Appadu, A. RaoDjoko, J.K. (Jules Kamdem)Gidey, H.H.Lubuma, Jean M.-S.2017-05-122017-04Appadu, A.R., Djoko, J.K., Gidey, H.H. & Lubuma, J.M.S. Analysis of multilevel finite volume approximation of 2D convective Cahn–Hilliard equation. Japan Journal of Industrial and Applied Mathematics (2017) 34: 253-304. doi:10.1007/s13160-017-0239-y.0916-7005 (print)1868-937X (online)10.1007/s13160-017-0239-yhttp://hdl.handle.net/2263/60336In this work, four finite volume methods have been constructed to solve the 2D convective Cahn–Hilliard equation with specified initial condition and periodic boundary conditions. We prove existence and uniqueness of solutions. The stability and convergence analysis of the numerical methods have been discussed thoroughly. The nonlinear terms are approximated by a linear expression based on Mickens’ rule (Mickens, Nonstandard finite difference models of differential equations. World Scientific, Singapore, 1994) of nonlocal approximations of nonlinear terms. Numerical experiments for a test problem have been carried out to test all methods.en© The JJIAM Publishing Committee and Springer Japan 2017. The original publication is available at : http://link.springer.com/journal/13160.2D convective Cahn–Hilliard equationExistence of solutionUniquenessStabilityConvergenceFinite volumeMultilevelAnalysis of multilevel finite volume approximation of 2D convective Cahn–Hilliard equationPostprint Article