2 edition of Slow viscous flow. found in the catalog.
Slow viscous flow.
W. E. Langlois
|LC Classifications||QA929 .L35|
|The Physical Object|
|Pagination||ix, 229 p.|
|Number of Pages||229|
|LC Control Number||64012168|
A variational method valid for the creeping‐flow regime is used to calculate an upper bound for the pressure drop associated with viscous dissipation near the ends of a long round tube. The result states that this pressure drop, which is an additive correction to that given by the Poiseuille formula, is not greater than times the pressure drop through a thin orifice. WORKED EXAMPLE-VISCOUS PIPE FLOW We would like to work out the velocity proﬁle vx(r) in a pipe of radius R with a pres-sure gradient dp=dx. The control volume is a cylindrical shell of thickness r and length x. Note that the outer surface of this shell has a larger area than the inner surface.
Fluid Mechanics Books List. Acheson, D. J., Elementary Fluid Dynamics, Clarendon Press, Oxford (). Ahmed, N., Fluid Mechanics, Engineering Press ( the slow withdrawl of ﬂuid from a straitiﬁed reservoir into a sink will be analyzed. Governing equations for a layer of ﬂuid ﬂowing down an inclined plane As our ﬁrstexample,weconsidertheﬂow of a thin layer of viscous ﬂuidonaninclinedplane. ReferringtoFigure,letthex−axis coincide with the plane bed inclined at the angle.
The problem of determining the slow viscous flow of an unbounded fluid past a single solid particle is formulated exactly as a system of linear Fredholm integral equations of the second kind for a distribution of Stresslets over the particle surface plus a pair of singularities (Stokeslet and Rotlet) located in the interior of the particle, singularities which give rise to a force and torque. Viscous flow Designed for higher level courses in viscous fluid flow, this text presents a comprehensive treatment of the subject. This revision retains the approach and organization for which the first edition has been highly regarded, while bringing the material completely up-to-date.5/5(1).
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Slow Viscous Flow Softcover reprint of the original 2nd ed. Edition by William E. Langlois (Author), Michel O. Deville (Contributor) out of 5 stars 1 rating. ISBN ISBN Why is ISBN important.
ISBN. This bar-code number lets you verify Slow viscous flow. book you're getting exactly the right version or edition of a Cited by: Slow Viscous Flow. Authors: Langlois, William E, Deville, Michel O.
The book originally described by Prof. Langlois as "a monograph on theoretical hydrodynamics, written in the language of applied mathematics" offers much new coverage including the second principle of thermodynamics, the Boussinesq approximation, time dependent flows.
Slow Viscous Flow 2nd ed. Edition. by William E. Langlois (Author), Michel O. Deville (Author) out of 5 stars 1 rating. ISBN ISBN Why is ISBN important. ISBN. This bar-code number lets you verify that you're getting exactly the right version or edition of a book.
5/5(1). Page: Provides an account of internal, external and unsteady slow viscous flows, including the advances. This book shows how the method of eigenfunctions, in conjunction with least squares, can be used to solve problems of low Reynolds number flows, including three-dimensional internal and unsteady flows.
Like its predecessor, the revised and expanded Second Edition of this book addresses the basic principles of fluid mechanics and solves fluid flow problems where viscous effects are the dominant physical phenomena.
Much progress has occurred in the. Slow Viscous Flow by W E Langlois and a great selection of related books, art and collectibles available now at “On balance, the book provides a comprehensive introduction to the theory of slow viscous flows with special attention paid to the method of complex eigenfunction expansions.
It is a well-written rigorous and enjoyable book which contains various practical applications to. Slow viscous flow of an incompressible stratified fluid past a sphere - Volume 66 Issue 2 - R.
Chadwick, Y. Zvirin. This book features extensive use of dimensional analysis on both models and variables, and extensive development of theoretically based correlating equations.
The range of applicability of most theoretical solutions is shown to be quite limited; however, in combination they are demonstrated to be more reliable than purely empirical expressions.
This book forms a concise and logically developed course in contemporary Newtonian fluid dynamics, suitable for physics and engineering science students. The text is composed of chapters devoted to the discussion of the physical properties of fluids, vortex dynamics, slow viscous flow.
This unique book provides a unified and systematic account of internal, external and unsteady slow viscous flows, including the latest advances of the last decade, some of which are due to the author. VISCOUS FLUID FLOW. VISCOUS FLUID FLOW Tasos C.
Papanastasiou Georgios C. Georgiou with the intent of the book. The book is intended for upper-level undergraduate Chapter10,on“CreepingBidirectionalFlows,”examinesslowﬂowsdominated by viscous forces, or, equivalently, small Reynolds number ﬂows.
In the limit of. This book commemorates the appearance one hundred years ago of a paper on slow viscous flow, written by the physicist and Nobel laureate H.A. Lorentz. Print book: English: Second editionView all editions and formats Summary: This major new edition of a classic text in fluid mechanics incorporates 50 years of progress and innovation, with authoritative material on nanotechnology and hydrommagnetic effects alongside extended coverage of basic principles and viscous flow equations.
Read "Slow Viscous Flow" by Michel O. Deville available from Rakuten Kobo. Leonardo wrote, “Mechanics is the paradise of the mathematical sciences, because by means of Brand: Springer International Publishing. Additional Physical Format: Online version: Langlois, W.E. Slow viscous flow. New York, Macmillan  (OCoLC) Document Type: Book: All Authors.
This book presents a coherent introduction to boundary integral, boundary element and singularity methods for steady and unsteady flow at zero Reynolds number. The focus of the discussion is not only on the theoretical foundation, but also on the practical application and computer implementation.
B Viscous Flow: Lecture Notes Course synopsis Overview Viscous uids are important in so many facets of everyday life that everyone has some intuition about the diverse ow phenomena that occur in practice.
This course is distinctive in that it shows how quite advanced. This book provides senior undergraduates who are already familiar with inviscid fluid dynamics with some of the basic facts about the modelling and analysis of viscous flows. It clearly presents the salient physical ideas and the mathematical ramifications with exercises designed to.
Summary This book presents the fundamental mathematical theory of, and reviews state-of-the-art advances in, low Reynolds number viscous incompressible flow.
The authors devote much of the text to the development of boundary integral methods for slow viscous flow pointing out. Slow flow of a viscous incompressible fluid past a slender body of circular cross- section is treated by the method of matched asymptotic expansions. The main result is an integral equation for the force per unit length exerted on the body by the fluid.
The novelty .Flow Near a Sharp Corner: The Corner or Moffatt Eddies. Flow Near a Sharp Corner: Large Corner Angles. Corner Flows with a Source at the Vertex. Isolated Stagnation Points in Planar Flows. Viscous Flow Fields Near Points on the Boundary Where the Skin Friction Vanishes.
Blocked Flows. Some Interesting Examples. Limitations.Slow Viscous Flow By (author) William E Langlois, Michel O. Deville. ISBN 13 Overall Rating (0 rating) Rental Duration: Price: 6 Months: $ Add to Cart: 1 Month: $ Add to Cart: ViewInside. Product Description Home | Contact Us.