An investigation of characteristics-based (CB) schemes for solving the incompressible Navier-Stokes equations in conjunction with the artificial-compressibility approach, is presented. Both non-conservative and conservative CB numerical reconstructions are derived and their accuracy and convergence properties are assessed analytically and numerically. We demonstrate by means of eigenvalue analysis that there are differences in the spectral characteristics of these formulations that result in different convergence properties. Numerical tests for two- and three-dimensional flows reveal that the two formulations provide similar accuracy but the non-conservative formulation converges faster
Copyright © 2021 The Author(s). Several competing artificial compressibility methods for the incompr...
The paper presents an investigation of the accuracy and efficiency of artificial compressibility, ch...
In this work an algorithm is developed for simulating incompressible steady flow on two and three-di...
Abstract-- The split follows the process initially introduced by Chorin [1,2] for incompressible flo...
The present work investigates the bifurcation properties of the Navier–Stokes equations using charac...
The purpose of this research is to construct accurate finite difference schemes for incompressible u...
Accurate numerical schemes are proposed for solving incompressible Navier-Stokes equations for 2D or...
The present work investigates the bifurcation properties of the Navier–Stokes equations using charac...
An unified approach for solving both compressible and incompressible flows was investigated in this ...
The present work investigates the bifurcation properties of the Navier–Stokes equations using charac...
This paper introduces a unified concept and algorithm for the fractionalstep (FS), artificial compre...
The scope of this dissertation centers on the application of the Characteristic Based SpHt (CBS) alg...
We present an overview of the most common numerical solution strategies for the incompressible Navie...
International audienceThis paper presents the common mathematical features which are leading to conv...
In the present study, we develop a generalised Godunov-type multi-directional characteristics-based ...
Copyright © 2021 The Author(s). Several competing artificial compressibility methods for the incompr...
The paper presents an investigation of the accuracy and efficiency of artificial compressibility, ch...
In this work an algorithm is developed for simulating incompressible steady flow on two and three-di...
Abstract-- The split follows the process initially introduced by Chorin [1,2] for incompressible flo...
The present work investigates the bifurcation properties of the Navier–Stokes equations using charac...
The purpose of this research is to construct accurate finite difference schemes for incompressible u...
Accurate numerical schemes are proposed for solving incompressible Navier-Stokes equations for 2D or...
The present work investigates the bifurcation properties of the Navier–Stokes equations using charac...
An unified approach for solving both compressible and incompressible flows was investigated in this ...
The present work investigates the bifurcation properties of the Navier–Stokes equations using charac...
This paper introduces a unified concept and algorithm for the fractionalstep (FS), artificial compre...
The scope of this dissertation centers on the application of the Characteristic Based SpHt (CBS) alg...
We present an overview of the most common numerical solution strategies for the incompressible Navie...
International audienceThis paper presents the common mathematical features which are leading to conv...
In the present study, we develop a generalised Godunov-type multi-directional characteristics-based ...
Copyright © 2021 The Author(s). Several competing artificial compressibility methods for the incompr...
The paper presents an investigation of the accuracy and efficiency of artificial compressibility, ch...
In this work an algorithm is developed for simulating incompressible steady flow on two and three-di...