论文标题

基于层流的燃油质量流量过渡到扰动的腐烂状态扩散火焰的发光火焰高度相关

Luminous Flame Height Correlation Based on Fuel Mass Flow for a Laminar to Transition-to-Turbulent Regime Diffusion Flame

论文作者

De la Cruz-Ávila, M., De León-Ruiz, J. E., Carvajal-Mariscal, I., Polupan, G., Sigalotti, L. Di G.

论文摘要

本文介绍了层流与过渡到扰动的腐烂性扩散火焰的火焰高度相关性。通过数值和实验研究获得火焰高度测量,其中使用三个高清摄像头同时进行额叶,侧面和45°角度的图像。使用图像处理算法对图像进行分析,以通过间接测量确定火焰高度。为了定位整体化学镜,使用不稳定的雷诺平均纳维尔 - 斯托克斯技术进行了数值模拟。还实施了涡流模型以计算化学反应速率。实验表明,该提出的相关性具有16.9%的层状状态的发光火焰高度的调整变化,这表明没有使用间歇性浮力的火焰高度相关性,它在全球范围内最好地代表了该制度中的火焰高度。对于层流和过渡到扰动制度,调整变化为5.54%,而最受欢迎的火焰高度相关性则提供了可接受的良好拟合。数值结果表明,与实验火焰图像相比,化学闪光长度的提议范围位于发光和闪烁的火焰区之间。这些结果与文献中报道的化学长度区一致。因此,相关性可用于层流和过渡到扰动的燃烧方案。

This paper presents a flame-height correlation for laminar to transition-to-turbulent regime diffusion flames. Flame-height measurements are obtained by means of numerical and experimental studies in which three high definition cameras were employed to take frontal, lateral and 45° angled images simultaneously. The images were analysed using an image-processing algorithm to determine the flame-height through indirect measurement. To locate an overall chemical-flame-length, numerical simulations were conducted with the unsteady Reynolds-Averaged Navier-Stokes technique. The eddy-dissipation model was also implemented to calculate chemical reaction rate. The experiments show that this proposed correlation has an adjustment variation of luminous flame-height for the laminar regime of 16.9%, which indicates that, without the use of the intermittent buoyant flame-height correlation, it globally best represents the flame-height in this regime. For the laminar and transition-to-turbulence regime the adjustment variations are 5.54% compared to the most accepted flame-height correlations, thus providing an acceptably good fitting. The numerical results show that the proposed range for the chemical-flame-length is located between the luminous and flickering flame zone compared to the experimental flame images. These results agree with the chemical length zone reported in the literature. Therefore, the correlation can be used for laminar and transition-to-turbulent combustion regimes.

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