Theoretical and expcrimental convergence results are presented for nonlinear multigrid and iterative defect correction applied to finite volume discretizations of the full, steady, 2D, compressible NavierStokes equations. lterative defect correction is introduced for circumventing the difficulty in solving Navier Stokes equations discretized with a second- or higher-order accurate convective part. By Fourier analysis applied to a model equation, an optimal choice is made for the operator to be inverted in the defect correction iteration. As a smoothing technique for thc multigrid method, collective symmetric point Gauss-Seidel relaxation is applied with as the basic solution technique: exact Newton iteration applied to a continuously differ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
Theoretical and expcrimental convergence results are presented for nonlinear multigrid and iterative...
The solution of large sets of equations is required when discrete methods are used to solve fluid fl...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
The distributed-relaxation multigrid and defect- correction methods are applied to the two- dimensio...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
Theoretical and expcrimental convergence results are presented for nonlinear multigrid and iterative...
The solution of large sets of equations is required when discrete methods are used to solve fluid fl...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
The distributed-relaxation multigrid and defect- correction methods are applied to the two- dimensio...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
Results are presented for an efficient solution method for second-order accurate discretizations of ...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...