Title
Fluid-structure interaction in blood flow capturing non-zero longitudinal structure displacement
Abstract
We present a new model and a novel loosely coupled partitioned numerical scheme modeling fluid-structure interaction (FSI) in blood flow allowing non-zero longitudinal displacement. Arterial walls are modeled by a linearly viscoelastic, cylindrical Koiter shell model capturing both radial and longitudinal displacement. Fluid flow is modeled by the Navier-Stokes equations for an incompressible, viscous fluid. The two are fully coupled via kinematic and dynamic coupling conditions. Our numerical scheme is based on a new modified Lie operator splitting that decouples the fluid and structure sub-problems in a way that leads to a loosely coupled scheme which is unconditionally stable. This was achieved by a clever use of the kinematic coupling condition at the fluid and structure sub-problems, leading to an implicit coupling between the fluid and structure velocities. The proposed scheme is a modification of the recently introduced \"kinematically coupled scheme\" for which the newly proposed modified Lie splitting significantly increases the accuracy. The performance and accuracy of the scheme were studied on a couple of instructive examples including a comparison with a monolithic scheme. It was shown that the accuracy of our scheme was comparable to that of the monolithic scheme, while our scheme retains all the main advantages of partitioned schemes, such as modularity, simple implementation, and low computational costs.
Year
DOI
Venue
2013
10.1016/j.jcp.2012.08.033
J. Comput. Physics
Keywords
Field
DocType
blood flow,viscous fluid,implicit coupling,partitioned scheme,kinematic coupling condition,monolithic scheme,non-zero longitudinal structure displacement,fluid-structure interaction,dynamic coupling condition,fluid flow,proposed scheme,structure sub-problems,numerical scheme
Compressibility,Viscoelasticity,Viscous liquid,Coupling,Kinematics,Mathematical analysis,Fluid dynamics,Kinematic coupling,Mathematics,Fluid–structure interaction
Journal
Volume
Issue
ISSN
235
C
0021-9991
Citations 
PageRank 
References 
4
0.48
10
Authors
5
Name
Order
Citations
PageRank
Martina Bukač1103.39
Sunčica anić260.94
Roland Glowinski318850.44
Josip TambačA440.48
Annalisa Quaini5499.50