Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order accurate solutions are computed by an Iterative Defect Correction process. For two test cases even higher accuracy is obtained by the additional use of a ~xtrapolation technique. Finite volume Osher-type discretizations are applied throughout. Two interpolation schemes (one with and one w~hout a flux limiter) are used for the computation of the second-order defect. In each Defect Correction cycle, the solution is computed by non-linear mu~igrid iteration, in which Collective Symmetric Gauss-Seidel relaxation is used as the smoothing procedure. The computational method does not require tuning of parameters. The solutions show a good resolution ...
An efficient multigrid method to obtain second-order accurate solutions of the 2D steady Euler equat...
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...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...
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...
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 ...
An efficient multigrid method to obtain second-order accurate solutions of the 2D steady Euler equat...
An efficient multigrid method to obtain second-order accurate solutions of the 2D steady Euler equat...
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...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...
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...
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 ...
An efficient multigrid method to obtain second-order accurate solutions of the 2D steady Euler equat...
An efficient multigrid method to obtain second-order accurate solutions of the 2D steady Euler equat...
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...