Fluid Flow Phenomena

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Fluid Flow Phenomena

Author : Paolo Orlandi
Publisher : Springer Science & Business Media
Page : 369 pages
File Size : 50,9 Mb
Release : 2012-12-06
Category : Science
ISBN : 9789401142816

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Fluid Flow Phenomena by Paolo Orlandi Pdf

This book deals with the simulation of the incompressible Navier-Stokes equations for laminar and turbulent flows. The book is limited to explaining and employing the finite difference method. It furnishes a large number of source codes which permit to play with the Navier-Stokes equations and to understand the complex physics related to fluid mechanics. Numerical simulations are useful tools to understand the complexity of the flows, which often is difficult to derive from laboratory experiments. This book, then, can be very useful to scholars doing laboratory experiments, since they often do not have extra time to study the large variety of numerical methods; furthermore they cannot spend more time in transferring one of the methods into a computer language. By means of numerical simulations, for example, insights into the vorticity field can be obtained which are difficult to obtain by measurements. This book can be used by graduate as well as undergraduate students while reading books on theoretical fluid mechanics; it teaches how to simulate the dynamics of flow fields on personal computers. This will provide a better way of understanding the theory. Two chapters on Large Eddy Simulations have been included, since this is a methodology that in the near future will allow more universal turbulence models for practical applications. The direct simulation of the Navier-Stokes equations (DNS) is simple by finite-differences, that are satisfactory to reproduce the dynamics of turbulent flows. A large part of the book is devoted to the study of homogeneous and wall turbulent flows. In the second chapter the elementary concept of finite difference is given to solve parabolic and elliptical partial differential equations. In successive chapters the 1D, 2D, and 3D Navier-Stokes equations are solved in Cartesian and cylindrical coordinates. Finally, Large Eddy Simulations are performed to check the importance of the subgrid scale models. Results for turbulent and laminar flows are discussed, with particular emphasis on vortex dynamics. This volume will be of interest to graduate students and researchers wanting to compare experiments and numerical simulations, and to workers in the mechanical and aeronautic industries.

Fluid Flow Phenomena

Author : Paolo Orlandi
Publisher : Springer Science & Business Media
Page : 378 pages
File Size : 41,9 Mb
Release : 2000
Category : Mathematics
ISBN : 0792360958

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Fluid Flow Phenomena by Paolo Orlandi Pdf

Dealing with the simulation of the incompressible Navier-Stokes equations for laminar and turbulent flows, this work permits the reader to play with the Navier-Stokes equations and to understand the complex physics related to fluid mechanics. Numerical simulations are useful tools for understanding the complexity of the flows, which often is difficult to derive from laboratory experiments. This book, then, can be very useful to scholars doing laboratory experiments, since they often do not have extra time to study the large variety of numerical methods; furthermore they cannot spend more time in transferring one of the methods into a computer language. By means of numerical simulations, for example, insights into the vorticity field can be obtained which are difficult to obtain by measurements. This book can be used by graduate as well as undergraduate students while reading books on theoretical fluid mechanics; it teaches how to simulate the dynamics of flow fields on personal computers. This will provide a better way of understanding the theory.

Fluid Flow Phenomena

Author : Paolo Orlandi
Publisher : Springer
Page : 356 pages
File Size : 44,7 Mb
Release : 2012-02-25
Category : Science
ISBN : 9401142823

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Fluid Flow Phenomena by Paolo Orlandi Pdf

This book deals with the simulation of the incompressible Navier-Stokes equations for laminar and turbulent flows. The book is limited to explaining and employing the finite difference method. It furnishes a large number of source codes which permit to play with the Navier-Stokes equations and to understand the complex physics related to fluid mechanics. Numerical simulations are useful tools to understand the complexity of the flows, which often is difficult to derive from laboratory experiments. This book, then, can be very useful to scholars doing laboratory experiments, since they often do not have extra time to study the large variety of numerical methods; furthermore they cannot spend more time in transferring one of the methods into a computer language. By means of numerical simulations, for example, insights into the vorticity field can be obtained which are difficult to obtain by measurements. This book can be used by graduate as well as undergraduate students while reading books on theoretical fluid mechanics; it teaches how to simulate the dynamics of flow fields on personal computers. This will provide a better way of understanding the theory. Two chapters on Large Eddy Simulations have been included, since this is a methodology that in the near future will allow more universal turbulence models for practical applications. The direct simulation of the Navier-Stokes equations (DNS) is simple by finite-differences, that are satisfactory to reproduce the dynamics of turbulent flows. A large part of the book is devoted to the study of homogeneous and wall turbulent flows. In the second chapter the elementary concept of finite difference is given to solve parabolic and elliptical partial differential equations. In successive chapters the 1D, 2D, and 3D Navier-Stokes equations are solved in Cartesian and cylindrical coordinates. Finally, Large Eddy Simulations are performed to check the importance of the subgrid scale models. Results for turbulent and laminar flows are discussed, with particular emphasis on vortex dynamics. This volume will be of interest to graduate students and researchers wanting to compare experiments and numerical simulations, and to workers in the mechanical and aeronautic industries.

