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- Great Introduction for graduate fluid flow
- Excellent Reference Book
- One of the better Fluid Mechanics textbooks
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Viscous Fluid Flow (Mcgraw Hill Series in Mechanical Engineering)
Frank M. White
Manufacturer: McGraw-Hill Science/Engineering/Math
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An Introduction to Fluid Dynamics
ASIN: 0072402318 |
Book Description
Frank White's Viscous Fluid Flow, Third Edition continues to be the market leader in this course area. The text is for a senior graduate level elective in Mechanical Engineering, and has a strong professional and international appeal.
Author Frank White is has a strong reputation in the field, his book is accurate, conceptually strong, and contains excellent problem sets. Many of the problems are new to this third edition; a rarity among senior and graduate level textbooks. The references found in the text have been updated and reflect the most current information available. Users will also be interested to find explanations of, and references to ongoing controversies and trends in this course area.
Topically speaking, the text contains modern information on technological advances, such as Micro- and Nano-technology, Turbulence Modeling, Computational Fluid Dynamics (CFD), and Unsteady Boundary Layers.
Customer Reviews:
Great Introduction for graduate fluid flow.......2003-09-27
Review Source: Graduate Mechanical Engineer, BE Mech. Eng.
Frank White did an excellent job with this book for my level of knowledge anyway. It provided exactly what I wanted:
1. Preliminary concepts section that overviews gives a fairly advanced thermodynamic look at fluid properties and models and boundary conditions. great at stating assumptions of models.
2. Derivation of navier stokes and energy equation along with introduction to non-dimensionalization and explains all the dimensionless numbers involved with viscous flow and heat transfer.
3. Very "follow-able" derivations of many solutions to navier-stokes equations, ie Couette, duct, suction, porous media flows, low Reynolds creep.
4. 100 page of approximate laminar boundary layer model derivations, mostly 2D with introduction to 3D BL's. Still need Schlichting's "Boundary Layer Theory". Would have liked to have more on seperation.
5. The rest of the text goes into the stability of boundary layers, incompressible and compressible turbulent flow, and compressible turbulent boundary layers. I have not gotten this far in the text yet but I'm sure it's well written and technically sound after the reading the first half.
Very well written book for people interested in learning yet expands to fairly technical areas.
Excellent Reference Book.......2000-07-18
This book gives an excellent summary of viscous flow and is a valuable addition to any engineers bookshelf. A good knowledge of fluid mechanic fundamentals is essential to understand the material presented. This book is definitely not for a freshman. The author quickly covers the fundamental equations of fluid motion and then proceeds to discuss the viscous flow and boundary layer theory. Laminar boundary layers, transition, turbulent boundary layers and compressible boundary layers each receive a chapter. Each topic is reviewed and examples are given. The treatment is a little terse, which makes reading the book a tough job. Alot of excellent references are given and I would advise anybody serious about viscous flow to review this material as Whites treatment can be skimpy. The chapter on turbulent flow provides an excellent summary of useful empirical correlations and an introduction to the K-epsilon model. In summary, this is an excellent and reasonably comprehensive reference book(weak on boundary layers in rotating flows), but a poor book to learn from.
One of the better Fluid Mechanics textbooks.......1998-07-16
"Viscous Fluid Flow" is quite thorough and well thought out. I won't go so far as to say that it reads like a novel, but it flows quite nicely. This book is for senior undergraduate or first-year graduates. The topics contained within are quite advanced in comparison to typical undergraduate Fluid Mechanics. The only problem I had with this text is that at times (not often) the hierarchy of the topics would get jumbled. For example, the explanation for a topic might come before the topic was even introduced leading to some confusion. Regardless, this textbook is REQUIRED for the bookshelf of any serious Fluid Dynamicist.
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Basics of Aerothermodynamics
Ernst H. Hirschel
Manufacturer: Springer
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Binding: Hardcover
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ASIN: 3540221328 |
Book Description
The basics of aerothermodynamics are treated in this book with special regard to the fact that outer surfaces of hypersonic vehicles primarily are radiation cooled. The implications of this fact are different for different vehicle classes. In any case the properties of both attached viscous and separated flows are of importance in this regard. After a discussion of flight environment and transport phenomena in general, the most important aerothermodynamic phenomena are treated. Thermal surface effects are particularly considered, taking into account both radiation cooling and/or active cooling, for example of inner surfaces. Finally the simulation means of aerothermodynamics are discussed. Computational methods and their modelling problems as well as the problems of ground facility and flight simulation, including the hot experimental technique, are treated.
