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Interaction of a Gaussian acoustic wave with a turbulent premixed flame

机译:高斯声波与湍流预混火焰的相互作用

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We investigate in this paper the interaction of a H_2/O_2/N_2 turbulent premixed flame with a Gaussian acoustic wave (negative pulse) in a 2-D compressible flow using Direct Numerical Simulation. Realistic chemical kinetics and transport properties are taken into account (detailed reaction scheme, multicomponent diffusion velocities, thermal diffusion, and barodiffusion). A new, direct procedure is introduced to obtain a local Rayleigh's criterion. This procedure is applicable for laminar as well as turbulent, premixed or non-premixed flames, and requires no linearization. The situations in which amplification (resp. attenuation) occurs are listed. Calculations of a turbulent flame are then carried out with and without an acoustic wave and results are recorded at the same time. By a simple difference it is possible to obtain the influence of acoustic wave/turbulent flame interaction. It is shown that the wave is wrinkled after its passage through the flame while the flame front is practically not affected. Rayleigh's criterion shows that wave amplification occurs only inside well-located, small zones.
机译:我们使用直接数值模拟研究了二维可压缩流中H_2 / O_2 / N_2湍流预混火焰与高斯声波(负脉冲)的相互作用。考虑了实际的化学动力学和传输特性(详细的反应方案,多组分扩散速度,热扩散和重扩散)。引入了新的直接过程来获取局部瑞利准则。此过程适用于层流以及湍流​​,预混或非预混火焰,并且不需要线性化。列出了发生放大(重复衰减)的情况。然后在有或没有声波的情况下进行湍流火焰的计算,并同时记录结果。通过一个简单的差异,就有可能获得声波/湍流火焰相互作用的影响。结果表明,波在通过火焰后会起皱,而实际上不会影响火焰的前沿。瑞利准则表明,波放大仅发生在位置适当的小区域内。

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