Fluid Flow Phenomena

Author : Paolo Orlandi
Publisher : Unknown
Page : 0 pages
File Size : 52,9 Mb
Release : 2000
Category : Fluid dynamics
ISBN : OCLC:1345565684

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Fluid Flow Phenomena by Paolo Orlandi Pdf

Flow Phenomena in Nature: A challenge to engineering design

Author : Roland Liebe
Publisher : WIT Press
Page : 418 pages
File Size : 43,8 Mb
Release : 2007
Category : Science
ISBN : 9781845640019

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Flow Phenomena in Nature: A challenge to engineering design by Roland Liebe Pdf

Do we have an adequate understanding of fluid dynamics phenomena in nature and evolution, and what physical models do we need? What can we learn from nature to stimulate innovations in thinking as well as in engineering applications? Concentrating on flight and propulsion, this unique and accessible book compares fluid dynamics solutions in nature with those in engineering. The respected international contributors present up-to-date research in an easy to understand manner, giving common viewpoints from fields such as zoology, engineering, biology, fluid mechanics and physics. Contents: Introduction to Fluid Dynamics; Swimming and Flying in Nature; Generation of Forces in Fluids - Current Understanding; The Finite, Natural Vortex in Steady and Unsteady Fluid Dynamics - New Modelling; Applications in Engineering with Inspirations From Nature; Modern Experimental and Numerical Methods in Fluid Dynamics.

Asymptotic Modelling of Fluid Flow Phenomena

Author : Radyadour Kh. Zeytounian
Publisher : Springer Science & Business Media
Page : 550 pages
File Size : 46,9 Mb
Release : 2006-04-10
Category : Science
ISBN : 9780306483868

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Asymptotic Modelling of Fluid Flow Phenomena by Radyadour Kh. Zeytounian Pdf

for the fluctuations around the means but rather fluctuations, and appearing in the following incompressible system of equations: on any wall; at initial time, and are assumed known. This contribution arose from discussion with J. P. Guiraud on attempts to push forward our last co-signed paper (1986) and the main idea is to put a stochastic structure on fluctuations and to identify the large eddies with a part of the probability space. The Reynolds stresses are derived from a kind of Monte-Carlo process on equations for fluctuations. Those are themselves modelled against a technique, using the Guiraud and Zeytounian (1986). The scheme consists in a set of like equations, considered as random, because they mimic the large eddy fluctuations. The Reynolds stresses are got from stochastic averaging over a family of their solutions. Asymptotics underlies the scheme, but in a rather loose hidden way. We explain this in relation with homogenizati- localization processes (described within the §3. 4 ofChapter 3). Ofcourse the mathematical well posedness of the scheme is not known and the numerics would be formidable! Whether this attempt will inspire researchers in the field of highly complex turbulent flows is not foreseeable and we have hope that the idea will prove useful.

Fluid Flow Phenomena In Metals Processing

Author : Julian Szekely
Publisher : Elsevier
Page : 459 pages
File Size : 54,8 Mb
Release : 2012-12-02
Category : Technology & Engineering
ISBN : 9780323149570

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Fluid Flow Phenomena In Metals Processing by Julian Szekely Pdf

Fluid Flow Phenomena in Metals Processing outlines the fundamentals of fluid flow theory, emphasizing the potential applications of fluid flow concepts that are illustrated by actual problems drawn from the metallurgical literature. This book is divided into 10 chapters. Chapters 1 to 4 are devoted to the fundamentals of fluid flow, while Chapters 5 to 9 are concerned with the application of basic concepts to specific systems, such as electromagnetically driven flows, surface tension and natural convection driven flows, multiparticle systems, gas bubbles, and impinging jets. The discussion on flow measurements and introduction to physical modeling are provided in the last chapter. This publication is suitable for a one semester graduate level course for metallurgy and chemical engineering students.

