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Experimental study on tribrachial flames in narrow channels with small fuel concentration gradients

机译:燃料浓度梯度较小的狭窄通道内三臂火焰的实验研究

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Edge flames have become a subject of interest as basic structures for lifted-flame stabilization and turbulent flame propagation. Recently, with the development of small diffusion flame devices as energy sources for various small mechanical systems, edge flames within narrow spaces have also been investigated. In this study, the structures and propagation characteristics of a tribrachial flame (or an edge flame) in a confined narrow channel, with very small fuel concentration gradients, were experimentally investigated. Tribrachial flames could be successfully stabilized in the narrow channels. The flame shapes and propagation velocities were compared by changing the four experimental parameters of the mean velocity, fuel concentration gradient, channel gap, and fuel dilution ratio. It was experimentally observed that the luminosity of the diffusion branch diminished when the channel gap decreased. It was also found that there is a critical condition in the channel gap for maximum propagation velocity. A flow redirection effect and a heat loss effect are thought to have played a key role in the variation of the PVTF in a narrow channel, and their competition with each other caused a peak value of the PVTF at the critical channel gap.
机译:边缘火焰已成为引起火焰稳定和湍流火焰蔓延的基本结构,成为人们关注的主题。近年来,随着小型扩散火焰装置作为各种小型机械系统的能源的发展,还研究了狭窄空间内的边缘火焰。在这项研究中,实验研究了在燃料浓度梯度非常小的密闭狭窄通道中的三臂火焰(或边缘火焰)的结构和传播特性。三臂火焰可以成功地稳定在狭窄的通道中。通过改变平均速度,燃料浓度梯度,通道间隙和燃料稀释率的四个实验参数,比较了火焰形状和传播速度。实验观察到,当沟道间隙减小时,扩散分支的发光度降低。还发现在通道间隙中存在对于最大传播速度的临界条件。认为在窄通道中PVTF的变化中,流动重定向效应和热损失效应起关键作用,并且它们的相互竞争在临界通道间隙处引起PVTF的峰值。

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