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Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear Timm Krüger Author
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ISBN: 9783834823762

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 bl… Mehr…

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Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear Timm Krüger Author
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Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear Timm Krüger Author - neues Buch

ISBN: 9783834823762

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 bl… Mehr…

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

ISBN: 9783834823762

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 bl… Mehr…

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ISBN: 9783834823762

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Detailangaben zum Buch - Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear Timm Krüger Author


EAN (ISBN-13): 9783834823762
ISBN (ISBN-10): 3834823767
Erscheinungsjahr: 2012
Herausgeber: Vieweg+Teubner Verlag Digital >16
163 Seiten
Sprache: eng/Englisch

Buch in der Datenbank seit 2012-07-29T13:53:25+02:00 (Zurich)
Detailseite zuletzt geändert am 2023-12-20T15:47:20+01:00 (Zurich)
ISBN/EAN: 9783834823762

ISBN - alternative Schreibweisen:
3-8348-2376-7, 978-3-8348-2376-2
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: krüger, krug, timm, boltzmann
Titel des Buches: simulation, blood cells, blo, phenomena, she, computer, süß


Daten vom Verlag:

Autor/in: Timm Krüger
Titel: Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shear
Verlag: Vieweg+Teubner Verlag; Vieweg & Teubner
165 Seiten
Erscheinungsjahr: 2012-10-02
Wiesbaden; DE
Sprache: Englisch
53,49 € (DE)
55,00 € (AT)
59,00 CHF (CH)
Available
XIII, 165 p.

EA; E107; eBook; Nonbooks, PBS / Physik, Astronomie/Allgemeines, Lexika; Mathematik und Naturwissenschaften; Verstehen; Blood Rheology; Direct Numerical Simulation; Immersed Boundary Method; Lattice Boltzmann Method; Red Blood Cell Suspensions; B; Physics and Astronomy; Physics and Astronomy; BC

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.
Publication in the field of natural sciences; 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.

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