Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear

Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear

    • 39,99 $
    • 39,99 $

От издателя

The rheology of dense red blood cell suspensions is investigated via computer simulations based on the lattice Boltzmann, the immersed boundary, and the finite element methods. The red blood cells are treated as extended and deformable particles immersed in the ambient fluid. In the first part of the work, the numerical model and strategies for stress evaluation are discussed. In the second part, the behavior of the suspensions in simple shear flow is studied for different volume fractions, particle deformabilities, and shear rates. Shear thinning behavior is recovered. The existence of a shear-induced transition from a tumbling to a tank-treading motion is demonstrated. The transition can be parameterized by a single quantity, namely the effective capillary number. It is the ratio of the suspension stress and the characteristic particle membrane stress. At the transition point, a strong increase in the orientational order of the red blood cells and a significant decrease of the particle diffusivity are observed. However, the average cell deformation shows no signature of the transition.

ЖАНР
Наука и природа
РЕЛИЗ
2012
2 октября
ЯЗЫК
EN
английский
ОБЪЕМ
178
стр.
ИЗДАТЕЛЬ
Vieweg+Teubner Verlag
ПРОДАВЕЦ
Springer Nature B.V.
РАЗМЕР
6,3
МБ
Computer Simulation Studies in Condensed-Matter Physics XIX Computer Simulation Studies in Condensed-Matter Physics XIX
2008
High Performance Computing in Science and Engineering ' 06 High Performance Computing in Science and Engineering ' 06
2007
Dynamical Processes in Generalized Continua and Structures Dynamical Processes in Generalized Continua and Structures
2019
Unifying Concepts in Granular Media and Glasses Unifying Concepts in Granular Media and Glasses
2004
Reactive Flows, Diffusion and Transport Reactive Flows, Diffusion and Transport
2007
Multiphysics Modelling of Fluid-Particulate Systems Multiphysics Modelling of Fluid-Particulate Systems
2020
Theoretische Physik 1  Mechanik Theoretische Physik 1  Mechanik
2018
The Lattice Boltzmann Method The Lattice Boltzmann Method
2016
Theoretische Physik 2  Elektrodynamik Theoretische Physik 2  Elektrodynamik
2018
Theoretische Physik 4  Thermodynamik und Statistische Physik Theoretische Physik 4  Thermodynamik und Statistische Physik
2018
Theoretische Physik 3  Quantenmechanik Theoretische Physik 3  Quantenmechanik
2018
Theoretische Physik Theoretische Physik
2014