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STABILIZATION PROCESS OF A LIFTED FLAME TUNED BY ACOUSTIC EXCITATION

机译:声激发调谐的火焰稳定过程

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摘要

Acoustically tuned lift-off flame with good repetition of the global flame stabilization process is used for detailed measurements and analysis using the line Raman spectroscopy and laser-induced fluorescence techniques, which are usually single shot with low repetition, to delineate the stabilization process and to verify the various theories and findings concerning the lift-off flame stabilization mechanism. The laser diagnostic results show that the flame base is found to locate in lean mixtures for all the phase angles, and water vapor of combustion products are found upstream of the flame base. These results support Broadwell, Dahm, and Mungal's (1984) large-scale re-entrainment model. The current Raman results of mixture fraction and scalar dissipation rate on lifted flames can further substantiate Everest, Feikema, and Driscoll's (1996) cold flow results and Ashurst and Williams' (1990) simulation, and extend Everest, Feikema, and Driscoll's stabilization model. The stabilization process of the flame propagation and recession of a lifted flame in an oscillation cycle is described by the evolution of the upstream large-scale vortex and the induced strain and dissipation rate on the flammable layer and the flame base.
机译:通过线性重复拉曼光谱法和激光诱导荧光技术(通常是低重复性的单次发射)来描述稳定过程,并通过对整个火焰稳定过程进行良好重复的声学调谐升空火焰进行详细的测量和分析。验证有关起爆火焰稳定机制的各种理论和发现。激光诊断结果表明,在所有相角下,火焰基体都位于稀薄混合物中,并且在火焰基体的上游发现燃烧产物的水蒸气。这些结果支持了Broadwell,Dahm和Mungal(1984)的大规模重新引诱模型。目前在举升火焰上的混合分数和标量耗散率的拉曼结果可以进一步证实Everest,Feikema和Driscoll(1996)的冷流结果以及Ashurst和Williams(1990)的模拟,并扩展Everest,Feikema和Driscoll的稳定模型。通过上游大尺度旋涡的演变以及在易燃层和火焰基体上引起的应变和耗散率来描述火焰在振荡循环中传播和回缩的稳定过程。

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