Perspectives in Fluid Dynamics

Perspectives in Fluid Dynamics PDF Author: G. K. Batchelor
Publisher: Cambridge University Press
ISBN: 9780521531696
Category : Mathematics
Languages : en
Pages : 650

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Book Description
Paperback edition of text on fluid dynamics for graduate students and specialists alike.

Perspectives in Fluid Dynamics

Perspectives in Fluid Dynamics PDF Author: G. K. Batchelor
Publisher: Cambridge University Press
ISBN: 9780521531696
Category : Mathematics
Languages : en
Pages : 650

Get Book

Book Description
Paperback edition of text on fluid dynamics for graduate students and specialists alike.

Perspectives in Flow Control and Optimization

Perspectives in Flow Control and Optimization PDF Author: Max D. Gunzburger
Publisher: SIAM
ISBN: 089871527X
Category : Science
Languages : en
Pages : 273

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Book Description
Introduces several approaches for solving flow control and optimization problems through the use of modern methods.

Energy Transfers in Fluid Flows

Energy Transfers in Fluid Flows PDF Author: Mahendra K. Verma
Publisher: Cambridge University Press
ISBN: 1108226108
Category : Science
Languages : en
Pages : 566

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Book Description
An up-to-date comprehensive text useful for graduate students and academic researchers in the field of energy transfers in fluid flows. The initial part of the text covers discussion on energy transfer formalism in hydrodynamics and the latter part covers applications including passive scalar, buoyancy driven flows, magnetohydrodynamic (MHD), dynamo, rotating flows and compressible flows. Energy transfers among large-scale modes play a critical role in nonlinear instabilities and pattern formation and is discussed comprehensively in the chapter on buoyancy-driven flows. It derives formulae to compute Kolmogorov's energy flux, shell-to-shell energy transfers and locality. The book discusses the concept of energy transfer formalism which helps in calculating anisotropic turbulence.

Fluid Dynamics with a Computational Perspective

Fluid Dynamics with a Computational Perspective PDF Author: Paul A. Durbin
Publisher:
ISBN: 9780511354663
Category : Civil engineering
Languages : en
Pages : 349

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Book Description
This book provides a development of fluid flow theory and how computations are formulated and effected.

New Perspectives in Fluid Dynamics

New Perspectives in Fluid Dynamics PDF Author: Chaoqun Liu
Publisher: BoD – Books on Demand
ISBN: 9535122282
Category : Science
Languages : en
Pages : 136

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Book Description
This book contains five chapters detailing significant advances in and applications of new turbulence theory and fluid dynamics modeling with a focus on wave propagation from arbitrary depths to shallow waters, computational modeling for predicting optical distortions through hypersonic flow fields, wind strokes over highway bridges, optimal crop production in a greenhouse, and technological appliance and performance concerns in wheelchair racing. We hope this book to be a useful resource to scientists and engineers who are interested in the fundamentals and applications of fluid dynamics.

Fluid Dynamics with a Computational Perspective

Fluid Dynamics with a Computational Perspective PDF Author: Durbin Paul a Medic Gorazd
Publisher:
ISBN: 9780511649363
Category : Fluid dynamics
Languages : en
Pages : 363

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Book Description


Modern Fluid Dynamics

Modern Fluid Dynamics PDF Author: Clement Kleinstreuer
Publisher: CRC Press
ISBN: 1351849638
Category : Science
Languages : en
Pages : 494

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Book Description
Modern Fluid Dynamics, Second Edition provides up-to-date coverage of intermediate and advanced fluids topics. The text emphasizes fundamentals and applications, supported by worked examples and case studies. Scale analysis, non-Newtonian fluid flow, surface coating, convection heat transfer, lubrication, fluid-particle dynamics, microfluidics, entropy generation, and fluid-structure interactions are among the topics covered. Part A presents fluids principles, and prepares readers for the applications of fluid dynamics covered in Part B, which includes computer simulations and project writing. A review of the engineering math needed for fluid dynamics is included in an appendix.

The Life and Legacy of G. I. Taylor

The Life and Legacy of G. I. Taylor PDF Author: G. K. Batchelor
Publisher: Cambridge University Press
ISBN: 9780521461214
Category : Biography & Autobiography
Languages : en
Pages : 318

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Book Description
G. I. Taylor was one of the most distinguished physical scientists of the last century, using his deep insight and originality and mathematical skill to increase greatly our understanding of phenomena such as the turbulent flow of fluids. His interest in the science of fluid flow was not confined to theory; he was one of the early pioneers of aeronautics, and designed a new type of anchor, now widely used in small boats throughout the world, that came about through his passion for sailing. Taylor spent most of his working life in the Cavendish Laboratory in Cambridge, where he investigated the mechanics of fluid and solid materials; his discoveries and ideas have had application throughout mechanical, civil and chemical engineering, meteorology, oceanography and material science. He was also a noted research leader, and his group in Cambridge became one of the most productive centres for the study of fluid mechanics. How was Taylor able to be innovative in so many different ways? This interesting and unusual mix of science and biography, first published in 1996, helps us to answer that question.

Perspectives in Flow Control and Optimization

Perspectives in Flow Control and Optimization PDF Author: Max D. Gunzburger
Publisher: SIAM
ISBN: 9780898718720
Category : Fluid dynamics
Languages : en
Pages : 275

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Book Description
Flow control and optimization has been an important part of experimental flow science throughout the last century. As research in computational fluid dynamics (CFD) matured, CFD codes were routinely used for the simulation of fluid flows. Subsequently, mathematicians and engineers began examining the use of CFD algorithms and codes for optimization and control problems for fluid flows. Perspectives in Flow Control and Optimization presents flow control and optimization as a subdiscipline of computational mathematics and computational engineering. It introduces the development and analysis of several approaches for solving flow control and optimization problems through the use of modern CFD and optimization methods. The author discusses many of the issues that arise in the practical implementation of algorithms for flow control and optimization, and provides the reader with a clear idea of what types of flow control and optimization problems can be solved, how to develop effective algorithms for solving such problems, and potential problems in implementing the algorithms. Audience: this book is written for both those new to the field of control and optimization as well as experienced practitioners, including engineers, applied mathematicians, and scientists interested in computational methods for flow control and optimization. Readers with a solid background in calculus and only slight familiarity with partial differential equations should find the book easy to understand. Knowledge of fluid mechanics, computational fluid dynamics, calculus of variations, control theory or optimization is beneficial, but is not essential, to comprehend the bulk of the presentation. Only Chapter 6 requires a substantially higher level of mathematical knowledge, most notably in the areas of functional analysis, numerical analysis, and partial differential equations.

Introduction to Transonic Aerodynamics

Introduction to Transonic Aerodynamics PDF Author: Roelof Vos
Publisher: Springer
ISBN: 9401797471
Category : Technology & Engineering
Languages : en
Pages : 555

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Book Description
Written to teach students the nature of transonic flow and its mathematical foundation, this book offers a much-needed introduction to transonic aerodynamics. The authors present a quantitative and qualitative assessment of subsonic, supersonic and transonic flow around bodies in two and three dimensions. The book reviews the governing equations and explores their applications and limitations as employed in modeling and computational fluid dynamics. Some concepts, such as shock and expansion theory, are examined from a numerical perspective. Others, including shock-boundary-layer interaction, are discussed from a qualitative point of view. The book includes 60 examples and more than 200 practice problems. The authors also offer analytical methods such as Method of Characteristics (MOC) that allow readers to practice with the subject matter. The result is a wealth of insight into transonic flow phenomena and their impact on aircraft design, including compressibility effects, shock and expansion waves, shock-boundary-layer interaction and aeroelasticity.