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STABILITY CHARACTERISTICS OF TURBULENT HYDROGEN DILUTE DIFFUSION FLAMES

机译:湍流氢稀释扩散火焰的稳定性

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Diffusion flame combustion of high-hydrogen fuels in land-based gas turbine cotnbustors may include dilution of the fuel with inert gases and high velocity fuel injection to reduce NO_x emissions. Stability regimes of such combustors are investigated in this study by examining turbulent dilute diffusion flames of hydrogenitrogen mixtures, issuing into a quiescent environment from a thin-lipped tube. This study has revealed two distinctly different types of lifted flames: lifted, laminar-base flames, for which liftoff heights vary from 1 to 3 jet diameters above the jet exit and are controlled by differential diffusion, and lifted, turbulent-base flames that stabilize much further downstream and are dominated by turbulent processes. In addition, stability limits governing the detachment or reattachment of the flame to the lip of the burner are examined, as well as the limits governing transitions between the two types of lifted flames and transition from these lifted flames to blowout.
机译:陆基燃气轮机燃烧室中高氢燃料的扩散火焰燃烧可包括用惰性气体稀释燃料和高速燃料喷射以减少NO_x排放。在这项研究中,通过检查氢/氮混合物的湍流稀薄扩散火焰,并从细口管进入静态环境,研究了这种燃烧器的稳定性。这项研究发现了两种截然不同的举升火焰类型:举升的层流基火焰,其升空高度在射流出口上方的射流直径范围为1至3,并且受微分扩散控制;举升的湍流基火焰稳定下游更远,并由湍流过程主导。此外,还检查了控制火焰脱离或重新附着到燃烧器唇缘的稳定性极限,以及控制两种升火之间的过渡以及从这些升火到爆燃的过渡的极限。

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