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Hemodynamical Flows
(Englisch)
Modeling, Analysis and Simulation
Giovanni P. Galdi & Rolf Rannacher & Anne M. Robertson & Stefan Turek

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Hemodynamical Flows

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Produktbeschreibung

Written by an interdisciplinary group of experts from mechanical engineering, mathematical analysis, and numerics

The subject is treated from different points of view representing the state-of-the-art in their field, guaranteeing a good degree of theoretical soundness and practical relevance of the material presented


Written by an interdisciplinary group of experts from mechanical engineering, mathematical analysis, and numerics

The subject is treated from different points of view representing the state-of-the-art in their field, guaranteeing a good degree of theoretical soundness and practical relevance of the material presented

Includes supplementary material: sn.pub/extras


This book surveys research results on the physical and mathematical modeling, as well as the numerical simulation of complex fluid and structural mechanical processes occurring in the human blood circulation system. Topics treated include continuum mechanical deillegalscription; choice of suitable liquid and wall models; mathematical analysis of coupled models; numerical methods for flow simulation; parameter identification and model calibration; fluid-solid interaction; mathematical analysis of piping systems; particle transport in channels and pipes; artificial boundary conditions, and many more. The book was developed from lectures presented by the authors at the Oberwolfach Research Institute (MFO), in Oberwolfach-Walke, Germany, November, 2005.

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This book surveys a broad range of research results on the physical and mathematical modeling, as well as the numerical simulation of hemodynamical flows, that is, of the complex fluid and structural mechanical processes that occur in the human blood circulation system. The topics treated include continuum mechanical deillegalscription; choice of suitable liquid and wall models; mathematical analysis of coupled models; numerical methods for flow simulation; parameter identification and model calibration; fluid-solid interaction; mathematical analysis of piping systems; mesh and mode adaptivity; particle transport in channels and pipes; artificial boundary conditions, and many more. Hemodynamics is an area of active current research, and this book provides an entry into the field for graduate students and researchers. Hemodynamical Flows was developed out of a series of lectures presented by the authors at the Oberwolfach Research Institute (MFO) in Oberwolfach-Walke, Germany, in November, 2005.



Review of Relevant Continuum Mechanics.- Hemorheology.- Mathematical Problems in Classical and Non-Newtonian Fluid Mechanics.- Methods for Numerical Flow Simulation.- Numerics of Fluid-Structure Interaction.- Numerical Techniques for Multiphase Flow with Liquid-Solid Interaction.

From the reviews:

"This volume consists of six contributions concerning mathematical tools and analysis for the blood flow in arteries and veins. ... book will be handy for those who are interested in the deillegalscription of the flows of fluids with unusual properties, especially, of course, blood. It is suitable for physicists, mathematicians working in the analysis of fluid flows, students specializing in the mathematical modelling of fluids, and other related specialists. Libraries of technical and natural sciences universities are strongly recommended to provide this well written collection.” (Ivan Straškraba, Applications of Mathematics, Vol. 56 (6), 2011)

Developed from lectures presented by the authors at the Oberwolfach Research Institute, this book surveys research on physical and mathematical modeling, as well as numerical simulation of complex fluid and structural mechanical processes occurring in the human blood circulation system.


From the reviews:

"This volume consists of six contributions concerning mathematical tools and analysis for the blood flow in arteries and veins. ... book will be handy for those who are interested in the deillegalscription of the flows of fluids with unusual properties, especially, of course, blood. It is suitable for physicists, mathematicians working in the analysis of fluid flows, students specializing in the mathematical modelling of fluids, and other related specialists. Libraries of technical and natural sciences universities are strongly recommended to provide this well written collection." (Ivan Straskraba, Applications of Mathematics, Vol. 56 (6), 2011)

Inhaltsverzeichnis



Review of Relevant Continuum Mechanics.- Hemorheology.- Mathematical Problems in Classical and Non-Newtonian Fluid Mechanics.- Methods for Numerical Flow Simulation.- Numerics of Fluid-Structure Interaction.- Numerical Techniques for Multiphase Flow with Liquid-Solid Interaction.


Klappentext



This book surveys research results on the physical and mathematical modeling, as well as the numerical simulation of complex fluid and structural mechanical processes occurring in the human blood circulation system. Topics treated include continuum mechanical deillegalscription; choice of suitable liquid and wall models; mathematical analysis of coupled models; numerical methods for flow simulation; parameter identification and model calibration; fluid-solid interaction; mathematical analysis of piping systems; particle transport in channels and pipes; artificial boundary conditions, and many more. The book was developed from lectures presented by the authors at the Oberwolfach Research Institute (MFO), in Oberwolfach-Walke, Germany, November, 2005.




This book surveys a broad range of research results on the physical and mathematical modeling, as well as the numerical simulation of hemodynamical flows, that is, of the complex fluid and structural mechanical processes that occur in the human blood circulation system. The topics treated include continuum mechanical deillegalscription; choice of suitable liquid and wall models; mathematical analysis of coupled models; numerical methods for flow simulation; parameter identification and model calibration; fluid-solid interaction; mathematical analysis of piping systems; mesh and mode adaptivity; particle transport in channels and pipes; artificial boundary conditions, and many more. Hemodynamics is an area of active current research, and this book provides an entry into the field for graduate students and researchers. Hemodynamical Flows was developed out of a series of lectures presented by the authors at the Oberwolfach Research Institute (MFO) in Oberwolfach-Walke, Germany, in November, 2005.

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