Free Liquid Jets And Films
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Author | : Alexander L. Yarin |
Publisher | : Chapman & Hall/CRC |
Total Pages | : 472 |
Release | : 1993 |
Genre | : Mathematics |
ISBN | : |
An examination of the hydrodynamics of free liquid jets and the films of viscous and rheologically complex (in particular, polymeric) liquids. Offering a unique and comprehensive coverage of an important topic, this volume will be invaluable for all those involved in applied mathematics, computational fluid mechanics, hydrodynamics, rheology, applied physics, as well as chemical and mechanical engineering.
Author | : KEVIN RICHARD JOHN ELLWOOD |
Publisher | : |
Total Pages | : 404 |
Release | : 1991 |
Genre | : |
ISBN | : |
The underlying objective of this thesis is to study the process of coating by jet atomization, whose mechanism is divided into the mechanics and stability of liquid jets and the dynamics of thin films.
Author | : Nasser Ashgriz |
Publisher | : Springer Science & Business Media |
Total Pages | : 922 |
Release | : 2011-02-18 |
Genre | : Technology & Engineering |
ISBN | : 1441972641 |
Atomization and sprays are used in a wide range of industries: mechanical, chemical, aerospace, and civil engineering; material science and metallurgy; food; pharmaceutical, forestry, environmental protection; medicine; agriculture; meteorology and others. Some specific applications are spray combustion in furnaces, gas turbines and rockets, spray drying and cooling, air conditioning, powdered metallurgy, spray painting and coating, inhalation therapy, and many others. The Handbook of Atomization and Sprays will bring together the fundamental and applied material from all fields into one comprehensive source. Subject areas included in the reference are droplets, theoretical models and numerical simulations, phase Doppler particle analysis, applications, devices and more.
Author | : Stanley Middleman |
Publisher | : Academic Press |
Total Pages | : 319 |
Release | : 1995-08-14 |
Genre | : Technology & Engineering |
ISBN | : 0080536638 |
This concise book is intended to fulfill two purposes: to provide an important supplement to classic texts by carrying fluid dynamics students on into the realm of free boundary flows; and to demonstrate the art of mathematical modeling based on knowledge, intuition, and observation. In the authors words, the overall goal is make the complex simple, without losing the essence--the virtue--of the complexity. Modeling Axisymmetric Flows: Dynamics of Films, Jets, and Drops is the first book to cover the topics of axisymmetric laminar flows; free-boundary flows; and dynamics of drops, jets, and films. The text also features comparisons of models to experiments, and it includes a large selection of problems at the end of each chapter. Contains problems at the end of each chapter Compares real-world experimental data to theory Provides one of the first comprehensive examinations of axisymmetric laminar flows, free-boundary flows, and dynamics of drops, jets, and films Includes development of basic equations Written in a style suitable for use as a textbook
Author | : Alexander L. Yarin |
Publisher | : Cambridge University Press |
Total Pages | : 457 |
Release | : 2014-05-08 |
Genre | : Technology & Engineering |
ISBN | : 1139917234 |
A comprehensive exposition of micro and nanofiber forming, this text provides a unified framework of all these processes (melt and solution blowing, electrospinning, and so on) and describes their foundations, development and applications. It provides an up-to-date, in-depth physical and mathematical treatment, and discusses a wide variety of applications in different fields, including nonwovens, energy, healthcare and the military. It further highlights the challenges and outstanding issues from an interdisciplinary perspective of science and technology, incorporating both fundamentals and applications. Ideal for researchers, engineers and graduate students interested in the formation of micro and nanofibers and their use in functional smart materials.
Author | : Jet Propulsion Laboratory (U.S.) |
Publisher | : |
Total Pages | : 24 |
Release | : 1964 |
Genre | : Jet propulsion |
ISBN | : |
Author | : Alexander L. Yarin |
Publisher | : Cambridge University Press |
Total Pages | : 629 |
Release | : 2017-06-15 |
Genre | : Science |
ISBN | : 1107147905 |
A unique and in-depth discussion uncovering the unifying features of collision phenomena in liquids and solids, along with applications.
Author | : S. P. Lin |
Publisher | : Cambridge University Press |
Total Pages | : 287 |
Release | : 2003-08-21 |
Genre | : Technology & Engineering |
ISBN | : 1139439782 |
This book, first published in 2003, is an exposition of what we knew about the physics underlying the onset of instability in liquid sheets and jets. Wave motion and breakup phenomena subsequent to the onset of instability are carefully explained. Physical concepts are established through rigorous mathematics, accurate numerical analyses and comparison of theory with experiment. Exercises are provided for students, and these help familiarize the reader with the required mathematical tools. This book further provides a rational basis for designing equipment and processes involving the phenomena of sheet and jet breakup. Researchers interested in transition to turbulence, hydrodynamic stability or combustion will find this book a highly useful resource, whether their background lies in engineering, physics, chemistry, biology, medicine or applied mathematics.
Author | : Helmut Neunzert |
Publisher | : Springer |
Total Pages | : 440 |
Release | : 2015-11-01 |
Genre | : Mathematics |
ISBN | : 3662482584 |
This book offers an insider's view of how industrial problems are translated into mathematics and how solving the mathematics leads to convincing industrial solutions as well. In 6 technical chapters, a wide range of industrial problems is modeled, simulated, and optimized; 4 others describe the modeling, computing, optimization, and data analysis concepts shaping the work of the Fraunhofer ITWM. Each technical chapter illustrates how the relevant mathematics has been adapted or extended for the specific application and details the underlying practical problem and resulting software. The final chapter shows how the use of mathematical modeling in the classroom can change the image of this subject, making it exciting and fun.
Author | : A. K. Haghi |
Publisher | : CRC Press |
Total Pages | : 390 |
Release | : 2017-12-22 |
Genre | : Mathematics |
ISBN | : 177188567X |
Understanding mathematical modeling is fundamental in chemical engineering. This book reviews, introduces, and develops the mathematical models that are most frequently encountered in sophisticated chemical engineering domains. The volume provides a collection of models illustrating the power and richness of the mathematical sciences in supplying insight into the operation of important real-world systems. It fills a gap within modeling texts, focusing on applications across a broad range of disciplines. The first part of the book discusses the general components of the modeling process and highlights the potential of modeling in the production of nanofibers. These chapters discuss the general components of the modeling process and the evolutionary nature of successful model building in the electrospinning process. Electrospinning is the most versatile technique for the preparation of continuous nanofibers obtained from numerous materials. This section of book summarizes the state-of-the art in electrospinning as well as updates on theoretical aspects and applications. Part 2 of the book presents a selection of special topics on issues in applied chemistry and chemical engineering, including nanocomposite coating processes by electrocodeposition method, entropic factors conformational interactions, and the application of artificial neural network and meta-heuristic algorithms. This volume covers a wide range of topics in mathematical modeling, computational science, and applied mathematics. It presents a wealth of new results in the development of modeling theories and methods, advancing diverse areas of applications and promoting interdisciplinary interactions between mathematicians, scientists, engineers and representatives from other disciplines.