The numerical solution of non-stationary convection-dominated partial differential equations (PDEs), as for example encountered in the simulation of reverse flow reactors, can be a computationally quite demanding task because of the prevailing steep concentration and temperature gradients. The computational effort can be greatly reduced with higher-order discretisation schemes for the convection terms and with an automatic, local grid adaptation. In this paper, WENO schemes (e.g. Advanced Numerical Approximations of Nonlinear Hyperbolic Equations, Lecture Notes in Mathematics, vol. 1697, Springer, Berlin, 1998, pp. 325¿432) are used for the convection terms and a local grid adaptation technique is presented that uses the smoothness indicato...
Many authors have used higher-order spatial discretizations to reduce numerical diffusion, which can...
A new grid-adaption algorithm for problems in computational fluid dynamics is presented. The basic e...
Title: Numerical Solution of Convection-dominated Problems Author: Petr Lukáš Department: Department...
The numerical solution of non-stationary convection-dominated partial differential equations (PDEs),...
Abstract: In this paper, a higher order nonuniform grid strategy is developed for solving singularly...
A generalized formulation is applied to implement the quadratic upstream interpolation (QUICK) schem...
AbstractInviscid Boussinesq convection is a challenging problem both analytically and numerically. D...
An algorithm is presented to model two-dimensional, non-isothermal, low Mach number flows with a loc...
In this article, the development of high-order semi-implicit interpolation schemes for convection te...
A new adaptive weighted essentially non-oscillatory WENO-?? scheme in the context of finite differen...
High order WENO (weighted essentially non-oscillatory) schemes and discontinuous Galerkin methods ar...
In this article, the development of high-order semi-implicit interpolation schemes for convection te...
The objective of this paper is to develop and describe an adaptive multigrid scheme for the numerica...
A local adaptive discontinuous Galerkin method for convection-diffusion-reaction equations is introd...
An adaptive algorithm for the numerical simulation of time-dependent convection–diffusion–reaction e...
Many authors have used higher-order spatial discretizations to reduce numerical diffusion, which can...
A new grid-adaption algorithm for problems in computational fluid dynamics is presented. The basic e...
Title: Numerical Solution of Convection-dominated Problems Author: Petr Lukáš Department: Department...
The numerical solution of non-stationary convection-dominated partial differential equations (PDEs),...
Abstract: In this paper, a higher order nonuniform grid strategy is developed for solving singularly...
A generalized formulation is applied to implement the quadratic upstream interpolation (QUICK) schem...
AbstractInviscid Boussinesq convection is a challenging problem both analytically and numerically. D...
An algorithm is presented to model two-dimensional, non-isothermal, low Mach number flows with a loc...
In this article, the development of high-order semi-implicit interpolation schemes for convection te...
A new adaptive weighted essentially non-oscillatory WENO-?? scheme in the context of finite differen...
High order WENO (weighted essentially non-oscillatory) schemes and discontinuous Galerkin methods ar...
In this article, the development of high-order semi-implicit interpolation schemes for convection te...
The objective of this paper is to develop and describe an adaptive multigrid scheme for the numerica...
A local adaptive discontinuous Galerkin method for convection-diffusion-reaction equations is introd...
An adaptive algorithm for the numerical simulation of time-dependent convection–diffusion–reaction e...
Many authors have used higher-order spatial discretizations to reduce numerical diffusion, which can...
A new grid-adaption algorithm for problems in computational fluid dynamics is presented. The basic e...
Title: Numerical Solution of Convection-dominated Problems Author: Petr Lukáš Department: Department...