In this research, a comparison of the convergence rate of different basic methods is made in order to solve the Poisson equation, which is similar to some of the resulting equations in computational fluid mechanics. The Jacobi method, the point Gauss-Seidel method, the successive over-relaxation method (SOR), the line Gauss method (TDMA), the ADI method and Strongly Implicit (SIP) method are among the iterative approaches investigated, which are then compared to find the most optimal method. The selection criteria included the number of iterations and the time needed to reach convergence. In both selection criteria, the SIP approach has been shown to be the most efficient
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
In this paper, a third-order compact upwind scheme is given for calculating flows containing discont...
In this work, a high-order compact upwind scheme is developed for solving one-dimensional Euler equ...
In this work, a high-order compact upwind scheme is developed for solving one-dimensional Euler equ...
In the field of computational fluid dynamics, many numerical algorithms have been developed to simul...
In the field of computational fluid dynamics, many numerical algorithms have been developed to simul...
During last decades, upwind schemes have become a popular method in the field of computational fluid...
A comparative study of five upwind schemes was performed to evaluate their ability accurately model ...
This thesis presents and verifies a numerical method for solving the compressible Euler equations. T...
During last decades, upwind schemes have become a popular method in the field of computational fluid...
Purpose – To develop a high-order compact finite-difference method for solving flow problems contain...
During last decades, upwind schemes have become a popular method in the field of computational fluid...
This paper studies and contrasts the performances of three iterative methods for computing the solut...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
In this paper, a third-order compact upwind scheme is given for calculating flows containing discont...
In this work, a high-order compact upwind scheme is developed for solving one-dimensional Euler equ...
In this work, a high-order compact upwind scheme is developed for solving one-dimensional Euler equ...
In the field of computational fluid dynamics, many numerical algorithms have been developed to simul...
In the field of computational fluid dynamics, many numerical algorithms have been developed to simul...
During last decades, upwind schemes have become a popular method in the field of computational fluid...
A comparative study of five upwind schemes was performed to evaluate their ability accurately model ...
This thesis presents and verifies a numerical method for solving the compressible Euler equations. T...
During last decades, upwind schemes have become a popular method in the field of computational fluid...
Purpose – To develop a high-order compact finite-difference method for solving flow problems contain...
During last decades, upwind schemes have become a popular method in the field of computational fluid...
This paper studies and contrasts the performances of three iterative methods for computing the solut...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
This paper focuses on the evolution of advection upstream splitting method (AUSM) schemes. The main ...
In this paper, a third-order compact upwind scheme is given for calculating flows containing discont...