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A Physical Introduction to Suspension Dynamics

A Physical Introduction to Suspension Dynamics
Author: Élisabeth Guazzelli
Publisher: Cambridge University Press
Total Pages: 243
Release: 2011-11-24
Genre: Science
ISBN: 1139503936

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Understanding the behaviour of particles suspended in a fluid has many important applications across a range of fields, including engineering and geophysics. Comprising two main parts, this book begins with the well-developed theory of particles in viscous fluids, i.e. microhydrodynamics, particularly for single- and pair-body dynamics. Part II considers many-body dynamics, covering shear flows and sedimentation, bulk flow properties and collective phenomena. An interlude between the two parts provides the basic statistical techniques needed to employ the results of the first (microscopic) in the second (macroscopic). The authors introduce theoretical, mathematical concepts through concrete examples, making the material accessible to non-mathematicians. They also include some of the many open questions in the field to encourage further study. Consequently, this is an ideal introduction for students and researchers from other disciplines who are approaching suspension dynamics for the first time.


A Physical Introduction to Suspension Dynamics

A Physical Introduction to Suspension Dynamics
Author: Elisabeth Guazzelli
Publisher:
Total Pages: 242
Release: 2014-05-14
Genre: Dynamics of a particle
ISBN: 9781139190039

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Opens up the field by introducing theoretical, mathematical concepts in physical form through examples.


A Physical Introduction to Suspension Dynamics

A Physical Introduction to Suspension Dynamics
Author: Élisabeth Guazzelli
Publisher: Cambridge University Press
Total Pages: 256
Release: 2011-11-24
Genre: Science
ISBN: 9780521149273

Download A Physical Introduction to Suspension Dynamics Book in PDF, ePub and Kindle

Understanding the behavior of particles suspended in a fluid has many important applications across a range of fields, including engineering and geophysics. Comprising two main parts, this book begins with the well-developed theory of particles in viscous fluids, i.e. microhydrodynamics, particularly for single- and pair-body dynamics. Part II considers many-body dynamics, covering shear flows and sedimentation, bulk flow properties and collective phenomena. An interlude between the two parts provides the basic statistical techniques needed to employ the results of the first (microscopic) in the second (macroscopic). The authors introduce theoretical, mathematical concepts through concrete examples, making the material accessible to non-mathematicians. They also include some of the many open questions in the field to encourage further study. Consequently, this is an ideal introduction for students and researchers from other disciplines who are approaching suspension dynamics for the first time.


Dynamics of Blood Cell Suspensions in Microflows

Dynamics of Blood Cell Suspensions in Microflows
Author: Annie Viallat
Publisher: CRC Press
Total Pages: 457
Release: 2019-12-09
Genre: Medical
ISBN: 1315395134

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The first book to provide a physical perspective of blood microcirculation Draws attention to the potential of this physical approach for novel applications in medicine Edited by specialists in this field, with chapter contributions from subject area specialists


Physical Hydrodynamics

Physical Hydrodynamics
Author: Etienne Guyon
Publisher: Oxford University Press, USA
Total Pages: 547
Release: 2015
Genre: Science
ISBN: 0198702450

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Exercises have also been added at the end of a number of chapters.


Physics of Granular Suspensions

Physics of Granular Suspensions
Author: Marco Mazzuoli
Publisher: Springer Nature
Total Pages: 224
Release:
Genre:
ISBN: 3031555090

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Theory and Applications of Colloidal Suspension Rheology

Theory and Applications of Colloidal Suspension Rheology
Author: Norman J. Wagner
Publisher: Cambridge University Press
Total Pages: 437
Release: 2021-04-15
Genre: Science
ISBN: 1108423035

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Essential text on the practical application and theory of colloidal suspension rheology, written by an international coalition of experts.


An Introduction to Magnetohydrodynamics

An Introduction to Magnetohydrodynamics
Author: P. A. Davidson
Publisher: Cambridge University Press
Total Pages: 456
Release: 2001-03-05
Genre: Mathematics
ISBN: 9780521794879

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This book is an introductory text on magnetohydrodynamics (MHD) - the study of the interaction of magnetic fields and conducting fluids.


Soft Matter at Aqueous Interfaces

Soft Matter at Aqueous Interfaces
Author: Peter Lang
Publisher: Springer
Total Pages: 556
Release: 2015-12-24
Genre: Science
ISBN: 3319245023

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This book covers the science of interfaces between an aqueous phase and a solid, another liquid or a gaseous phase, starting from the basic physical chemistry all the way to state-of-the-art research developments. Both experimental and theoretical methods are treated thanks to the contributions of a distinguished list of authors who are all active researchers in their respective fields. The properties of these interfaces are crucial for a wide variety of processes, products and biological systems and functions, such as the formulation of personal care and food products, paints and coatings, microfluidic and lab-on-a-chip applications, cell membranes, and lung surfactants. Accordingly, research and expertise on the subject are spread over a broad range of academic disciplines and industrial laboratories. This book brings together knowledge from these different places with the aim of fostering education, collaborations and research progress.


Collective Dynamics of Particles

Collective Dynamics of Particles
Author: Cristian Marchioli
Publisher: Springer
Total Pages: 134
Release: 2017-02-21
Genre: Technology & Engineering
ISBN: 3319512269

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The book surveys the state-of-the-art methods that are currently available to model and simulate the presence of rigid particles in a fluid flow. For particles that are very small relative to the characteristic flow scales and move without interaction with other particles, effective equations of motion for particle tracking are formulated and applied (e.g. in gas-solid flows). For larger particles, for particles in liquid-solid flows and for particles that interact with each other or possibly modify the overall flow detailed model are presented. Special attention is given to the description of the approximate force coupling method (FCM) as a more general treatment for small particles, and derivations in the context of low Reynolds numbers for the particle motion as well as application at finite Reynolds numbers are provided. Other topics discussed in the book are the relation to higher resolution immersed boundary methods, possible extensions to non-spherical particles and examples of applications of such methods to dispersed multiphase flows.