首页> 外文会议>ASME Turbine Technical Conference and Exposition >EXPERIMENTAL INVESTIGATION ON THE EFFECT OF BOUNDARY LAYER FLUID INJECTION ON THE FLASHBACK PROPENSITY OF PREMIXED HYDROGEN-AIR FLAMES
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EXPERIMENTAL INVESTIGATION ON THE EFFECT OF BOUNDARY LAYER FLUID INJECTION ON THE FLASHBACK PROPENSITY OF PREMIXED HYDROGEN-AIR FLAMES

机译:边界层流体喷射对预混氢气火焰倒装倾斜效果的实验研究

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Premixed combustion systems show potential to meet future regulations on nitrogen oxide emissions. However, premixed systems always involve the risk of flame flashback into the premixing section. From a gas turbine manufacturer's point of view it is desirable to broaden the safe operating range, in particular with respect to flame flashback. It has been reported in the literature that flashback along the wall boundary layer represents the most critical failure mechanism for many burner configurations using hydrogen-rich fuels. This paper focuses on the effect of fluid injection into the wall boundary layer on the flashback propensity of a hydrogen-air jet burner. For this purpose, an experiment with a tube burner was designed, where the flame is anchored in the free atmosphere at the burner exit. Pure air was injected through an annular gap at three streamwise locations upstream of the stable flame position and at two different angles - perpendicular and at 45° to the main flow direction, respectively. The turbulent flashback limits for fully premixed hydrogen-air mixtures at atmospheric conditions were measured for a variety of equivalence ratios and different amounts of air injection. It turned out that there is a significant increase in flashback stability with injection devices close to the burner exit. The main reason for this behavior is the dilution of the mixture in the near-wall region and the resulting reduction of the flame speed. The positive effect diminishes quickly with increasing distance between flame and injection location due to considerable mixing of injected flow and main flow. This has been verified by RANS simulations. The simulations also showed that the momentum generated by the injection into the boundary layer has negligible influence on the flashback limits. It was also found that the fluid injection is not capable of stopping the upstream flame propagation once the flame has entered the tube. A probable explanation for this effect is the change from open flame holding at the burner exit to the confined flame situation inside the tube during flash-back. The latter is known to substantially increase the flashback propensity, which cannot be counteracted by air injection.
机译:预混合的燃烧系统表明可能会满足未来对氮氧化物排放的规定。但是,预混系统总是涉及火焰闪回的风险,进入预混合部分。从燃气轮机制造商的观点来看,希望拓宽安全操作范围,特别是关于火焰闪回。据报道,在文献中,沿着墙边界层闪回代表许多使用富含氢燃料的燃烧器配置的最关键的故障机制。本文侧重于流体注入到壁边界层上的氢气喷射燃烧器的倒回倾斜的影响。为此目的,设计了具有管燃烧器的实验,其中火焰在燃烧器出口处锚定在自由气氛中。通过在稳定的火焰位置上游的三个流动位置和两个不同的角度和45°至主流方向上的三个流动位置处通过环形间隙注入纯空气。测量大气条件下全预混氢气混合物的湍流倒回限值对于各种等效比率和不同量的空气喷射。事实证明,通过靠近燃烧器出口的注射装置,闪回稳定性显着增加。这种行为的主要原因是稀释近壁区域中的混合物的稀释度和导致的火焰速度降低。由于对喷射流动和主流相当大的混合,对火焰和注射位置之间的距离越来越多,效应迅速减小。这已由Rans模拟验证。模拟还表明,注射到边界层产生的势头对倒回限制的影响可忽略不计。还发现,一旦火焰进入管,流体注入不能停止上游火焰传播。对于这种效果的可能解释是从燃烧器燃烧器处的燃烧器出口处的开放火焰保持的变化。已知后者基本上增加了倒装倾向,这不能被空气喷射抵消。

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