首页> 外文会议>International Symposium on Combustion >Experimental analysis of local flame extinction in a turbulent jet diffusion flame by high repetition 2-D laser techniques and multi-scalar measurements
【24h】

Experimental analysis of local flame extinction in a turbulent jet diffusion flame by high repetition 2-D laser techniques and multi-scalar measurements

机译:高重复2-D激光技术和多标量测量湍流射流扩散火焰中局部火焰灭火的实验分析

获取原文

摘要

In this paper, we present a detailed experimental study of turbulence chemistry interactions in the "DLR_B" turbulent jet diffusion flame. The flame operates on mixtures of CH_4, H_2, and N_2 in the fuel stream at Re = 22,800 and is a target flame within the TNF workshop. Extinction and re-ignition events can be tracked in real time and related to the underlying flow field phenomena and temperature fields. Time resolved measurements of OH radical concentration fields are performed in combination with temperature and velocity field measurements. For this purpose, we combined high repetition rate (33 kHz) PLIF imaging with stereoscopic PIV and double pulse Rayleigh imaging techniques. Comparisons are made with results from multi-scalar Raman/Rayleigh/LIF point measurements that reveal the thermochemical state of the flame. The large deviations from equilibrium observed on resulting OH/temperature joint pdfs could be related to strain rate and Damkohler number variations caused by turbulent flow structures leading to frequent extinctions. The 2D measurement series uniquely reveal the underlying mechanism that can lead to such events. Finally, comparisons are made to strained laminar flame calculations, which are generally found to be in good agreement with the measured data.
机译:在本文中,我们介绍了“DLR_B”湍流射流扩散火焰中的湍流化学相互作用的详细实验研究。火焰在RE = 22,800处的燃料流中的CH_4,H_2和N_2的混合物上操作,并且是TNF车间内的目标火焰。灭绝和重新点火事件可以实时跟踪,与底层流场现象和温度场相关。 OH激进浓度场的时间分辨测量与温度和速度场测量结合进行。为此目的,我们将高重复率(33 kHz)PLIF成像与立体PIV和双脉冲瑞利成像技术合并。使用多标量拉曼/瑞利/ LiF点测量结果进行比较,这些结果揭示了火焰的热化学状态。由此产生的OH /温度接头PDF观察到的大平衡的偏差可能与由导致频繁灭绝的湍流结构引起的应变速率和DAMKOHLER数变化有关。 2D测量系列唯一地揭示了可能导致此类事件的潜在机制。最后,对紧张的层流火焰计算进行了比较,这通常被发现与测量数据很好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号