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STUDIES ON COMBUSTION OF SINGLE AND DOUBLE STREAMS OF METHANOL AND METHANOL/DODECANOL DROPLETS

机译:甲醇与甲醇/十二烷醇单双流燃烧的研究

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摘要

Results are presented on combustion characteristics of single and double droplet streams injected into hot gas environments. The droplets were composed of methanol/dodecanol mixtures or methanol. A flat-flame burner generated hot gases that were directed down an electrically heated flow tube. Droplets initially about 193 μm in diameter were injected through the center of the flat-flame burner and along the tube, where they ignited. Staged burning was observed for methanol/dodecanol droplets but not for methanol droplets. Burning rates decreased as the number of droplet streams was increased from one to two, and burning rates increased as the initial mass fraction of dodecanol was increased. The experiments indicated that droplet stream interactions influenced sooting and droplet disruption. The data also indicated that liquid species mixing rates were significantly larger in these droplets than in methanol/dodecanol droplets burned in previous reduced-gravity experiments―these differences are attributed to the droplet generation methods.
机译:结果显示了注入热气体环境中的单滴和双滴流的燃烧特性。液滴由甲醇/十二烷醇混合物或甲醇组成。平面火焰燃烧器产生的热气体被引导向下通过电加热的流量管。最初直径约193μm的液滴通过平焰燃烧器的中心并沿管子注入,在此处点燃。对于甲醇/十二烷醇小滴观察到分段燃烧,但是对于甲醇小滴没有观察到燃烧。燃烧速度随着液滴流的数量从一增加到两个而降低,并且燃烧速度随着十二烷醇的初始质量分数的增加而增加。实验表明,液滴流相互作用会影响烟so和液滴破裂。数据还表明,这些液滴中的液体物质混合速率比以前的重力试验中燃烧的甲醇/十二烷醇液滴中的大得多,这些差异归因于液滴的产生方法。

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