Simulation of transient turbulent methane jet ignition and combustion under engine-relevant conditions using conditional source-term estimation with detailed chemistry

被引:42
作者
Huang, J. [1 ]
Bushe, W. K. [1 ]
机构
[1] Univ British Columbia, Dept Mech Engn, Vancouver, BC V6T 1Z4, Canada
关键词
chemical kinetic mechanism reduction; autoignition; transient turbulent jets;
D O I
10.1080/13647830701324289
中图分类号
O414.1 [热力学];
学科分类号
摘要
The ignition and combustion processes of transient turbulent methane jets under high-pressure and moderate temperature conditions were simulated using a computationally efficient combustion model. Closure for the mean chemical source-terms was obtained with Conditional Source-term Estimation (CSE) using first conditional moment closure in conjunction with a detailed chemical kinetic mechanism, which was reduced to a Trajectory-Generated Low-Dimensional Manifold (TGLDM). The accuracy of the manifold was first validated against the direct integral method by comparing the predicted reactive scalar profiles in three methane-air reaction systems: a laminar premixed flame, a laminar flamelet and a perfectly stirred reactor. Detailed CFD simulations incorporating the CSE-TGLDM model were able to provide reasonably good predictions of the experimental ignition delay and initial ignition kernel locations of the methane jets reported in the literature with relatively low computational cost. Nitrogen oxides formed in the methane jet flame were found to be underpredicted by the model by as much as a factor of 2. The discrepancy may be attributable to the inability of the simulation to account for the effects of the rarefaction wave in the shock-tube experiments.
引用
收藏
页码:977 / 1008
页数:32
相关论文
共 46 条
[1]
[Anonymous], 1993, 9311 FDA
[2]
FLUX-CORRECTED TRANSPORT .1. SHASTA, A FLUID TRANSPORT ALGORITHM THAT WORKS [J].
BORIS, JP ;
BOOK, DL .
JOURNAL OF COMPUTATIONAL PHYSICS, 1973, 11 (01) :38-69
[3]
Bowman C. T., 1995, GRI MECH 2 11
[4]
VODE - A VARIABLE-COEFFICIENT ODE SOLVER [J].
BROWN, PN ;
BYRNE, GD ;
HINDMARSH, AC .
SIAM JOURNAL ON SCIENTIFIC AND STATISTICAL COMPUTING, 1989, 10 (05) :1038-1051
[5]
Laminar flamelet decomposition for conditional source-term estimation [J].
Bushe, WK ;
Steiner, H .
PHYSICS OF FLUIDS, 2003, 15 (06) :1564-1575
[6]
Conditional moment closure for large eddy simulation of nonpremixed turbulent reacting flows [J].
Bushe, WK ;
Steiner, H .
PHYSICS OF FLUIDS, 1999, 11 (07) :1896-1906
[7]
Measurements of scalar dissipation in turbulent hydrogen diffusion flames and some implications on combustion modeling [J].
Chen, YC ;
Mansour, MS .
COMBUSTION SCIENCE AND TECHNOLOGY, 1997, 126 (1-6) :291-313
[8]
FRASER RA, 1991, T SAE, V100, P33
[9]
GAYDON AG, 1963, SHOCK TUBE HIGH TEMP, P4
[10]
Laminar premixed hydrogen/air counterflow flame simulations using flame prolongation of ILDM with differential diffusion [J].
Gicquel, O ;
Darabiha, N ;
Thévenin, D .
PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2000, 28 (02) :1901-1908