We study a multiblock method for compressible turbulent flow simulations and present results obtained from calculations on a two-element airfoil. A cell-vertex or vertex-based spatial discretization method and explicit multistage Runge-Kutta time stepping are used. The vertex-based method is found to give better results than the cell-vertex method. In the latter method a larger amount of artificial dissipation is required since different control volumes are used for the discretization of the viscous and convective fluxes. The slow convergence of the time stepping method makes a multigrid acceleration technique indispensabl
An efficient scheme for the direct numerical simulation of 3D transitional and developed turbulent f...
We deal with the numerical solution of the Navier-Stokes equations describing a motion of viscous co...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
We study a multiblock method for compressible turbulent flow simulations and present results obtaine...
We study a multiblock method for compressible turbulent flow simulations and present results obtaine...
We study a multiblock method for compressible turbulent flow simulations and present results obtaine...
We describe a multigrid multiblock method for compressible turbulent flow simulations and present re...
grantor: University of TorontoA multigrid algorithm to accelerate the convergence of the c...
grantor: University of TorontoA multigrid algorithm to accelerate the convergence of the c...
The major considerations in the design of effective methods for computational aerodynamics are the c...
A general proof-of-concept prototype multiblock system, which provides Euler and Navier-Stokes flow ...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
A general proof-of-concept prototype multiblock system, which provides Euler and Navier-Stokes flow ...
An efficient scheme for the direct numerical simulation of 3D transitional and developed turbulent f...
We deal with the numerical solution of the Navier-Stokes equations describing a motion of viscous co...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
We study a multiblock method for compressible turbulent flow simulations and present results obtaine...
We study a multiblock method for compressible turbulent flow simulations and present results obtaine...
We study a multiblock method for compressible turbulent flow simulations and present results obtaine...
We describe a multigrid multiblock method for compressible turbulent flow simulations and present re...
grantor: University of TorontoA multigrid algorithm to accelerate the convergence of the c...
grantor: University of TorontoA multigrid algorithm to accelerate the convergence of the c...
The major considerations in the design of effective methods for computational aerodynamics are the c...
A general proof-of-concept prototype multiblock system, which provides Euler and Navier-Stokes flow ...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
A block structured compressible flow solver based on a finite volume approach with central spatial d...
A general proof-of-concept prototype multiblock system, which provides Euler and Navier-Stokes flow ...
An efficient scheme for the direct numerical simulation of 3D transitional and developed turbulent f...
We deal with the numerical solution of the Navier-Stokes equations describing a motion of viscous co...
A block structured compressible flow solver based on a finite volume approach with central spatial d...