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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Flashback Propensity of Turbulent Hydrogen-Air Jet Flames at Gas Turbine Premixer Conditions
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Flashback Propensity of Turbulent Hydrogen-Air Jet Flames at Gas Turbine Premixer Conditions

机译:燃气轮机预混器条件下湍流氢空气射流火焰的回火倾向

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The flashback propensity of a premixed jet flame has been studied experimentally. Boundary layer flashback has been investigated under turbulent flow conditions at elevated pressures and temperatures (i.e., 3-8 atm and 300-500 K). The data presented in this study are for hydrogen fuel at various Reynolds numbers, which are representative of practical gas turbine premixer conditions, and are significantly higher than results currently available in the literature. Three burner heads constructed of different materials (stainless steel, copper, and zirconia ceramic) were used to evaluate the effect of tip temperature, a parameter found previously to be an important factor in triggering flashback. This study characterizes flashback systematically by developing a comprehensive nondi-mensional model which takes into account all effective parameters in boundary layer flashback propensity. The model was optimized for new data and captures the behavior of the new results well. Further, comparison of the model with the single existing study of high-pressure jet flame flashback also indicates good agreement. For a given equivalence ratio, the critical velocity gradient and bulk velocity at flashback vary exponentially with pressure. The pressure exponent of the critical velocity gradient was found to be close to 1.1 at fuel-lean conditions and becomes higher as equivalence ratio is increased. The developed dimensionless correlation is Da = Const·Le~(1.68) · Pe_f~(1.91) · (T_u/T_0)~(2.57) ·(T_(tip)/T_0)~(-0.49) · (P_u/P_0)~(-2.1) , which can be used to predict the boundary layer flashback propensity for given parameters.
机译:实验研究了预混喷射火焰的回火倾向。在湍流条件下,升高的压力和温度(即3-8 atm和300-500 K)下,已经研究了边界层回火。这项研究中提供的数据是各种雷诺数下的氢燃料,它们代表了实际的燃气轮机预混合器条件,并且明显高于文献中当前可获得的结果。使用三个由不同材料(不锈钢,铜和氧化锆陶瓷)制成的燃烧器头来评估喷嘴温度的影响,该温度以前被认为是触发回火的重要因素。这项研究通过开发一个综合的三维模型来系统地表征闪回,该模型考虑了边界层闪回倾向中的所有有效参数。该模型针对新数据进行了优化,可以很好地捕获新结果的行为。此外,将模型与现有的高压喷射火焰回火研究进行比较也表明了良好的一致性。对于给定的当量比,闪回时的临界速度梯度和整体速度随压力呈指数变化。发现临界速度梯度的压力指数在稀油条件下接近1.1,并且当当量比增加时变得更高。发展的无量纲相关性是Da = Const·Le〜(1.68)·Pe_f〜(1.91)·(T_u / T_0)〜(2.57)·(T_(tip)/ T_0)〜(-0.49)·(P_u / P_0) 〜(-2.1),可用于预测给定参数的边界层回火倾向。

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