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Ignition Dynamics of a Laminar Diffusion Flame in the Field of a Vortex Embedded in a Shear Flow

 

作者: MICH´ELEG. MACARAEG,   T. L. JACKSON,   M. Y. HUSSAINI,  

 

期刊: Combustion Science and Technology  (Taylor Available online 1994)
卷期: Volume 102, issue 1-6  

页码: 231-253

 

ISSN:0010-2202

 

年代: 1994

 

DOI:10.1080/00102209408935478

 

出版商: Taylor & Francis Group

 

关键词: Ignition;shear;compressibility

 

数据来源: Taylor

 

摘要:

The role of streamwise-spanwise vorticity interactions that occur in turbulent shear flows on flame/vortex interactions is examined by means of asymptotic analysis and numerical simulation in the limit of small Mach number. An idealized model is employed to describe the interaction process. The model consists of a one-step, irreversible Arrhenius reaction between initially unmixed species occupying adjacent half-planes which are then allowed to mix and react in the presence of a streamwise vortex embedded in a shear flow. It is found that the interaction of the streamwise vortex with shear gives rise to small-scale velocity oscillations which increase in magnitude with shear strength. These oscillations give rise to regions of strong temperature gradients via viscous heating, which can lead to multiple ignition points and substantially decrease ignition times. The evolution in time of the temperature and mass-fraction fields is followed, and emphasis is placed on the ignition time and structure as a function of vortex and shear strength.

 

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