AbstractThe Fortran 90 code IRKC is intended for the time integration of systems of partial differential equations (PDEs) of diffusion–reaction type for which the reaction Jacobian has real (negative) eigenvalues. It is based on a family of implicit–explicit Runge–Kutta–Chebyshev methods which are unconditionally stable for reaction terms and which impose a stability constraint associated with the diffusion terms that is quadratic in the number of stages. Special properties of the family make it possible for the code to select at each step the most efficient stable method as well as the most efficient step size. Moreover, they make it possible to apply the methods using just a few vectors of storage. A further step towards minimal storage r...
This article is devoted to the construction of a new class of semi-Lagrangian (SL) schemes with impl...
A partitioned implicit-explicit orthogonal Runge-Kutta method (PIROCK) is proposed for the time inte...
We consider implicit-explicit (IMEX) Runge--Kutta (R-K) schemes for hyperbolic systems with stiff re...
The Fortran 90 code IRKC is intended for the time integration of systems of partial differential equ...
textabstractThe Fortran 90 program IRKC is intended for the time integration of partial differential...
AbstractThe Fortran 90 code IRKC is intended for the time integration of systems of partial differen...
textabstractAn implicit-explicit (IMEX) extension of the explicit Runge-Kutta-Chebyshev (RKC) scheme...
AbstractThe FORTRAN program RKC is intended for the time integration of parabolic partial differenti...
The {sc fortran program {sc rkc is intended for the time integration of parabolic partial differenti...
An integration method is discussed which has been designed to treat parabolic and hyperbolic terms e...
The original explicit Runge-Kutta-Chebyshev (RKC) method is a stabilized second-order integration me...
An integration method based on Runge–Kutta–Chebyshev (RKC) methods is discussed which has been desig...
International audienceA partitioned implicit-explicit orthogonal Runge-Kutta method (PIROCK) is prop...
In stiff reaction-diffusion equations, whiles explicit time discretization schemes are utilized, the...
International audienceThe main purpose of the paper is to show how to use implicit-explicit (IMEX) R...
This article is devoted to the construction of a new class of semi-Lagrangian (SL) schemes with impl...
A partitioned implicit-explicit orthogonal Runge-Kutta method (PIROCK) is proposed for the time inte...
We consider implicit-explicit (IMEX) Runge--Kutta (R-K) schemes for hyperbolic systems with stiff re...
The Fortran 90 code IRKC is intended for the time integration of systems of partial differential equ...
textabstractThe Fortran 90 program IRKC is intended for the time integration of partial differential...
AbstractThe Fortran 90 code IRKC is intended for the time integration of systems of partial differen...
textabstractAn implicit-explicit (IMEX) extension of the explicit Runge-Kutta-Chebyshev (RKC) scheme...
AbstractThe FORTRAN program RKC is intended for the time integration of parabolic partial differenti...
The {sc fortran program {sc rkc is intended for the time integration of parabolic partial differenti...
An integration method is discussed which has been designed to treat parabolic and hyperbolic terms e...
The original explicit Runge-Kutta-Chebyshev (RKC) method is a stabilized second-order integration me...
An integration method based on Runge–Kutta–Chebyshev (RKC) methods is discussed which has been desig...
International audienceA partitioned implicit-explicit orthogonal Runge-Kutta method (PIROCK) is prop...
In stiff reaction-diffusion equations, whiles explicit time discretization schemes are utilized, the...
International audienceThe main purpose of the paper is to show how to use implicit-explicit (IMEX) R...
This article is devoted to the construction of a new class of semi-Lagrangian (SL) schemes with impl...
A partitioned implicit-explicit orthogonal Runge-Kutta method (PIROCK) is proposed for the time inte...
We consider implicit-explicit (IMEX) Runge--Kutta (R-K) schemes for hyperbolic systems with stiff re...