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FDA benchmark medical device flow models for CFD validation
Computational fluid dynamics (CFD) is increasingly being used to develop blood-contacting
medical devices. However, the lack of standardized methods for validating CFD simulations …
medical devices. However, the lack of standardized methods for validating CFD simulations …
Newtonian and non-Newtonian CFD models of intracranial aneurysm: a review
Abstract Computational Fluid Dynamics (CFD) has become an essential research tool to
investigate the physical, biophysical and pathophysiological processes leading to the …
investigate the physical, biophysical and pathophysiological processes leading to the …
Patient‐specific CFD modelling in the thoracic aorta with PC‐MRI–based boundary conditions: A least‐square three‐element Windkessel approach
The increasing use of computational fluid dynamics for simulating blood flow in clinics
demands the identification of appropriate patient‐specific boundary conditions for the …
demands the identification of appropriate patient‐specific boundary conditions for the …
Fluid–structure interaction between pulsatile blood flow and a curved stented coronary artery on a beating heart: A four stent computational study
This work focuses on fluid–structure interaction (FSI) between a curved (tortuous) coronary
artery with an implanted stent, pulsatile blood flow, and heart contractions. The goal is to …
artery with an implanted stent, pulsatile blood flow, and heart contractions. The goal is to …
A hybrid projection/data-driven reduced order model for the Navier-Stokes equations with nonlinear filtering stabilization
Abstract We develop a Reduced Order Model (ROM) for the Navier-Stokes equations with
nonlinear filtering stabilization. Our approach, that can be interpreted as a Large Eddy …
nonlinear filtering stabilization. Our approach, that can be interpreted as a Large Eddy …
Coupled morphological–hemodynamic computational analysis of type B aortic dissection: A longitudinal study
Progressive false lumen aneurysmal degeneration in type B aortic dissection (TBAD) is a
complex process with a multi-factorial etiology. Patient-specific computational fluid dynamics …
complex process with a multi-factorial etiology. Patient-specific computational fluid dynamics …
Fluid-structure interaction simulation of an intra-atrial fontan connection
Simple Summary A fluid-structure interaction (FSI) simulation of an intra-atrial Fontan
connection was performed. Power loss and pressure drop results fluctuated less during the …
connection was performed. Power loss and pressure drop results fluctuated less during the …
POD–Galerkin monolithic reduced order models for parametrized fluid‐structure interaction problems
In this paper, we propose a monolithic approach for reduced‐order modeling of
parametrized fluid‐structure interaction problems based on a proper orthogonal …
parametrized fluid‐structure interaction problems based on a proper orthogonal …
A unified continuum and variational multiscale formulation for fluids, solids, and fluid–structure interaction
We develop a unified continuum modeling framework using the Gibbs free energy as the
thermodynamic potential. This framework naturally leads to a pressure primitive variable …
thermodynamic potential. This framework naturally leads to a pressure primitive variable …
A GPU-accelerated 3D ISPH-TLSPH framework for patient-specific simulations of cardiovascular fluid–structure interactions
Patient-specific simulation of the fluid–structure interaction (FSI) problems in cardiovascular
systems plays an increasingly important role in fundamental research and clinical …
systems plays an increasingly important role in fundamental research and clinical …