Repository Article

·2019 OPEN ACCESS

Higher Order Splitting Approaches in Analysis of the Burgers Equation

Sari M. YTU , Tunc H. YTU , Seydaoglu M.

DSpace@MŞU

Abstract

This article proposes some higher order splitting-up techniques based on the cubic B-spline Galerkin finite element method in analyzing the Burgers equation model. The strong form of both conservation and diffusion parts of the time-split Burgers equation have been considered in building the Galerkin approach. To integrate the corresponding ODE system, the Crank-Nicolson time discretization scheme is used. The proposed schemes are shown to be unconditionally stable. Three challenging examples have been considered that have changing values of the kinematic viscosity constant of the medium. Moreover, cases of shock waves of severe gradient are solved and compared with the exact solution and the literature. The qualitative and quantitative results demonstrate that our numerical approach has far higher accuracy than rival methods. © 2019 University of Kuwait. All Rights Reserved.

Keywords

Burgers' equation Discretization Ode Conservation law Galerkin method Finite element method Scheme (mathematics) Order of accuracy Viscosity Discontinuous Galerkin method Mathematics Mathematical analysis Applied mathematics

Subject Areas

Nonlocal and gradient elasticity in micro/nano structures ·Materials Chemistry ·Physical Sciences
Nonlinear Waves and Solitons ·Statistical and Nonlinear Physics ·Physical Sciences
Numerical methods in engineering ·Mechanics of Materials ·Physical Sciences

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