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Numerical Computation of Internal and External Flows, Fundamentals of Numerical Discretization (Wiley Series in Numerical Methods in Engineering)
Charles Hirsch
Manufacturer: Wiley
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Numerical Computation of Internal and External Flows, Computational Methods for Inviscid and Viscous Flows (Wiley Series in Numerical Methods in Engineering)
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ASIN: 0471923850 |
Book Description
Numerical Computation of Internal and External Flows Volume 1: Fundamentals of Numerical Discretization C. Hirsch, Vrije Universiteit Brussel, Brussels, Belgium This is the first of two volumes which together describe comprehensively the theory and practice of the numerical computation of internal and external flows. In this volume, the author explains the use of basic computational methods to solve problems in fluid dynamics, comparing these methods so that the reader can see which would be the most appropriate to use for a particular problem. The book is divided into four parts. In the first part, mathematical models are introduced. In the second part, the various numerical methods are described, while in the third and fourth parts the workings of these methods are investigated in some detail. Volume 2 will be concerned with the applications of numerical methods to flow problems, and together the two volumes will provide an excellent reference for practitioners and researchers working in computational fluid mechanics and dynamics. Contents Preface Nomenclature Part 1 The Mathematical Models for Fluid Flow Simulations at Various Levels of Approximation Introduction Chapter 1 The Basic Equations of Fluid Dynamics Chapter 2 The Dynamic Levels of Approximation Chapter 3 The Mathematical Nature of the Flow Equations and their Boundary Conditions Part II Basic Discretization Techniques Chapter 4 The Finite Difference Method Chapter 5 The Finite Element Method Chapter 6 Finite Volume Method and Conservative Discretizations Part III The Analysis of Numerical Schemes Chapter 7 The Concepts of Consistency, Stability and Convergence Chapter 8 The Von Neumann Method for Stability Analysis Chapter 9 The Method of the Equivalent Differential Equation for the Analysis of Stability Chapter 10 The Matrix Method for Stability Analysis Part IV The Resolution of Discretized Equations Chapter 11 Integration Methods for Systems of Ordinary Differential Equations Chapter 12 Iterative Methods for the Resolution of Algebraic Systems Appendix Thomas Algorithm for Tridiagonal Systems Index
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Introduction to Viscous Flow (Series in thermal and fluids engineering)
William F. Hughes
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ASIN: 0070311307 |
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Potential Flows of Viscous and Viscoelastic Liquids (Cambridge Aerospace Series)
Daniel Joseph ,
Toshio Funada , and
Jing Wang
Manufacturer: Cambridge University Press
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ASIN: 0521873371 |
Book Description
The goal of this book is to show how potential flows enter into the general theory of motions of viscous and viscoelastic fluids. Traditionally, the theory of potential flows is thought to apply to idealized fluids without viscosity. Here we show how to apply this theory to real fluids that are viscous. The theory is applied to problems of the motion of bubbles; to the decay of waves on interfaces between fluids; to capillary, Rayleigh-Taylor, and Kelvin-Hemholtz instabilities; to viscous effects in acoustics; to boundary layers on solids at finite Reynolds numbers; to problems of stress-induced cavitation; and to the creation of microstructures in the flow of viscous and viscoelastic liquids.
