AbstractIn this paper, the problem of Stokes flow in curved channels is solved by applying the matched eigenfunction expansion method. The flow region is partitioned into a union of sectorial subregions. Then, within each subregion, the stream function is represented by an expansion of Papkovich–Fadle eigenfunctions. The coefficients in these expansions are obtained by requiring weak C3 continuity of the stream function across common interfaces. Biorthogonality conditions in cylindrical coordinates are utilized
An eigen function expansion procedure is developed for Stokes flow in two-dimensional rectangular ca...
An eigen function expansion procedure is developed for Stokes flow in two-dimensional rectangular ca...
Many heat and mass transport problems involve particle-fluid systems, where the assumption of Stokes...
AbstractIn this paper, the problem of Stokes flow in curved channels is solved by applying the match...
Many practical applications involve particles (inorganic, organic, biological) with non-spherical bu...
AbstractStokes flow is described by a pair of partial differential equations connecting the velocity...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
The axisymmetrical, viscous flow in curved channels is considered in the case where the hydraulic ra...
The biorthogonality condition for Stokes flow in annular trenches bounded by horizontal parallel pla...
The axisymmetrical, viscous flow in curved channels is considered in the case where the hydraulic ra...
AbstractOur aim in this note is to obtain a relation between the pressure gradient and the flux for ...
© Published under licence by IOP Publishing Ltd.An approach to the calculation of flow of an incompr...
An eigen function expansion procedure is developed for Stokes flow in two-dimensional rectangular ca...
An eigen function expansion procedure is developed for Stokes flow in two-dimensional rectangular ca...
Many heat and mass transport problems involve particle-fluid systems, where the assumption of Stokes...
AbstractIn this paper, the problem of Stokes flow in curved channels is solved by applying the match...
Many practical applications involve particles (inorganic, organic, biological) with non-spherical bu...
AbstractStokes flow is described by a pair of partial differential equations connecting the velocity...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
Consider a cylindrical container of circular section filled with a viscous fluid. We consider flow i...
The axisymmetrical, viscous flow in curved channels is considered in the case where the hydraulic ra...
The biorthogonality condition for Stokes flow in annular trenches bounded by horizontal parallel pla...
The axisymmetrical, viscous flow in curved channels is considered in the case where the hydraulic ra...
AbstractOur aim in this note is to obtain a relation between the pressure gradient and the flux for ...
© Published under licence by IOP Publishing Ltd.An approach to the calculation of flow of an incompr...
An eigen function expansion procedure is developed for Stokes flow in two-dimensional rectangular ca...
An eigen function expansion procedure is developed for Stokes flow in two-dimensional rectangular ca...
Many heat and mass transport problems involve particle-fluid systems, where the assumption of Stokes...