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NASA NTRS · 19970006622

Multigrid Method for Modeling Multi-Dimensional Combustion with Detailed Chemistry

Abstract

A highly accurate and efficient numerical method is developed for modeling 3-D reacting flows with detailed chemistry. A contravariant velocity-based governing system is developed for general curvilinear coordinates to maintain simplicity of the continuity equation and compactness of the discretization stencil. A fully-implicit backward Euler technique and a third-order monotone upwind-biased scheme on a staggered grid are used for the respective temporal and spatial terms. An efficient semi-coarsening multigrid method based on line-distributive relaxation is used as the flow solver. The species equations are solved in a fully coupled way and the chemical reaction source terms are treated implicitly. Example results are shown for a 3-D gas turbine combustor with strong swirling inflows.

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Zheng, Xiaoqing, Liu, Chaoqun, Liao, Changming, Liu, Zhining, McCormick, Steve. 1996-09-01. Multigrid Method for Modeling Multi-Dimensional Combustion with Detailed Chemistry. https://ntrs.nasa.gov/citations/19970006622

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