AbstractA conforming spectral domain decomposition technique is described for the solution of Stokes flow in rectangularly decomposable domains. The matrices arising from such a spectral discretization procedure possess a block tridiagonal structure where these blocks are full submatrices. Efficient direct solution procedures are proposed to take advantage of the matrix structure. A comparison of the methods in terms of computational efficiency is made. Numerical results are presented for the flow through an abruptly contracting channel
The primitive variable formulation of the unsteady incompressible Navier-Stokes equations in three s...
In this paper we recall a new domain decomposition method for the Stokes problem obtained via the Sm...
Flow simulations in pipelined channels and several kinds of parametrized configurations have a growi...
AbstractA conforming spectral domain decomposition technique is described for the solution of Stokes...
The numerical simulation of steady planar two-dimensional, laminar flow of an incompressible fluid t...
AbstractThe application of a conforming spectral collocation method to certain nonconforming domain ...
AbstractWhen a Chebyshev spectral collocation method is applied to a flow problem in a rectangularly...
A multidomain spectral collocation scheme is proposed for the approximation of the two-dimensional S...
AbstractThe governing equations for Stokes flow are formulated in terms of a stream function and Air...
Spectral collocation methods have proven to be efficient discretization schemes for many aerodynamic...
Spectral methods, particularly in their multidomain version, have become firmly established as a mai...
In this paper the Smith factorization is used systematically to derive a new domain decomposition me...
International audienceSolving the Stokes equation by an optimal domain decomposition method derived ...
AbstractA conforming domain decomposition Chebyshev spectral collocation method is developed for the...
The primitive variable formulation of the unsteady incompressible Navier-Stokes equations in three s...
The primitive variable formulation of the unsteady incompressible Navier-Stokes equations in three s...
In this paper we recall a new domain decomposition method for the Stokes problem obtained via the Sm...
Flow simulations in pipelined channels and several kinds of parametrized configurations have a growi...
AbstractA conforming spectral domain decomposition technique is described for the solution of Stokes...
The numerical simulation of steady planar two-dimensional, laminar flow of an incompressible fluid t...
AbstractThe application of a conforming spectral collocation method to certain nonconforming domain ...
AbstractWhen a Chebyshev spectral collocation method is applied to a flow problem in a rectangularly...
A multidomain spectral collocation scheme is proposed for the approximation of the two-dimensional S...
AbstractThe governing equations for Stokes flow are formulated in terms of a stream function and Air...
Spectral collocation methods have proven to be efficient discretization schemes for many aerodynamic...
Spectral methods, particularly in their multidomain version, have become firmly established as a mai...
In this paper the Smith factorization is used systematically to derive a new domain decomposition me...
International audienceSolving the Stokes equation by an optimal domain decomposition method derived ...
AbstractA conforming domain decomposition Chebyshev spectral collocation method is developed for the...
The primitive variable formulation of the unsteady incompressible Navier-Stokes equations in three s...
The primitive variable formulation of the unsteady incompressible Navier-Stokes equations in three s...
In this paper we recall a new domain decomposition method for the Stokes problem obtained via the Sm...
Flow simulations in pipelined channels and several kinds of parametrized configurations have a growi...