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Complex Short-time and Small-scale Behavior of Fluid Interfaces

Complex Short-time and Small-scale Behavior of Fluid Interfaces
Author: Hans C. Mayer
Publisher:
Total Pages: 452
Release: 2016
Genre:
ISBN: 9781339671147

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In this work, several case studies involving complex short-time and small-scale behavior of fluid interfaces are presented. The case studies themselves are essentially unique -- involving various forces and effects (mechanical, chemical, electromagnetic, and thermal), and requiring different experimental techniques in order to elucidate the nature of the phenomena and to address the open questions. Some of the phenomena we explore are familiar to most individuals, for example spilling coffee while walking, the formation of a splash due to the impact of a solid object on a liquid surface, or the bursting of soap films. Others are not, like the behavior of coating flows, or the seemingly self-sustained behavior of micro-scale droplet formation using surfactant gradients. But all share intriguing questions, and interesting answers. This tour through a variety of interfacial phenomena has at its purpose, the goal of answering important open questions. The answers serve to verify existing theoretical predictions, resolve disputes between competing theories, and reveal the nature of previously reported behaviors.


Particles at Fluid Interfaces

Particles at Fluid Interfaces
Author: Erica Wanless
Publisher: Frontiers Media SA
Total Pages: 197
Release: 2019-05-09
Genre:
ISBN: 2889458083

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Particles at Fluid Interfaces encompasses the processes and formulations that involve the stabilisation of fluid interfaces by adsorbed particles. The prevalence of these multiphase materials underpins their use in a broad range of industries from personal care and food technology to oil and mineral processing. The stabilisation conferred by the adsorbed particles can be transient as found in froth flotation or long-lived as occurs within Pickering Emulsions. The particles can range in size from nanoparticles to millimetre-sized particles, and cover a spectrum from collapsed proteins, polymeric colloids of controlled size and shape to high dispersity mineral particles.


Computer Simulations in Condensed Matter: From Materials to Chemical Biology. Volume 2

Computer Simulations in Condensed Matter: From Materials to Chemical Biology. Volume 2
Author: Mauro Ferrario
Publisher: Springer
Total Pages: 608
Release: 2007-04-16
Genre: Science
ISBN: 3540352848

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This extensive and comprehensive collection of lectures by world-leading experts in the field introduces and reviews all relevant computer simulation methods and their applications in condensed matter systems. Volume 2 offers surveys on numerical experiments carried out for a great number of systems, ranging from materials sciences to chemical biology, including supercooled liquids, spin glasses, colloids, polymers, liquid crystals, biological membranes and folding proteins.


Computational Methods for Complex Liquid-Fluid Interfaces

Computational Methods for Complex Liquid-Fluid Interfaces
Author: Mohammad Taeibi Rahni
Publisher: CRC Press
Total Pages: 0
Release: 2015-11-02
Genre: Science
ISBN: 9781498722087

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Fluid interfaces are omnipresent in modern technologies, and their quantitative characterization is essential for their optimum use. Processes like emulsification, foaming or coating require the understanding of very dynamic properties. The enormous progress made recently by various types of simulations provides new opportunities for a much better foundation of highly dynamic experimental methods. This book is dedicated to present the state of the art of experimental methodologies and the numerous simulation techniques required for the quantification of many interfacial parameters.


Fluid Interfaces

Fluid Interfaces
Author: Eduardo Guzmán
Publisher: MDPI
Total Pages: 232
Release: 2021-03-02
Genre: Science
ISBN: 3039436333

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Fluid interfaces are promising candidates for confining different types of materials, e.g., polymers, surfactants, colloids, and even small molecules, to be used in designing new functional materials with reduced dimensionality. The development of such materials requires a deepening of the physicochemical bases underlying the formation of layers at fluid interfaces as well as on the characterization of their structures and properties. This is of particular importance because the constraints associated with the assembly of materials at the interface lead to the emergence of equilibrium and features of dynamics in the interfacial systems, which are far removed from those conventionally found in traditional materials. This Special Issue is devoted to studies on the fundamental and applied aspects of fluid interfaces, and attempts to provide a comprehensive perspective on the current status of the research field.


