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Titlebook: Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shea; Timm Krüger Book 2012 Springer Spekt

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書目名稱Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shea
編輯Timm Krüger
視頻videohttp://file.papertrans.cn/234/233905/233905.mp4
概述Publication in the field of natural sciences
圖書封面Titlebook: Computer Simulation Study of Collective Phenomena in Dense Suspensions of Red Blood Cells under Shea;  Timm Krüger Book 2012 Springer Spekt
描述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.
出版日期Book 2012
關(guān)鍵詞Blood Rheology; Direct Numerical Simulation; Immersed Boundary Method; Lattice Boltzmann Method; Red Blo
版次1
doihttps://doi.org/10.1007/978-3-8348-2376-2
isbn_softcover978-3-8348-2375-5
isbn_ebook978-3-8348-2376-2
copyrightSpringer Spektrum | Springer Fachmedien Wiesbaden GmbH 2012
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Fluid-structure interaction: the immersed boundary method equations are motivated in section .. The discretization of the IBM equations is discussed in section ., followed by an alternative motivation of these equations based on statistical physics in section ..
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https://doi.org/10.1007/978-1-4613-8303-1 viscosity and suspension stress). For the first time, a detailed and systematic analysis of the microscopic origins of the shear thinning behavior of blood for varying volume fractions, shear rates, and RBC deformabilities is reported.
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Book 2012he 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 fl
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https://doi.org/10.1007/978-1-4613-8303-1 If, however, averages of some kind are sufficient (e.g., over time, volume, or a coordinate plane), different approaches are available to recover the particle stress tensor or some of its components.
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