elementary-fluid-dynamics

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Elementary Fluid Dynamics

Author : D. J. Acheson
ISBN : 9780198596790
Genre : Mathematics
File Size : 40. 79 MB
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This textbook provides a clear and concise introduction to both theory and application of fluid dynamics, suitable for all undergraduates coming to the subject for the first time. It has a wide scope, with frequent references to experiments, and numerous exercises illustrating the main ideas.

Elementary Fluid Dynamics

Author : D. J. Acheson
ISBN : OCLC:37350565
Genre :
File Size : 88. 24 MB
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Elementary Fluid Dynamics

Author : D. J. Acheson
ISBN : OCLC:37350565
Genre :
File Size : 66. 49 MB
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Solutions Manual Elementary Fluid Mechanics

Author : Robert L. Street
ISBN : OCLC:233702098
Genre : Fluid mechanics
File Size : 31. 67 MB
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Continuum Mechanics Linear Elastodynamics And Waves; Elementary Fluid Dynamics; Thermoelasticity; Nonlinear Elasticity And Its Role In Continuum Theories; Fundamental Applications Solid Mechanics; Applications To Fluid Mechanics Water Wave Propagation

Author :
ISBN : 1848268238
Genre : Continuum mechanics
File Size : 78. 9 MB
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Lectures On Geophysical Fluid Dynamics

Author : Rick Salmon
ISBN : 9780195108088
Genre : Science
File Size : 20. 19 MB
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Lectures on Geophysical Fluid Dynamics offers an introduction to several topics in theoretical geophysical fluid dynamics, including the theory of large-scale ocean circulation, geostrophic turbulence, and Hamiltonian fluid dynamics. The book is based on an introductory course in dynamical oceanography offered to first-year graduate students at Scripps Institution of Oceanography. Each chapter is a self-contained introduction ti its particular subject, and makes few specific references to other chapters. Chapters 1 examines the relationship between the molecular and continuum models of the fluid, and between the Eulerian and Lagrangian descriptions of the latter. Ch.2 is a broad introduction to the fluid dynamics of rotating, stratified flows. Ch.3 adddresses large-scale ocean circulation. Chs.4,5 and 6 discuss the theory of turbulence, including elementary ideas based on vorticity laws (Ch.4), statistical turbulence theory (Ch.5), and the applications of these ideas to quasigeostrophic flows in the Earth's oceans and atmosphere (Ch.6). Ch.7 surveys Hamiltonoian fluid dynamics, including the interaction between waves and currents, and "balanced" approximations to nearly geostrophic flow. Overall, the emphasis is on physical ideas rather than mathematical techniques. Readers are assumed to have had an elementary introduction to fluid mechanics, to know advanced calculus through partial differential equations, and to be familiar with the elementary ideas about linear waves, including the concept of group velocity.

Computational Fluid Dynamics

Author : T. J. Chung
ISBN : 0521594162
Genre : Juvenile Nonfiction
File Size : 55. 65 MB
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An authoritative text covering elementary concepts to state-of-the-art techniques in computational fluid dynamics.

Munson Young And Okiishi S Fundamentals Of Fluid Mechanics

Author : Philip M. Gerhart
ISBN : 9781119080701
Genre : Science
File Size : 35. 5 MB
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NOTE: The Binder-ready, Loose-leaf version of this text contains the same content as the Bound, Paperback version. Fundamentals of Fluid Mechanic, 8th Edition offers comprehensive topical coverage, with varied examples and problems, application of visual component of fluid mechanics, and strong focus on effective learning. The text enables the gradual development of confidence in problem solving. The authors have designed their presentation to enable the gradual development of reader confidence in problem solving. Each important concept is introduced in easy-to-understand terms before more complicated examples are discussed. Continuing this book's tradition of extensive real-world applications, the 8th edition includes more Fluid in the News case study boxes in each chapter, new problem types, an increased number of real-world photos, and additional videos to augment the text material and help generate student interest in the topic. Example problems have been updated and numerous new photographs, figures, and graphs have been included. In addition, there are more videos designed to aid and enhance comprehension, support visualization skill building and engage students more deeply with the material and concepts.

Introduction To Hydrodynamic Stability

Author : P. G. Drazin
ISBN : 0521009650
Genre : Science
File Size : 61. 19 MB
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Elementary Fluid Mechanics

Author : John King Vennard
ISBN : UOM:39015002059767
Genre : Fluid mechanics
File Size : 75. 81 MB
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The Theory Of Rotating Fluids

Author : Harvey Philip Greenspan
ISBN : 0521051479
Genre : Mathematics
File Size : 82. 17 MB
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A Mathematical Introduction To Fluid Mechanics

Author : Alexandre J. Chorin
ISBN : 9781468403640
Genre : Mathematics
File Size : 78. 89 MB
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Mathematical Introduction to Fluid Mechanics presents some selected highlights of currently interesting topics in fluid mechanics in a compact form, as well as providing a concise and appealing exposition of the basic theory of fluid mechanics. The first chapter contains an elementary derivation of the equations, and the concept of vorticity is introduced. The second chapter contains a discussion of potential flow, vortex motion, and boundary layers. A construction of boundary layers using vortex sheets and random walks is presented. Chapter 3 contains an analysis of one-dimensional gas flow from a mildly modern point of view. Weak solution, Riemann problems, Glimm's scheme, and combustion waves are covered.

Principles Of Computational Fluid Dynamics

Author : Pieter Wesseling
ISBN : 9783642051456
Genre : Mathematics
File Size : 78. 87 MB
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This up-to-date book gives an account of the present state of the art of numerical methods employed in computational fluid dynamics. The underlying numerical principles are treated in some detail, using elementary methods. The author gives many pointers to the current literature, facilitating further study. This book will become the standard reference for CFD for the next 20 years.

