Title of article :
Simulations of nonlinear advection-diusion models through various nite element techniques
Author/Authors :
Tunc, H. Department of Mathematics - Faculty of Arts and Science - Yildiz Technical University - Istanbul 34220, Turkey , Sari, M. Department of Mathematics - Faculty of Arts and Science - Yildiz Technical University - Istanbul 34220, Turkey
Abstract :
In this study, the Burgers equation is analyzed both numerically and
mathematically by considering various nite element based techniques including Galerkin,
Taylor-Galerkin and collocation methods for spatial variation of the equation. The obtained
time dependent ordinary dierential equation system is approximately solved by -family
of time approximation. All these methods are theoretically explained using cubic B-spline
basis and weight functions for a strong form of the model equation. Von Neumann matrix
stability analysis is performed for each of these methods and stability criteria are determined
in terms of the problem parameters. Some challenging examples of the Burgers equation
are numerically solved and compared with the literature and exact solutions. Also, the
proposed techniques have been compared with each other in terms of their advantages and
disadvantages depending on the problem types. The more advantageous method of the
three, in comparison to the other two, has been found for the special cases of the present
problem in detail.
Keywords :
Finite element method , family of approximation , Advection-diusion model , Burgers equation , Taylor-Galerkin method , Collocation method
Journal title :
Scientia Iranica(Transactions B:Mechanical Engineering)