[PDF] A three-dimensional fluid–structure interaction method for heart valve modelling | Semantic Scholar (2024)

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43 Citations

A fluid-structure interaction method with solid-rigid contact for heart valve dynamics
    R. LoonP. AndersonF. Vosse

    Engineering, Medicine

    J. Comput. Phys.

  • 2006
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Monolithic approach to thermal fluid-structure interaction with nonconforming interfaces
    L. YinJun-cheng JiangLi-xiang Zhang

    Engineering, Physics

  • 2012

This paper presents a monolithic approach to the thermal fluid-structure interaction (FSI) with nonconforming interfaces. The thermal viscous flow is governed by the Boussinesq approximation and the

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Monolithic approach to thermal fluid-structure interaction with nonconforming interfaces
    Liang YinJun-cheng JiangLi-xiang Zhang

    Engineering, Physics

    Applied Mathematics and Mechanics

  • 2012

This paper presents a monolithic approach to the thermal fluid-structure interaction (FSI) with nonconforming interfaces. The thermal viscous flow is governed by the Boussinesq approximation and the

An eXtended Finite Element Method/Lagrange multiplier based approach for fluid-structure interaction
    A. GerstenbergerW. Wall

    Engineering, Physics

  • 2008
An extended finite element method based approach for large deformation fluid-structure interaction
    A. GerstenbergerW. Wall

    Engineering, Physics

  • 2006

This paper illustrates aspects of an ongoing eort to develop a fixed grid fluid-structure interaction scheme that can be applied to the interaction of most general structures with incompressible

  • 3
An XFEM Based Fixed-Grid Approach for 3D Fluid-Structure Interaction
    W. WallA. GerstenbergerU. KüttlerU. Mayer

    Engineering, Physics

  • 2011

This paper gives an overview on our recent research activities on a fixed grid fluid-structure interaction scheme that can be applied to the interaction of most general structures with incompressible

  • 20
A particle‐based moving interface method (PMIM) for modeling the large deformation of boundaries in soft matter systems
    L. FoucardF. Vernerey

    Physics, Materials Science

  • 2016

The mechanics of the interaction between a fluid and a soft interface undergoing large deformations appear in many places, such as in biological systems or industrial processes. We present an

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  • PDF
3D Fluid-Structure Interaction Simulation of Aortic Valves Using a Unified Continuum ALE FEM Model
    J. H. SpühlerJ. JanssonNiclas JanssonJ. Hoffman

    Engineering, Medicine

    Front. Physiol.

  • 2018

A computational framework for automated solutions of partial differential equations using Finite Element Methods where any mathematical description directly can be translated to code is applied to develop a cardiac model where specific properties of the heart such as fluid-structure interaction of the aortic valve can be added in a modular way without extensive efforts.

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Fluid‐structure interaction simulations of venous valves: A monolithic ALE method for large structural displacements
    Sara CalandriniE. Aulisa

    Engineering, Medicine

    International journal for numerical methods in…

  • 2019

An arbitrary Lagrangian‐Eulerian (ALE) scheme for FSI simulations of venous valves, showing that the proposed method deals well with the large structural displacements of the problem, allowing a reconstruction of the valve behavior in both the opening and closing phase.

Review on Fluid Structure Interaction Solution Method for Biomechanical Application
    Nazri Huzaimi bin ZakariaM. Z. NgaliA. Rivai

    Engineering

  • 2014

Fluid-Structure Interaction engages with complex geometry especially in biomechanical problem. In order to solve critical case studies such as cardiovascular diseases, we need the structure to be

  • 1
  • PDF

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21 References

A combined fictitious domain/adaptive meshing method for fluid–structure interaction in heart valves
    van R Raoul LoonPatrick Patrick AndersonD. J. HartFpt Frank Baaijens

    Engineering, Medicine

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A new approach for modelling the fluid‐structure interaction of flexible heart valves is proposed, using a finite element method, which adapts the fluid mesh to the position of the solid mesh every time step to sustain a physiological pressure gradient across a solid leaflet.

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An arbitrary lagrangian-eulerian finite element method for transient dynamic fluid-structure interactions
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A fictitious domain/mortar element method for fluid-structure interaction
    F. Baaijens

    Engineering, Physics

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A new method for the computational analysis of fluid-structure interaction of a Newtonian fluid with slender bodies is developed. It combines ideas of the fictitious domain and the mortar element

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A three-dimensional fictitious domain method for incompressible fluid flow problems
    F. BertrandP. TanguyF. Thibault

    Engineering, Physics

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A new Galerkin finite element method for the solution of the Navier–Stokes equations in enclosures containing internal parts which may be moving is presented. Dubbed the virtual finite element

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The immersed boundary method
    C. Peskin

    Computer Science, Biology

    Acta Numerica

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This paper is concerned with the mathematical structure of the immersed boundary (IB) method, which is intended for the computer simulation of fluid–structure interaction, especially in biological

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A three-dimensional computational method for blood flow in the heart. 1. Immersed elastic fibers in a viscous incompressible fluid
    C. PeskinD. McQueen

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Flow patterns around heart valves: A numerical method
    C. Peskin

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Three‐Dimensional Coupled Fluid‐Structure Simulation of Pericardial Bioprosthetic Aortic Valve Function
    V. MakhijaniH. Q. YangP. DionneM. Thubrikar

    Engineering, Medicine

    ASAIO journal

  • 1997

It is suggested that the computer model developed has potential for being a powerful design tool for bioprosthetic aortic valves and was in close agreement with corresponding experimental in vitro data.

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A three-dimensional computational analysis of fluid-structure interaction in the aortic valve.
    D. J. HartGwm Gerrit PetersP. SchreursFpt Frank Baaijens

    Engineering, Medicine

    Journal of biomechanics

  • 2003
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Evaluation of a fictitious domain method for predicting dynamic response of mechanical heart valves
    J. StijnenD. J. HartP. BovendeerdVan de Vosse

    Engineering, Medicine

  • 2004
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