Time-dependent finite element simulations of a shear-thinning viscoelastic fluid with application to blood flow

Author:

Donev I. G.1,Reddy B. D.1

Affiliation:

1. Centre for Research in Computational and Applied Mechanics, Department of Mathematics and Applied Mathematics; University of Cape Town; 7701 Rondebosch South Africa

Publisher

Wiley

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials,Computational Mechanics

Reference41 articles.

1. Rheological models for blood;Robertson;Cardiovascular Mathematics,2009

2. Flow characteristics in models of arterial stenoses - II. Unsteady flow;Young;Journal of Biomechanics,1973

3. Viscoelasticity of human blood;Thurston;Biophysical Journal,1972

4. The flow of blood in tubes: theory and experiment;Yeleswarapu;Mechanics Research Communications,1998

5. Pulsatile blood flow in a pipe;Pontrelli;Computers and Fluids,1998

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1. Comparative Analysis of Finite Element Method Solvers in Computational Blood Flow Investigations;2022 3rd International Conference on Communication, Computing and Industry 4.0 (C2I4);2022-12-15

2. Simulation of Mechanical Heart Valve Dysfunction and the Non-Newtonian Blood Model Approach;Applied Bionics and Biomechanics;2022-04-19

3. Robust stabilised finite element solvers for generalised Newtonian fluid flows;Journal of Computational Physics;2021-05

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