首页> 外文期刊>Combustion Science and Technology >A CORRELATION FOR AN EFFECTIVE FLOW VELOCITY FOR CAPTURING THE BOUNDARY LAYER EFFECT IN OPPOSED-FLOW FLAME SPREAD OVER THIN FUELS
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A CORRELATION FOR AN EFFECTIVE FLOW VELOCITY FOR CAPTURING THE BOUNDARY LAYER EFFECT IN OPPOSED-FLOW FLAME SPREAD OVER THIN FUELS

机译:捕获薄壁对流火焰的有效层流速度的相关性以捕获边界层效应

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摘要

In opposed-flow flame spread over solid fuels, an indefinite increase in flow velocity eventually leads to flame extinguishment. While the chemical time is independent of the flow velocity, the residence time of the oxidizer at the flame leading edge is inversely proportional to the flow velocity and, therefore, a completion between the two leads to a situation where finite-rate kinetics dominate the flame spread behavior, leading to flame extinguishment. Their ratio, the non-dimensional Damkohler number, is known to capture this finite-rate effect and has been used to correlate the non-dimensional spread rate. Although these correlations explain the behavior observed in the experiments, there is considerable spread in the data and several variations of the definitions of Damkohler number exist in literature. With all the progress made in this area, it is still not possible to predict the blow-off extinction velocity for a given fuel at any given oxidizer condition. In this work, computational evidence to establish the importance of the developing boundary layer in the kinetic and microgravity regimes is presented. Based on scale modeling, a formula is proposed for the effective velocity experienced by aflame in terms of the flow Reynolds number and Prandtl number and the expression using computational spread rates is verified.
机译:在流过固体燃料的逆流火焰中,流速的无限增加最终会导致火焰熄灭。虽然化学时间与流速无关,但氧化剂在火焰前缘的停留时间与流速成反比,因此,两者之间的完成会导致有限速率动力学主导火焰的情况蔓延行为,导致灭火。已知它们的比率(无量纲的Damkohler数)可以捕获这种有限速率效应,并已用于关联无量纲的扩散速率。尽管这些相关性解释了在实验中观察到的行为,但是数据中有相当大的分布,并且文献中存在Damkohler数定义的几种变化。尽管在该领域取得了所有进展,但仍无法预测在任何给定的氧化剂条件下给定燃料的放气熄灭速度。在这项工作中,提出了建立动力学边界层和微重力体制中边界层发展重要性的计算证据。基于比例模型,提出了基于流雷诺数和普朗特数的火焰有效速度公式,并验证了使用计算扩散率的表达式。

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