homepage  Research  Publications  2005
 
Jiang Y, Qiu R, Zhou W, Fan WC (2005b) Chinese Science Bulletin 50(12), 1261-1269.
Date: 2011-08-17   Author: SKLFS  ,   Source: WOS  ,
 

Jiang Y, Qiu R, Zhou W, Fan WC (2005b) Conditional moment closure modeling of a lifted turbulent flame. Chinese Science Bulletin 50(12), 1261-1269. [In English]

Web link:http://dx.doi.org/10.1360/982004-157

Keywords:

conditional moment closure (CMC), lifted turbulent flame, Navier-Stokes, characteristic boundary conditions (NSCBC), Pade scheme, jet diffusion flames, no formation, bluff-body, combustion, scalar, flows, stabilization, dissipation, temperature, submodels

Abstract: Results obtained using conditional moment closure (CMC) approach to modeling a lifted turbulent hydrogen flame are presented. Predictions are based on k-epsilon-g turbulent closure, a 23-step chemical mechanism and a radially averaged CMC model. The objectives are to find out how radially averaged CMC can represent a lifted flame and which mechanism of flame stabilization can be described by this modeling method. As a first stage of the study of multi-dimensional CMC for large eddy simulation (LES) of the lifted turbulent flames, the effect of turbulence upon combustion is included, the high-order compact finite-difference scheme (Pade) is used and previously developed characteristic-wave-based boundary conditions for multicomponent perfect gas mixtures are here extended to their conditional forms but the heat release due to combustion is not part of the turbulent calculations. Attention is focused to the lift-off region of the flame which is commonly considered as a cold flow. Comparison with published experimental data and the computational results shows that the lift-off height can be accurately determined, and Favre averaged radial profiles of temperature and species mole fractions are also reasonably well predicted. Some of the current flame stabilization mechanisms are discussed.

 
Print    Close
 
 
   
  
 
Relevant link
Contact us
State Key Laboratory of Fire Science, University of Science and Technology of China
Jinzhai Road 96, Hefei, Anhui, P. R. China
P. O.: 230026
   
Tel:(+86)551 63601651
Fax:(+86)551 63601669
E-mail:sklfs@ustc.edu.cn
 
 
Copyright © 1990-2011 State Key Laboratory of Fire Science, University of Science and Technology of China
Tel:(+86)551 3601651 | Fax:(+86)551 3601669 | E-mail:sklfs@ustc.edu.cn | ICP: D20380176