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Fluid Mechanics for Engineers - Meinhard T. Schobeiri

Fluid Mechanics for Engineers

A Graduate Textbook
Buch | Softcover
XXII, 504 Seiten
2014 | 2010
Springer Berlin (Verlag)
978-3-642-42748-0 (ISBN)
CHF 119,80 inkl. MwSt
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Latest developments on Fluid Mechanics.
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.

Meinhard Taher Schobeiri, Ph.D., is Professor of Mechanical Engineering at Texas A&M University in College Station, where he studies fluid flow within turbomachinery components, behavior of turbomachinery systems, turbine performance, aerodynamics, heat transfer, and thermodynamics. Dr. Schobeiri is received his B.S., M.S., and Ph.D. degrees from the Technical University Darmstadt in Germany, later joining the Department of Mechanical Engineering to establish two gas turbine research areas at Texas A&M University. He also worked for the Brown Boveri Gas Turbine Division in Switzerland, where he headed R&D for high efficiency gas turbine engines. Dr. Schobeiri holds a number of external grants and contracts, has won the Alexander von Humboldt Research Award (2000), and is a TAMU Faculty Fellow (2001) and TEES Fellow (1998).

Vector and Tensor Analysis, Applications to Fluid Mechanics.- Kinematics of Fluid Motion.- Differential Balances in Fluid Mechanics.- Integral Balances in Fluid Mechanics.- Inviscid Potential Flows.- Viscous Laminar Flow.- Laminar-Turbulent Transition.- Turbulent Flow, Modeling.- Free Turbulent Flow.- Boundary Layer Theory.- Compressible Flow.

From the reviews:

"This graduate textbook aims at providing a coherent spread of the material required to gain knowledge of fluid mechanics. ... The derivation and explanations will definitely be helpful to the students and researchers ... . The author's decision to include the problems and projects at the end of each chapter will definitely be useful to the readers. The reviewer finds that the book is a useful addition to the existing graduate texts on fluid mechanics." (S. C. Rajvanshi, Zentralblatt MATH, Vol. 1203, 2011)

Erscheint lt. Verlag 31.10.2014
Zusatzinfo XXII, 504 p.
Verlagsort Berlin
Sprache englisch
Maße 155 x 235 mm
Gewicht 801 g
Themenwelt Mathematik / Informatik Mathematik Algebra
Naturwissenschaften Physik / Astronomie Strömungsmechanik
Technik Maschinenbau
Schlagworte Calculus • computational fluid dynamics • fluid- and aerodynamics • fluid mechanics • mechanical engineering • Mechanical Engineers • Mechanics • Modeling • Simulation
ISBN-10 3-642-42748-0 / 3642427480
ISBN-13 978-3-642-42748-0 / 9783642427480
Zustand Neuware
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