MEAN EVOLUTION OF WRINKLE WAVELENGTHS IN A MODEL OF WEAKLY-TURBULENT PREMIXED FLAME

被引:16
作者
CAMBRAY, P [1 ]
JOULAIN, K [1 ]
JOULIN, G [1 ]
机构
[1] ENSMA,ENERGET & DETON LAB,CNRS,URA 193,F-86960 FUTUROSCOPE,FRANCE
关键词
PREMIXED FLAMES; INSTABILITY; WEAK TURBULENCE; N-BODY PROBLEM;
D O I
10.1080/00102209408907698
中图分类号
O414.1 [热力学];
学科分类号
摘要
New informations on weakly-turbulent premixed flames in the cusped-flame regime are obtained upon studying a Michelson-Sivashinsky equation whose solution (the instantaneous flame shape) is excited by the influence of a weak, pseudo-random additive forcing that is meant to mimic incoming velocity fluctuations. Attention is focused on the time-dependent mean spacing l(c)(t) between crests, in cases where the front is dat before forcing is switched on. Despite the complexity of each individual run, a surprisingly simple history Lambda(c)(t) always emerges upon averaging l(c)(t) over many realizations of the forcing function, especially in the limit of weak forcings: a noise-triggered linear stage is followed by a stage of crest-coalescence during which d Lambda(c)/dt is a constant and the direct role of forcing is minor; then, rather abruptly, an equilibrium stage is reached where Lambda(c)(t) acquires a time-independent value because the crest implants induced by the noise statistically equilibrate the coalescences. Improved or new scaling-laws, including dynamical ones, are suggested numerically and theoretically for each of the aforementioned stages.
引用
收藏
页码:265 / 282
页数:18
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