We develop a new high order accurate time-integration technique for initial value problems. We focus on problems that originate from a space approximation using high order finite difference methods on summation-by-parts form with weak boundary conditions, and extend that technique to the time-domain. The new time-integration method is global, high order accurate, unconditionally stable and together with the approximation in space, it generates optimally sharp fully discrete energy estimates. In particular, it is shown how stable fully discrete high order accurate approximations of the Maxwells’ equations, the elastic wave equations and the linearized Euler and Navier-Stokes equations can obtained. Even though we focus on finite difference a...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Diagonal norm finite-difference based time integration methods in summation-by-parts form are invest...
We develop a new high order accurate time-discretisation technique for initial value problems. We fo...
A new technique for time integration of initial value problems involving second derivatives is prese...
Many physical phenomena can be described mathematically by means of partial differential equations. ...
Many physical phenomena can be described mathematically by means of partial differential equations. ...
We analyze the extension of summation-by-parts operators and weak boundary conditions for solving in...
We analyze the extension of summation-by-parts operators and weak boundary conditions for solving in...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
Diagonal norm finite-difference based time integration methods in summation-by-parts form are invest...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Diagonal norm finite-difference based time integration methods in summation-by-parts form are invest...
We develop a new high order accurate time-discretisation technique for initial value problems. We fo...
A new technique for time integration of initial value problems involving second derivatives is prese...
Many physical phenomena can be described mathematically by means of partial differential equations. ...
Many physical phenomena can be described mathematically by means of partial differential equations. ...
We analyze the extension of summation-by-parts operators and weak boundary conditions for solving in...
We analyze the extension of summation-by-parts operators and weak boundary conditions for solving in...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
High order accurate finite difference methods for hyperbolic and parabolic initial boundary value pr...
Diagonal norm finite-difference based time integration methods in summation-by-parts form are invest...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Wave phenomena appear in many fields of science such as acoustics, geophysics, and quantum mechanics...
Diagonal norm finite-difference based time integration methods in summation-by-parts form are invest...