NASA NTRS · 19930038651
Multigrid methods for numerical simulation of laminar diffusion flames
Abstract
This paper documents the result of a computational study of multigrid methods for numerical simulation of 2D diffusion flames. The focus is on a simplified combustion model, which is assumed to be a single step, infinitely fast and irreversible chemical reaction with five species (C3H8, O2, N2, CO2 and H2O). A fully-implicit second-order hybrid scheme is developed on a staggered grid, which is stretched in the streamwise coordinate direction. A full approximation multigrid scheme (FAS) based on line distributive relaxation is developed as a fast solver for the algebraic equations arising at each time step. Convergence of the process for the simplified model problem is more than two-orders of magnitude faster than other iterative methods, and the computational results show good grid convergence, with second-order accuracy, as well as qualitatively agreement with the results of other researchers.
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Liu, C., Liu, Z., Mccormick, S.. 1993-01-01. Multigrid methods for numerical simulation of laminar diffusion flames. https://ntrs.nasa.gov/citations/19930038651
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