In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler equations for inviscid flow by a nonlinear multigrid method. The discretization is a finite volume one, using the Godunov scheme, with Osher's approximate Riemann solver as the numerical flux function. Nonlinear FAS multigrid cycling is used to directly solve the first-order discrete equations. Defect correction is used to obtain higher-order accuracy. The technique can be extended to the N avier-Stokes equations, and can be combined with the adaptive grid refinements
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...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...
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...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
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...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
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...
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...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...
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...
In this chapter we describe an accurate, efficient and robust technique to solve the steady Euler eq...
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...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
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...
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...
Higher-order accurate Euler-flow solutions are presented for some airfoil test cases. Second-order a...