Heat And Mass Transfer In Turbulent Boundary Layers
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Convective Heat and Mass Transfer
Author | : S. Mostafa Ghiaasiaan |
Publisher | : CRC Press |
Total Pages | : 788 |
Release | : 2018-06-12 |
Genre | : Science |
ISBN | : 1351112732 |
Convective Heat and Mass Transfer, Second Edition, is ideal for the graduate level study of convection heat and mass transfer, with coverage of well-established theory and practice as well as trending topics, such as nanoscale heat transfer and CFD. It is appropriate for both Mechanical and Chemical Engineering courses/modules.
Convective Heat & Mass Transfer W/ Engineering Subscription Card
Author | : William Kays |
Publisher | : Palgrave Macmillan |
Total Pages | : 584 |
Release | : 2005 |
Genre | : Science |
ISBN | : 9780072990737 |
Published April 2004 The 4th edition Convective Heat and Mass Transfer continues the trend of encouraging the use of a numerically based, computational approach to solving convective heat and mass transfer problems, in addition to classical problem-solving approaches. This best-selling text also presents a strong theoretical basis for the subject of convective heat and mass transfer by focusing on boundary layer theory and provides optional coverage of the software teaching tool TEXSTAN.
Boundary-Layer Theory
Author | : Hermann Schlichting (Deceased) |
Publisher | : Springer |
Total Pages | : 814 |
Release | : 2016-10-04 |
Genre | : Technology & Engineering |
ISBN | : 366252919X |
This new edition of the near-legendary textbook by Schlichting and revised by Gersten presents a comprehensive overview of boundary-layer theory and its application to all areas of fluid mechanics, with particular emphasis on the flow past bodies (e.g. aircraft aerodynamics). The new edition features an updated reference list and over 100 additional changes throughout the book, reflecting the latest advances on the subject.
Transport Phenomena
Author | : Robert S. Brodkey |
Publisher | : Brodkey Publishing |
Total Pages | : 522 |
Release | : 2003-02 |
Genre | : Science |
ISBN | : 9780972663588 |
Part II covers applications in greater detail. The three transport phenomena--heat, mass, and momentum transfer--are treated in depth through simultaneous (or parallel) developments.
Analysis Of Heat And Mass Transfer
Author | : Ernst Rudolf Georg Eckert |
Publisher | : CRC Press |
Total Pages | : 806 |
Release | : 1986-03-01 |
Genre | : Science |
ISBN | : 9780891165538 |
Physical and Computational Aspects of Convective Heat Transfer
Author | : T. Cebeci |
Publisher | : Springer Science & Business Media |
Total Pages | : 497 |
Release | : 2013-04-18 |
Genre | : Science |
ISBN | : 366202411X |
This volume is concerned with the transport of thermal energy in flows of practical significance. The temperature distributions which result from convective heat transfer, in contrast to those associated with radiation heat transfer and conduction in solids, are related to velocity characteristics and we have included sufficient information of momentum transfer to make the book self-contained. This is readily achieved because of the close relation ship between the equations which represent conservation of momentum and energy: it is very desirable since convective heat transfer involves flows with large temperature differences, where the equations are coupled through an equation of state, as well as flows with small temperature differences where the energy equation is dependent on the momentum equation but the momentum equation is assumed independent of the energy equation. The equations which represent the conservation of scalar properties, including thermal energy, species concentration and particle number density can be identical in form and solutions obtained in terms of one dependent variable can represent those of another. Thus, although the discussion and arguments of this book are expressed in terms of heat transfer, they are relevant to problems of mass and particle transport. Care is required, however, in making use of these analogies since, for example, identical boundary conditions are not usually achieved in practice and mass transfer can involve more than one dependent variable.
A Review of High-speed, Convective, Heat-transfer Computation Methods
Author | : Michael E. Tauber |
Publisher | : |
Total Pages | : 44 |
Release | : 1989 |
Genre | : Aerodynamic heating |
ISBN | : |
Fluid Mechanics for Engineers
Author | : Meinhard T. Schobeiri |
Publisher | : Springer Science & Business Media |
Total Pages | : 517 |
Release | : 2010-03-27 |
Genre | : Technology & Engineering |
ISBN | : 3642115942 |
The contents of this book covers the material required in the Fluid Mechanics Graduate Core Course (MEEN-621) and in Advanced Fluid Mechanics, a Ph. D-level elective course (MEEN-622), both of which I have been teaching at Texas A&M University for the past two decades. While there are numerous undergraduate fluid mechanics texts on the market for engineering students and instructors to choose from, there are only limited texts that comprehensively address the particular needs of graduate engineering fluid mechanics courses. To complement the lecture materials, the instructors more often recommend several texts, each of which treats special topics of fluid mechanics. This circumstance and the need to have a textbook that covers the materials needed in the above courses gave the impetus to provide the graduate engineering community with a coherent textbook that comprehensively addresses their needs for an advanced fluid mechanics text. Although this text book is primarily aimed at mechanical engineering students, it is equally suitable for aerospace engineering, civil engineering, other engineering disciplines, and especially those practicing professionals who perform CFD-simulation on a routine basis and would like to know more about the underlying physics of the commercial codes they use. Furthermore, it is suitable for self study, provided that the reader has a sufficient knowledge of calculus and differential equations. In the past, because of the lack of advanced computational capability, the subject of fluid mechanics was artificially subdivided into inviscid, viscous (laminar, turbulent), incompressible, compressible, subsonic, supersonic and hypersonic flows.