Flow Phenomena in Nature: Inspiration, learning and application

Author : R. Liebe
Publisher : WIT Press
Page : 433 pages
File Size : 50,5 Mb
Release : 2006-11-10
Category : Science
ISBN : 9781845640958

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Flow Phenomena in Nature: Inspiration, learning and application by R. Liebe Pdf

Do we have an adequate understanding of fluid dynamics phenomena in nature and evolution, and what physical models do we need? What can we learn from nature to stimulate innovations in thinking as well as in engineering applications? Concentrating on flight and propulsion, this unique and accessible book compares fluid dynamics solutions in nature with those in engineering. The respected international contributors present up-to-date research in an easy to understand manner, giving common viewpoints from fields such as zoology, engineering, biology, fluid mechanics and physics. This transdisciplinary approach eliminates barriers and opens wider perspectives to both of the challenging questions above. Contents: Applications in Engineering and Medicine; Inspiration from Nature; Steady and Unsteady Fluid Dynamics; Specific Numerical and Experimental Methods

Nonlinear Flow Phenomena and Homotopy Analysis

Author : Kuppalapalle Vajravelu,Robert A. Van Gorder
Publisher : Springer Science & Business Media
Page : 197 pages
File Size : 46,9 Mb
Release : 2013-07-22
Category : Mathematics
ISBN : 9783642321023

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Nonlinear Flow Phenomena and Homotopy Analysis by Kuppalapalle Vajravelu,Robert A. Van Gorder Pdf

Since most of the problems arising in science and engineering are nonlinear, they are inherently difficult to solve. Traditional analytical approximations are valid only for weakly nonlinear problems and often fail when used for problems with strong nonlinearity. “Nonlinear Flow Phenomena and Homotopy Analysis: Fluid Flow and Heat Transfer” presents the current theoretical developments of the analytical method of homotopy analysis. This book not only addresses the theoretical framework for the method, but also gives a number of examples of nonlinear problems that have been solved by means of the homotopy analysis method. The particular focus lies on fluid flow problems governed by nonlinear differential equations. This book is intended for researchers in applied mathematics, physics, mechanics and engineering. Both Kuppalapalle Vajravelu and Robert A. Van Gorder work at the University of Central Florida, USA.

A Kaleidoscopic View of Fluid Flow Phenomena

Author : B. H. Lakshmana Gowda
Publisher : Unknown
Page : 87 pages
File Size : 40,7 Mb
Release : 1992
Category : Fluid dynamics
ISBN : 8122401864

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A Kaleidoscopic View of Fluid Flow Phenomena by B. H. Lakshmana Gowda Pdf

An Introduction to Fluid Mechanics and Transport Phenomena

Author : G. Hauke
Publisher : Springer Science & Business Media
Page : 301 pages
File Size : 42,5 Mb
Release : 2008-08-26
Category : Technology & Engineering
ISBN : 9781402085376

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An Introduction to Fluid Mechanics and Transport Phenomena by G. Hauke Pdf

This book presents the foundations of fluid mechanics and transport phenomena in a concise way. It is suitable as an introduction to the subject as it contains many examples, proposed problems and a chapter for self-evaluation.

The Phenomena of Fluid Motions

Author : Robert S. Brodkey
Publisher : Unknown
Page : 760 pages
File Size : 40,7 Mb
Release : 1967
Category : Fluid dynamics
ISBN : UCSD:31822013422258

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The Phenomena of Fluid Motions by Robert S. Brodkey Pdf

Porous Fluids

Author : Vallampati Ramachandra Prasad
Publisher : BoD – Books on Demand
Page : 134 pages
File Size : 50,5 Mb
Release : 2021-08-18
Category : Science
ISBN : 9781839627118

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Porous Fluids by Vallampati Ramachandra Prasad Pdf

Written by authoritative experts in the field, this book discusses fluid flow and transport phenomena in porous media. Portions of the book are devoted to interpretations of experimental results in this area and directions for future research. It is a useful reference for applied mathematicians and engineers, especially those working in the area of porous media.

Advanced Transport Phenomena

Author : L. Gary Leal
Publisher : Cambridge University Press
Page : 7 pages
File Size : 54,7 Mb
Release : 2007-06-18
Category : Technology & Engineering
ISBN : 9781139462068

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Advanced Transport Phenomena by L. Gary Leal Pdf

Advanced Transport Phenomena is ideal as a graduate textbook. It contains a detailed discussion of modern analytic methods for the solution of fluid mechanics and heat and mass transfer problems, focusing on approximations based on scaling and asymptotic methods, beginning with the derivation of basic equations and boundary conditions and concluding with linear stability theory. Also covered are unidirectional flows, lubrication and thin-film theory, creeping flows, boundary layer theory, and convective heat and mass transport at high and low Reynolds numbers. The emphasis is on basic physics, scaling and nondimensionalization, and approximations that can be used to obtain solutions that are due either to geometric simplifications, or large or small values of dimensionless parameters. The author emphasizes setting up problems and extracting as much information as possible short of obtaining detailed solutions of differential equations. The book also focuses on the solutions of representative problems. This reflects the book's goal of teaching readers to think about the solution of transport problems.