htmlabstractHarlow and Welch [Phys. Fluids 8 (1965) 2182–2189] introduced a discretization method for the incompressible Navier–Stokes equations conserving the secondary quantities kinetic energy and vorticity, besides the primary quantities mass and momentum. This method was extended to fourth order accuracy by several researchers [25,14,21]. In this paper we propose a new consistent boundary treatment for this method, which is such that continuous integration-by-parts identities (including boundary contributions) are mimicked in a discrete sense. In this way kinetic energy is exactly conserved even in case of non-zero tangential boundary conditions. We show that requiring energy conservation at the boundary conflicts with order of accurac...
Modern direct and large eddy simulation of turbulent and transition flows requires accurate solution...
The solution of large sets of equations is required when discrete methods are used to solve fluid fl...
channel flow Abstract. We propose to discretize the convective and diffusive operators in the (incom...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
Harlow and Welch [Phys. Fluids 8 (1965) 2182–2189] introduced a discretization method for the incomp...
Modern direct and large eddy simulation of turbulent and transition flows requires accurate solution...
The solution of large sets of equations is required when discrete methods are used to solve fluid fl...
channel flow Abstract. We propose to discretize the convective and diffusive operators in the (incom...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
Harlow and Welch (Phys. Fluids 8:2182-2189, 1965) introduced a discretization method for the incompr...
A discretization method for the incompressible Navier–Stokes equations conserving the secondary quan...
Harlow and Welch [Phys. Fluids 8 (1965) 2182–2189] introduced a discretization method for the incomp...
Modern direct and large eddy simulation of turbulent and transition flows requires accurate solution...
The solution of large sets of equations is required when discrete methods are used to solve fluid fl...
channel flow Abstract. We propose to discretize the convective and diffusive operators in the (incom...