A coupled lagrangian-eulerian scheme for reacting flow modeling
ESAIM. Proceedings, Tome 7 (1999), pp. 304-313
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We describe a coupled Lagrangian-Eulerian numerical scheme for modeling reacting flow in two dimensions. The scheme uses the Lagrangian vortex method for solving the Navier-Stokes equations, and an Eulerian finite difference implementation on a multi-layered adaptive mesh for the scalar conservation equations. Coupling terms involving baroclinic and diffusional circulation source terms as well as expansion sources for dilatation resulting from heat release are implemented as necessary. A boundary element method is used for the potential flow solution. A fast multipole method is used for all velocity field evaluations. The numerical construction is presented along with representative buoyant reacting jet flow results.
Affiliations des auteurs :
H. N. Najm 1 ; R. B. Milne 2 ; K. D. Devine 3 ; S. N. Kempka 3
@article{EP_1999_7_a27,
author = {H. N. Najm and R. B. Milne and K. D. Devine and S. N. Kempka},
title = {A coupled lagrangian-eulerian scheme for reacting flow modeling},
journal = {ESAIM. Proceedings},
pages = {304--313},
year = {1999},
volume = {7},
doi = {10.1051/proc:1999028},
language = {en},
url = {http://geodesic.mathdoc.fr/articles/10.1051/proc:1999028/}
}
TY - JOUR AU - H. N. Najm AU - R. B. Milne AU - K. D. Devine AU - S. N. Kempka TI - A coupled lagrangian-eulerian scheme for reacting flow modeling JO - ESAIM. Proceedings PY - 1999 SP - 304 EP - 313 VL - 7 UR - http://geodesic.mathdoc.fr/articles/10.1051/proc:1999028/ DO - 10.1051/proc:1999028 LA - en ID - EP_1999_7_a27 ER -
%0 Journal Article %A H. N. Najm %A R. B. Milne %A K. D. Devine %A S. N. Kempka %T A coupled lagrangian-eulerian scheme for reacting flow modeling %J ESAIM. Proceedings %D 1999 %P 304-313 %V 7 %U http://geodesic.mathdoc.fr/articles/10.1051/proc:1999028/ %R 10.1051/proc:1999028 %G en %F EP_1999_7_a27
H. N. Najm; R. B. Milne; K. D. Devine; S. N. Kempka. A coupled lagrangian-eulerian scheme for reacting flow modeling. ESAIM. Proceedings, Tome 7 (1999), pp. 304-313. doi: 10.1051/proc:1999028
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