Simulation of Combustion Field with Lattice Boltzmann Method

被引:1
作者
Kazuhiro Yamamoto
Xiaoyi He
Gary D. Doolen
机构
[1] Toyohashi University of Technology,Mechanical Engineering
[2] Los Alamos National Laboratory,Theoretical Division
来源
Journal of Statistical Physics | 2002年 / 107卷
关键词
lattice Boltzmann method; combustion; premixed flame; chemical reaction;
D O I
暂无
中图分类号
学科分类号
摘要
Turbulent combustion is ubiquitously used in practical combustion devices. However, even chemically non-reacting turbulent flows are complex phenomena, and chemical reactions make the problem even more complicated. Due to the limitation of the computational costs, conventional numerical methods are impractical in carrying out direct 3D numerical simulations at high Reynolds numbers with detailed chemistry. Recently, the lattice Boltzmann method has emerged as an efficient alternative for numerical simulation of complex flows. Compared with conventional methods, the lattice Boltzmann scheme is simple and easy for parallel computing. In this study, we present a lattice Boltzmann model for simulation of combustion, which includes reaction, diffusion, and convection. We assume the chemical reaction does not affect the flow field. Flow, temperature, and concentration fields are decoupled and solved separately. As a preliminary simulation, we study the so-called “counter-flow” laminar flame. The particular flow geometry has two opposed uniform combustible jets which form a stagnation flow. The results are compared with those obtained from solving Navier–Stokes equations.
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页码:367 / 383
页数:16
相关论文
共 34 条
  • [1] Peters N.(1986)undefined Proceeding of the Combustion Institute 21 1231-1250
  • [2] He X.(1997)undefined Phys. Rev. E 5–1 434-440
  • [3] Doolen G. D.(1994)undefined Phys. Fluids 6 1285-1298
  • [4] Martinez D. O.(1996)undefined Phys. Fluids 8 2527-2536
  • [5] Matthaeus W. H.(1997)undefined J. Sci. Comput. 1–4 395-408
  • [6] Chen S.(2000)undefined J. Comput. Phys. 158 139-160
  • [7] Montgomery D. C.(1982)undefined Proceeding of the Combustion Institute 19 1533-1540
  • [8] Chen S.(1982)undefined Proceeding of the Combustion Institute 19 1541-1548
  • [9] Martinez D. O.(1985)undefined Lecture Notes in Physics 241 1-28
  • [10] Mei R.(1989)undefined Combust. Flame 75 265-280