The goal of this paper is to investigate the ability of the flamelet-generated manifold (FGM) approach for the numerical simulation of multidimensional laminar non-premixed flames. FGM’s constructed from premixed and non-premixed one-dimensional flamelets have been applied to a laminar methane flame in a co-flow of air. The results are compared to the solution of the full transport equations. Inclusion of differential diffusion with constant Lewis numbers for each species is studied. When unity-Lewis numbers are considered, an FGM which consists of counterflow diffusion flamelets is able to predict temperature and species concentrations in good agreement with the detailed solution (maximum difference ˜ 2%). Manifolds constructed from premix...