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Volume 13, Issue 1
An Artificial Boundary Condition for the Incompressible Viscous Flows in a No-Slip Channel

Hou-De Han & Wei-Zhu Bao

J. Comp. Math., 13 (1995), pp. 51-63.

Published online: 1995-02

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  • Abstract

The numerical simulation of the steady incompressible viscous flows in a no-slip channel is considered. A discrete artificial boundary condition on a given segmental artificial boundary is designed by the method of lines. Then the original problem is reduced to a boundary value problem of Navier-Stokes equations on a bounded domain. The numerical examples show that this artificial boundary condition is very effective and more accurate than Dirichlet and Neumann boundary conditions used in engineering literature.

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@Article{JCM-13-51, author = {Han , Hou-De and Bao , Wei-Zhu}, title = {An Artificial Boundary Condition for the Incompressible Viscous Flows in a No-Slip Channel}, journal = {Journal of Computational Mathematics}, year = {1995}, volume = {13}, number = {1}, pages = {51--63}, abstract = {

The numerical simulation of the steady incompressible viscous flows in a no-slip channel is considered. A discrete artificial boundary condition on a given segmental artificial boundary is designed by the method of lines. Then the original problem is reduced to a boundary value problem of Navier-Stokes equations on a bounded domain. The numerical examples show that this artificial boundary condition is very effective and more accurate than Dirichlet and Neumann boundary conditions used in engineering literature.

}, issn = {1991-7139}, doi = {https://doi.org/}, url = {http://global-sci.org/intro/article_detail/jcm/9250.html} }
TY - JOUR T1 - An Artificial Boundary Condition for the Incompressible Viscous Flows in a No-Slip Channel AU - Han , Hou-De AU - Bao , Wei-Zhu JO - Journal of Computational Mathematics VL - 1 SP - 51 EP - 63 PY - 1995 DA - 1995/02 SN - 13 DO - http://doi.org/ UR - https://global-sci.org/intro/article_detail/jcm/9250.html KW - AB -

The numerical simulation of the steady incompressible viscous flows in a no-slip channel is considered. A discrete artificial boundary condition on a given segmental artificial boundary is designed by the method of lines. Then the original problem is reduced to a boundary value problem of Navier-Stokes equations on a bounded domain. The numerical examples show that this artificial boundary condition is very effective and more accurate than Dirichlet and Neumann boundary conditions used in engineering literature.

Han , Hou-De and Bao , Wei-Zhu. (1995). An Artificial Boundary Condition for the Incompressible Viscous Flows in a No-Slip Channel. Journal of Computational Mathematics. 13 (1). 51-63. doi:
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