器将那些雾化;因此,乳剂液滴包括火焰中各种大小的水滴。因此,避免了雪崩式微爆炸的发生,并减少了HC和CO的排放。

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