Flame Spread over Binary Mixed Liquid Fuels—Super-Flash/Super-Flash Mixed Condition

K. Sasaki, A. Ito, H. Torikai
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引用次数: 3

Abstract

In this study, we investigate the flame spread characteristics of binary mixed liquid fuels that are both in super-flash condition. We propose a method for estimating flashpoint and flame spread rate for binary mixed liquid fuels from binary vapor concentration distribution and compare these estimated values with experimental results. In addition, we measure the flame height and center of the flame leading edge for binary mixed liquid fuels. The results show that, when the flashpoint of each single fuel is known, the flashpoint of the binary mixed liquid fuel can be calculated. Moreover, the fuel that most influence combustion changes near the intersection of vapor concentration distribution in accordance with Raoult’s law. Photographs of the flame indicate discontinuity. We can calculate flame spread rate by using the ratio of each diffusion coefficient to judge equivalently. Finally, it is found that the flame height and center of flame leading edge are proportional to total vapor concentration of the binary mixed liquid fuels.
火焰在二元混合液体燃料上蔓延-超级闪光/超级闪光混合条件
本文研究了二元混合液体燃料在超闪工况下的火焰蔓延特性。本文提出了一种由二元蒸汽浓度分布估计二元混合液体燃料闪点和火焰蔓延速率的方法,并与实验结果进行了比较。此外,我们还测量了二元混合液体燃料的火焰高度和火焰前缘中心。结果表明,当每种单一燃料的闪点已知时,可以计算二元混合液体燃料的闪点。根据拉乌尔定律,对燃烧影响最大的燃料在蒸气浓度分布的交点附近发生变化。火焰的照片显示出不连续性。我们可以用各扩散系数的比值来等效判断火焰的蔓延速度。最后,发现火焰高度和火焰前缘中心与二元混合液体燃料的总蒸气浓度成正比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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