Mechanics Of Swimming And Flying

Author : Stephen Childress
ISBN : 0521280710
Genre : Mathematics
File Size : 42. 95 MB
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Provides a summary of the fluid dynamics of the locomotion of living organisms. Describes biological phenomena in detail from the swimming of bacteria and fish to the flying of insects and birds.

Elementary Theoretical Fluid Mechanics

Author : Karl Brenkert
ISBN : UOM:39015000992977
Genre : Fluid mechanics
File Size : 78. 79 MB
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Lagrangian Fluid Dynamics

Author : Andrew Bennett
ISBN : 9780521853101
Genre : Mathematics
File Size : 51. 63 MB
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This 2006 book provides a detailed and comprehensive analytical development of the Lagrangian formulation of fluid dynamics.

Turbulence

Author : Peter Alan Davidson
ISBN : 9780198529491
Genre : Art
File Size : 73. 54 MB
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This text focuses on the fundamental nature of turbulence, bridging the gap between the elementary accounts of turbulence found in undergraduate texts and the more rigorous accounts given in advanced monographs.

Fluidization Dynamics

Author : L.G. Gibilaro
ISBN : 0080506631
Genre : Science
File Size : 29. 90 MB
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Fluidization Dynamics has been written for students and engineers who find themselves involved with problems concerning the fluidized state. It presents an analysis that focuses directly on the problem of predicting the fluid dynamic behaviour of a proposed fluidized system for which empirical data is limited or unavailable. The second objective is to provide a treatment of fluidization dynamics that is readily accessible to the non-specialist. The linear approach adopted in this book, starting with the formulation of predictive expressions for the basic forces that act on a fluidized particle, offers a clear way into the theory. The incorporation of the force terms into the conservation equations for mass and momentum and subsequent applications are presented in a manner that requires only the haziest recollection of elementary fluid-dynamics theory. The analyses presented in this book represent a body of research that has appeared in numerous publications over the last 20 years. L.G. Gibilaro has taken the opportunity to reorder much of the material in the light of subsequent knowledge, to correct minor errors and inconsistencies and to add detail and clarification where necessary. This material helps to form the basis for university course modules in engineering and applied science at undergraduate and graduate level, as well as focused, post-experienced courses for the process, and allied industries. · Bridges the gulf between observed behaviour and fluid-dynamic theory · Clear account of basic theory of fluidization · Accessible treatment of fluidization analysis

Numerical Heat Transfer And Fluid Flow

Author : Suhas Patankar
ISBN : 0891165223
Genre : Science
File Size : 54. 60 MB
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This book focuses on heat and mass transfer, fluid flow, chemical reaction, and other related processes that occur in engineering equipment, the natural environment, and living organisms. Using simple algebra and elementary calculus, the author develops numerical methods for predicting these processes mainly based on physical considerations. Through this approach, readers will develop a deeper understanding of the underlying physical aspects of heat transfer and fluid flow as well as improve their ability to analyze and interpret computed results.

A First Course In Turbulence

Author : Hendrik Tennekes
ISBN : 9780262536301
Genre : Dimensional analysis
File Size : 43. 8 MB
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This is the first book specifically designed to offer the student a smooth transitionary course between elementary fluid dynamics (which gives only last-minute attention to turbulence) and the professional literature on turbulent flow, where an advanced viewpoint is assumed. The subject of turbulence, the most forbidding in fluid dynamics, has usually proved treacherous to the beginner, caught in the whirls and eddies of its nonlinearities and statistical imponderables. This is the first book specifically designed to offer the student a smooth transitionary course between elementary fluid dynamics (which gives only last-minute attention to turbulence) and the professional literature on turbulent flow, where an advanced viewpoint is assumed. Moreover, the text has been developed for students, engineers, and scientists with different technical backgrounds and interests. Almost all flows, natural and man-made, are turbulent. Thus the subject is the concern of geophysical and environmental scientists (in dealing with atmospheric jet streams, ocean currents, and the flow of rivers, for example), of astrophysicists (in studying the photospheres of the sun and stars or mapping gaseous nebulae), and of engineers (in calculating pipe flows, jets, or wakes). Many such examples are discussed in the book. The approach taken avoids the difficulties of advanced mathematical development on the one side and the morass of experimental detail and empirical data on the other. As a result of following its midstream course, the text gives the student a physical understanding of the subject and deepens his intuitive insight into those problems that cannot now be rigorously solved. In particular, dimensional analysis is used extensively in dealing with those problems whose exact solution is mathematically elusive. Dimensional reasoning, scale arguments, and similarity rules are introduced at the beginning and are applied throughout. A discussion of Reynolds stress and the kinetic theory of gases provides the contrast needed to put mixing-length theory into proper perspective: the authors present a thorough comparison between the mixing-length models and dimensional analysis of shear flows. This is followed by an extensive treatment of vorticity dynamics, including vortex stretching and vorticity budgets. Two chapters are devoted to boundary-free shear flows and well-bounded turbulent shear flows. The examples presented include wakes, jets, shear layers, thermal plumes, atmospheric boundary layers, pipe and channel flow, and boundary layers in pressure gradients. The spatial structure of turbulent flow has been the subject of analysis in the book up to this point, at which a compact but thorough introduction to statistical methods is given. This prepares the reader to understand the stochastic and spectral structure of turbulence. The remainder of the book consists of applications of the statistical approach to the study of turbulent transport (including diffusion and mixing) and turbulent spectra.

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