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  3. FD/FEM Coupling with the Immersed Boundary Method for the Simulation of Aortic Heart Valves

FD/FEM Coupling with the Immersed Boundary Method for the Simulation of Aortic Heart Valves

Details
Abstract
The ever-increasing available computational power allows for solving more complex physical problems spanning multiple physical domains. We present a numerical tool for simulating fluid-structure interaction between blood flow and the soft tissue of heart valves. Using the basic concept of the Immersed Boundary Method, the interaction between the two physical domains (flow and structure) does not require mesh manipulation. We solve the governing equations of the fluid and the structure with domain-specific finite difference and finite element discretisations, respectively. We use a massively parallel algorithmic framework for handling the L2-projection transfer between the loosely coupled highly parallel solvers for fluid and solid. Our tool builds on a well-established and proven Navier-Stokes solver and a novel method for solving non-linear continuum solid mechanics.
Date Issued
2016
Publication Type
Conference Item
Subject(s)
500 Science > 530 Physics
500 Science > 570 Life sciences; biology
600 Technology > 620 Engineering
Language(s)
en
Author(s)
Becsek, Barna Errol Mario  
ARTORG - Cardiovascular Engineering (CVE)  
Nestola, Maria Giuseppina Chiara
Zolfaghari, Hadi  orcid-logo
ARTORG - Cardiovascular Engineering (CVE)  
Krause, Rolf
Obrist, Dominik  orcid-logo
ARTORG - Cardiovascular Engineering (CVE)  
Additional Credits
ARTORG - Cardiovascular Engineering (CVE)  
Title of Event
PASC16
Project(s)
AV-FLOW
Access(Rights)
metadata.only
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