Drop, Bubble and Particle Dynamics in Complex Fluids

Drop, Bubble and Particle Dynamics in Complex Fluids
Author: Pengtao Yue
Publisher: MDPI
Total 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.


Anisotropic Particle Assemblies

Anisotropic Particle Assemblies
Author: Ning Wu
Publisher: Elsevier
Total Pages: 368
Release: 2018-07-12
Genre: Technology & Engineering
ISBN: 0128041099

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Anisotropic Particle Assemblies: Synthesis, Assembly, Modeling, and Applications covers the synthesis, assembly, modeling, and applications of various types of anisotropic particles. Topics such as chemical synthesis and scalable fabrication of colloidal molecules, molecular mimetic self-assembly, directed assembly under external fields, theoretical and numerical multi-scale modeling, anisotropic materials with novel interfacial properties, and the applications of these topics in renewable energy, intelligent micro-machines, and biomedical fields are discussed in depth. Contributors to this book are internationally known experts who have been actively studying each of these subfields for many years.This book is an invaluable reference for researchers and chemical engineers who are working at the intersection of physics, chemistry, chemical engineering, and materials science and engineering. It educates students, trains the next generation of researchers, and stimulates continuous development in this rapidly emerging area for new materials and innovative technologies. Provides comprehensive coverage on new developments in anisotropic particles Features chapters written by emerging and leading experts in each of the subfields Contains information that will appeal to a broad spectrum of professionals, including but not limited to chemical engineers, chemists, physicists, and materials scientists and engineers Serves as both a reference book for researchers and a textbook for graduate students


Mesoscale Modeling in Chemical Engineering Part II

Mesoscale Modeling in Chemical Engineering Part II
Author:
Publisher: Academic Press
Total Pages: 422
Release: 2016-02-16
Genre: Technology & Engineering
ISBN: 0128039310

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Mesoscale Modeling in Chemical Engineering, a volume in the Advances in Chemical Engineering series provides the reader with personal views of authorities in the field. Subjects covered are not limited to the classical chemical engineering disciplines, with contributions connecting chemical engineering to related scientific fields, thus providing new ideas for additional thought. The book balances well developed areas such as process industry, transformation of materials, energy, and environmental issues with areas where applications of chemical engineering are more recent or emerging. Contains reviews by leading authorities in the respective areas Presents Up-to-date reviews of latest techniques in modeling of catalytic processes Includes a mix of US and European authors, as well as academic/industrial/research institute perspectives Contains the critical connections between computation and experimental methods


Interface Problems and Methods in Biological and Physical Flows

Interface Problems and Methods in Biological and Physical Flows
Author: Boo Cheong Khoo
Publisher: World Scientific
Total Pages: 184
Release: 2009
Genre: Science
ISBN: 9812837841

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This volume showcases lecture notes collected from tutorials presented at the Workshop on Moving Interface Problems and Applications in Fluid Dynamics that was held between January 8 and March 31, 2007 at the Institute for Mathematical Sciences, National University of Singapore. As part of the program, these tutorials were conducted by specialists within their respective areas such as Robert Dillon, Zhilin Li, John Lowengrub, Frank Lu and Gretar Tryggvason.The topics in the program encompass modeling and simulations of biological flow coupled to deformable tissue/elastic structure, shock wave and bubble dynamics and various applications like biological treatments with experimental verification, multi-medium flow or multiphase flow and various applications including cavitation/supercavitation, detonation problems, Newtonian and non-Newtonian fluid, and many other areas.This volume stand to benefit graduate students and researchers keen in the field of interfacial flows for application to physical and biological systems. Even beginners will find this volume a very useful starting point with many relevant references applicable.