Drop, Bubble and Particle Dynamics in Complex Fluids

Drop, Bubble and Particle Dynamics in Complex Fluids
Title Drop, Bubble and Particle Dynamics in Complex Fluids PDF eBook
Author Pengtao Yue
Publisher MDPI
Pages 142
Release 2020-03-19
Genre Technology & Engineering
ISBN 3039282964

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The presence of drops, bubbles, and particles affects the behavior and response of complex multiphase fluids. In many applications, these complex fluids have more than one non-Newtonian component, e.g., polymer melts, liquid crystals, and blood plasma. In fact, most fluids exhibit non-Newtonian behaviors, such as yield stress, viscoelastity, viscoplasticity, shear thinning, or shear thickening, under certain flow conditions. Even in the complex fluids composed of Newtonian components, the coupling between different components and the evolution of internal boundaries often lead to a complex rheology. Thus the dynamics of drops, bubbles, and particles in both Newtonian fluids and non-Newtonian fluids are crucial to the understanding of the macroscopic behavior of complex fluids. This Special Issue aims to gather a wide variety of papers that focus on drop, bubble and particle dynamics in complex fluids. Potential topics include, but are not limited to, drop deformation, rising drops, pair-wise drop interactions, drop migration in channel flows, and the interaction of particles with flow systems such as pastes and slurries, glasses, suspensions, and emulsions. We emphasize numerical simulations, but also welcome experimental and theoretical contributions.

Drop, Bubble and Particle Dynamics in Complex Fluids

Drop, Bubble and Particle Dynamics in Complex Fluids
Title Drop, Bubble and Particle Dynamics in Complex Fluids PDF eBook
Author Pengtao Yue
Publisher
Pages 142
Release 2020
Genre Engineering (General). Civil engineering (General)
ISBN 9783039282975

Download Drop, Bubble and Particle Dynamics in Complex Fluids Book in PDF, Epub and Kindle

The presence of drops, bubbles, and particles affects the behavior and response of complex multiphase fluids. In many applications, these complex fluids have more than one non-Newtonian component, e.g., polymer melts, liquid crystals, and blood plasma. In fact, most fluids exhibit non-Newtonian behaviors, such as yield stress, viscoelastity, viscoplasticity, shear thinning, or shear thickening, under certain flow conditions. Even in the complex fluids composed of Newtonian components, the coupling between different components and the evolution of internal boundaries often lead to a complex rheology. Thus the dynamics of drops, bubbles, and particles in both Newtonian fluids and non-Newtonian fluids are crucial to the understanding of the macroscopic behavior of complex fluids. This Special Issue aims to gather a wide variety of papers that focus on drop, bubble and particle dynamics in complex fluids. Potential topics include, but are not limited to, drop deformation, rising drops, pair-wise drop interactions, drop migration in channel flows, and the interaction of particles with flow systems such as pastes and slurries, glasses, suspensions, and emulsions. We emphasize numerical simulations, but also welcome experimental and theoretical contributions.

Particles, Bubbles & Drops

Particles, Bubbles & Drops
Title Particles, Bubbles & Drops PDF eBook
Author Efstathios Michaelides
Publisher World Scientific
Pages 425
Release 2006
Genre Science
ISBN 9812566473

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The field of multiphase flows has grown by leaps and bounds in the last thirty years and is now regarded as a major discipline. Engineering applications, products and processes with particles, bubbles and drops have consistently grown in number and importance. An increasing number of conferences, scientific fora and archived journals are dedicated to the dissemination of information on flow, heat and mass transfer of fluids with particles, bubbles and drops. Numerical computations and "thought experiments" have supplemented most physical experiments and a great deal of the product design and testing processes. The literature on computational fluid dynamics with particles, bubbles and drops has grown at an exponential rate, giving rise to new results, theories and better understanding of the transport processes with particles, bubbles and drops. This book captures and summarizes all these advances in a unified, succinct and pedagogical way. Contents: Fundamental Equations and Characteristics of Particles, Bubbles and Drops; Low Reynolds Number Flows; High Reynolds Number Flows; Non-Spherical Particles, Bubbles and Drops; Effects of Rotation, Shear and Boundaries; Effects of Turbulence; Electro-Kinetic, Thermo-Kinetic and Porosity Effects; Effects of Higher Concentration and Collisions; Molecular and Statistical Modeling; Numerical Methods-CFD. Key Features Summarizes the recent important results in the theory of transport processes of fluids with particles, bubbles and drops Presents the results in a unified and succinct way Contains more than 600 references where an interested reader may find details of the results Makes connections from all theories and results to physical and engineering applications Readership: Researchers, practicing engineers and physicists that deal with any aspects of Multiphase Flows. It will also be of interest to academics and researchers in the general fields of mechanical and chemical engineering.

Fluid Dynamics of Particles, Drops, and Bubbles

Fluid Dynamics of Particles, Drops, and Bubbles
Title Fluid Dynamics of Particles, Drops, and Bubbles PDF eBook
Author Eric Loth
Publisher Cambridge University Press
Pages 574
Release 2023-06-30
Genre Science
ISBN 1009365401

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A modern presentation of multiphase flow, from basic principles to state-of-the-art research. Explains dispersed fluid dynamics for bubbles, drops, or solid particles, incorporating detailed theory, experiments, simulations, and models while considering applications and recent cutting-edge advances. The book demonstrates the importance of multiphase flow in engineering and natural systems, considering particle size distributions, shapes and trajectories as well as deformation of fluid particles and multiphase flow numerical methods. The scope of the book also includes coupling physics between particles and turbulence through dispersion and modulation, and specific phenomena such as gravitational settling and collisions for solid particles, drops and bubbles. Featuring over eighty homework problems for each of the primary chapters, including theory-based and engineering application questions. The comprehensive coverage will give the reader a solid grounding for multiphase flow research and design, applicable to current and future engineering. This is an ideal resource for graduate students, researchers and professionals.

Fluid Dynamics of Particles, Drops, and Bubbles

Fluid Dynamics of Particles, Drops, and Bubbles
Title Fluid Dynamics of Particles, Drops, and Bubbles PDF eBook
Author
Publisher Cambridge University Press
Pages 573
Release
Genre
ISBN 0521814367

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Computational Methods for Complex Liquid-Fluid Interfaces

Computational Methods for Complex Liquid-Fluid Interfaces
Title Computational Methods for Complex Liquid-Fluid Interfaces PDF eBook
Author Mohammad Taeibi Rahni
Publisher CRC Press
Pages 549
Release 2015-11-11
Genre Science
ISBN 1498722091

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Computational Methods for Complex Liquid-Fluid Interfaces highlights key computational challenges involved in the two-way coupling of complex liquid-fluid interfaces. The book covers a variety of cutting-edge experimental and computational techniques ranging from macro- to meso- and microscale approaches (including pivotal applications). As example

Fluid Dynamics and Transport of Droplets and Sprays

Fluid Dynamics and Transport of Droplets and Sprays
Title Fluid Dynamics and Transport of Droplets and Sprays PDF eBook
Author W. A. Sirignano
Publisher Cambridge University Press
Pages 481
Release 2010-01-11
Genre Science
ISBN 0521884896

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This book discusses the theoretical foundations of spray and droplet applications relevant to the technology for active control of sprays applied to new products and applications, improved product performance, cost reductions, and improved environmental outcomes. It also covers theory related to power and propulsion; materials processing and manufacturing technologies including droplet-based net form processing, coating, and painting; medication; pesticides and insecticides; and other consumer uses.