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An isogeometric FE-BE method to investigate fluid–structure interaction effects for an elastic cylindrical shell vibrating near a free surface - ScienceDirect
Systematic evaluation of the interface description for fluid–structure interaction simulations using the isogeometric mortar-based mapping - ScienceDirect
tIGAr: Automating isogeometric analysis with FEniCS
Frontiers The Comparison of Different Constitutive Laws and Fiber Architectures for the Aortic Valve on Fluid–Structure Interaction Simulation
Online first articles Communications in Mathematics and Statistics
Advanced Radial Basis Functions Mesh Morphing for High Fidelity Fluid-Structure Interaction with Known Movement of the Walls: Simulation of an Aortic Valve
tIGAr: Automating isogeometric analysis with FEniCS
Mesh moving techniques in fluid-structure interaction: robustness, accumulated distortion and computational efficiency
Lagrange extraction and projection for NURBS basis functions: A direct link between isogeometric and standard nodal finite element formulations
Fast Isogeometric Method for Fluid–Structure Interaction Simulation of Heart Valves with GIFT Framework
Mesh deformations of the fluid–structure interaction model problem for
A time-consistent stabilized finite element method for fluids with applications to hemodynamics
tIGAr: Automating isogeometric analysis with FEniCS
Frontiers in Computational Fluid-Structure Interaction and Flow Simulation
Advanced Radial Basis Functions Mesh Morphing for High Fidelity Fluid-Structure Interaction with Known Movement of the Walls: Simulation of an Aortic Valve