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Numerical Computation of Internal and External Flows, Computational Methods for Inviscid and Viscous Flows (Wiley Series in Numerical Methods in Engineering)
Charles Hirsch
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ASIN: 0471924520 |
Book Description
Numerical Computation of Internal and External Flows Volume 2: Computational Methods for Inviscid and Viscous Flows C. Hirsch, Vrije Universiteit Brussel, Brussels, Belgium This second volume deals with the applications of computational methods to the problems of fluid dynamics. It complements the first volume to provide an excellent reference source in this vital and fast growing area. The author includes material on the numerical computation of potential flows and on the most up-to-date methods for Euler and Navier-Stokes equations. The coverage is comprehensive and includes detailed discussion of numerical techniques and algorithms, including implementation topics such as boundary conditions. Problems are given at the end of each chapter and there are comprehensive reference lists. Of increasing interest, the subject has powerful implications in such crucial fields as aeronautics and industrial fluid dynamics. Striking a balance between theory and application, the combined volumes will be useful for an increasing number of courses, as well as to practitioners and researchers in computational fluid dynamics. Contents Preface Nomenclature Part V: The Numerical Computation of Potential Flows Chapter 13 The Mathematical Formulations of the Potential Flow Model Chapter 14 The Discretization of the Subsonic Potential Equation Chapter 15 The Computation of Stationary Transonic Potential Flows Part VI: The Numerical Solution of the System of Euler Equations Chapter 16 The Mathematical Formulation of the System of Euler Equations Chapter 17 The Lax - Wendroff Family of Space-centred Schemes Chapter 18 The Central Schemes with Independent Time Integration Chapter 19 The Treatment of Boundary Conditions Chapter 20 Upwind Schemes for the Euler Equations Chapter 21 Second-order Upwind and High-resolution Schemes Part VII: The Numerical Solution of the Navier-Stokes Equations Chapter 22 The Properties of the System of Navier-Stokes Equations Chapter 23 Discretization Methods for the Navier-Stokes Equations Index
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Spectral Methods for Incompressible Viscous Flow
Roger Peyret
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ASIN: 0387952217 |
Book Description
This well-written book explains the theory of spectral methods and their application to the computation of viscous incompressible fluid flows in clear and elementary terms. It begins with an introduction to the fundamentals of spectral methods and then moves on to cover, in particular, the Fourier and Chebyshev methods. Examples are included. Chapters 6 and 7 handle streamfunction-vorticity and velocity-pressure fomulations of the Navier-Stokes equations. Chapter 8 and 9 address special topics such as self- adaptive coordinate transform, treatment of singularities, and domain decomposition. The work will be useful to those teaching in the field at the graduate level, as well as to researchers working in the area.
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Viscous Flow (Mcgraw Hill Series in Mechanical Engineering)
Frederick S. Sherman
Manufacturer: Mcgraw-Hill College
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Vectors, Tensors and the Basic Equations of Fluid Mechanics (Dover Books on Engineering)
ASIN: 0070565791 |
Book Description
This text is intended to support the first year of study of viscous flow as a specialized branch of fluid mechanics. It deals mostly with flows of a fluid with constant viscosity and density. The first eight chapters present necessary conceptual and analytical fundamentals. Because the mathematical tools may not already be familiar to all students, the pace of the development is gentle. Analytical procedures are explained and fully illustrated, and most derivations are presented in complete detail. The concept of vorticity, and methods to make use of it, are strongly emphasized. Two chapters are devoted to exact analytic or numerical solutions of net Navier-Stokes equations. It is assumed that modern students of fluid mechanics will need to understand the potentialities, methods, and pitfalls of computational analysis. This need is addressed by careful description of a few simple algorithms, which are then illustrated in problems of growing complexity. Carefully debugged Fortran listings for many of the calculations appear in an appendix. Four final chapters deal at some length with creeping flow, laminar boundary layers, hydrodynamic instability, and turbulent flow. They all include some classic and then attempt to bring the subject quite up to date. In some cases, little more is done than to open a door, through which the student may enter into a personal exploration of ongoing research.material,
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Viscous Flow (Cambridge Texts in Applied Mathematics)
H. Ockendon , and
J. R. Ockendon
Manufacturer: Cambridge University Press
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Viscous flow crops up in many real-life situations such as aerodynamics and lubrication, and because of its universality it is a paradigm for the application of mathematics to the real world. This book is a coherent account of the ways in which mathematics can both give insight into viscous flow and suggest analogies and implications for other branches of applied mathematics. The authors place particular emphasis on the unification brought about by the use of asymptotic analysis and scaling properties and the use of everyday observations from the real world (especially industry) to illustrate the theory. The book is aimed at final-year undergraduate and beginning graduate students in applied mathematics, physics, and engineering courses on fluid flow.
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Viscous hypersonic flow: Theory of reacting and hypersonic boundary layers (McGraw-Hill series in missile and space technology)
William H Dorrance
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ASIN: B0007DWRZQ |
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