2010arXiv (Cornell University)Open access

Numerical simulation of blood with fluid-structure interactions using\n the lattice-Boltzmann method

Daniel A. Reasor, Jonathan Clausen, B. Min Yun, Cyrus K. Aidun

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Abstract

The fluid dynamics video presented here outlines recent advances in the\nsimulation of multiphase cellular blood flow through the direct numerical\nsimulations of deformable red blood cells (RBCs) demonstrated through several\nnumerical experiments. Videos show RBC deformations in variety of numerical\nsimulations, relative viscosity of a suspension of RBCs in shear, and the\ncell-depleted wall layer for blood Hagen--Poiseuille flow.\n

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The fluid dynamics video presented here outlines recent advances in the\nsimulation of multiphase cellular blood flow through the direct numerical\nsimulations of deformable red blood cells (RBCs) demonstrated through several\nnumerical experiments. Videos show RBC deformations in variety of numerical\nsimulations, relative viscosity of a suspension of RBCs in shear, and the\ncell-depleted wall layer for blood Hagen--Poiseuille flow.\n

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Available abstract

The fluid dynamics video presented here outlines recent advances in the\nsimulation of multiphase cellular blood flow through the direct numerical\nsimulations of deformable red blood cells (RBCs) demonstrated through several\nnumerical experiments. Videos show RBC deformations in variety of numerical\nsimulations, relative viscosity of a suspension of RBCs in shear, and the\ncell-depleted wall layer for blood Hagen--Poiseuille flow.\n

Key concepts: Lattice Boltzmann methods, Hagen–Poiseuille equation, Computer simulation, Mechanics, Suspension (topology), Viscosity, Numerical analysis, Red blood cell

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