Fluid-structure interaction computations in geometries where di erent c hambers are almost completely separated from each o t h e r b y a m o vable rigid body but connected through very small gaps, can encounter stability problems when a standard explicit coupling procedure is used for the coupling of the uid ow and the movement of the rigid body.A n example of such k i n d o f o ws is the opening and closing of valves, when the valve motion is driven by the ow.In this paper, a stability analysis is performed for the coupling procedure of the movement of a cylinder in a cylindrical tube, lled with uid.Between the moving cylinder and the tube a small gap is present, so that two c hambers are formed.It is shown that a standard explicit coupling procedure or an implicit coupling procedure with explicit coupling in the subiterations steps can lead to unstable motion depending on the size of the gaps, the density of the rigid body and the density of the uid.It is proven that a reduction of the time step size cannot stabilize the coupling procedure.An implicit coupling procedure with implicit coupling in the subiterations has to be used.An illustration is given on how such a coupling procedure can be implemented in a commercial CFD software package.The CFD package Fluent (Fluent Inc.) is used.As an application, the opening and the closing of a prosthetic aortic valve is computed.I.
No takes yet. Share an insight, caveat, or question.
Vierendeels et al. (2005) studied this question.
Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context: