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Intracranial and abdominal aortic aneurysms: similarities, differences, and need for a new class of computational models
JD Humphrey, CA Taylor - Annu. Rev. Biomed. Eng., 2008 - annualreviews.org
Intracranial saccular and abdominal aortic aneurysms (ISAs and AAAs, respectively) result
from different underlying disease processes and exhibit different rupture potentials, yet they …
from different underlying disease processes and exhibit different rupture potentials, yet they …
Phonon Engineering of Micro‐and Nanophononic Crystals and Acoustic Metamaterials: A Review
J Ma - Small Science, 2023 - Wiley Online Library
Phononic crystals (PnCs) and acoustic metamaterials (AMMs) are artificially architected
materials endowed with the capabilities of wave manipulation. This review specifically …
materials endowed with the capabilities of wave manipulation. This review specifically …
Machine-learning-augmented predictive modeling of turbulent separated flows over airfoils
A modeling paradigm is developed to augment predictive models of turbulence by effectively
using limited data generated from physical experiments. The key components of the current …
using limited data generated from physical experiments. The key components of the current …
An immersogeometric variational framework for fluid–structure interaction: Application to bioprosthetic heart valves
In this paper, we develop a geometrically flexible technique for computational fluid–structure
interaction (FSI). The motivating application is the simulation of tri-leaflet bioprosthetic heart …
interaction (FSI). The motivating application is the simulation of tri-leaflet bioprosthetic heart …
PETSc users manual
The Portable, Extensible Toolkit for Scientific Computation (PETSc), is a suite of data
structures and routines for the scalable (parallel) solution of scientific applications modeled …
structures and routines for the scalable (parallel) solution of scientific applications modeled …
Integrated heart—coupling multiscale and multiphysics models for the simulation of the cardiac function
Mathematical modeling of the human heart and its function can expand our understanding of
various cardiac diseases, which remain the most common cause of death in the developed …
various cardiac diseases, which remain the most common cause of death in the developed …
A systematic comparison between 1‐D and 3‐D hemodynamics in compliant arterial models
N **ao, J Alastruey… - International journal for …, 2014 - Wiley Online Library
We present a systematic comparison of computational hemodynamics in arteries between a
one‐dimensional (1‐D) and a three‐dimensional (3‐D) formulation with deformable vessel …
one‐dimensional (1‐D) and a three‐dimensional (3‐D) formulation with deformable vessel …
Variational multiscale residual-based turbulence modeling for large eddy simulation of incompressible flows
We present an LES-type variational multiscale theory of turbulence. Our approach derives
completely from the incompressible Navier–Stokes equations and does not employ any ad …
completely from the incompressible Navier–Stokes equations and does not employ any ad …
Isogeometric fluid-structure interaction: theory, algorithms, and computations
We present a fully-coupled monolithic formulation of the fluid-structure interaction of an
incompressible fluid on a moving domain with a nonlinear hyperelastic solid. The arbitrary …
incompressible fluid on a moving domain with a nonlinear hyperelastic solid. The arbitrary …
Fluid–structure interaction analysis of bioprosthetic heart valves: significance of arterial wall deformation
We propose a framework that combines variational immersed-boundary and arbitrary
Lagrangian–Eulerian methods for fluid–structure interaction (FSI) simulation of a …
Lagrangian–Eulerian methods for fluid–structure interaction (FSI) simulation of a …