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Fluid mechanics

By: Kundu, Pijush K [Author] | Cohen, Ira M [Co-Author] | Dowling, David R [Co-Author]Contributor(s): Tryggvason, Gretar [Contributor]Language: English Publication details: USA: Elsevier, 2016. Edition: 6th edDescription: xxiv, 921p.; 21cmsISBN: 9780124059351Subject(s): Fluid mechanics | Cartesian tensors | Kinematics | Conservation laws | Computational fluid dynamicsDDC classification: 532 K86, 6
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Item type Current library Call number Copy number Status Date due Barcode
Books Books Dr. S. R. Ranganathan Library
General Stacks
532 K86, 6 (Browse shelf(Opens below)) 1 Available 3198
Books Books Dr. S. R. Ranganathan Library
General Stacks
532 K86, 6:1 (Browse shelf(Opens below)) 2 Available 3200
Books Books Dr. S. R. Ranganathan Library
General Stacks
532 K86, 6:2 (Browse shelf(Opens below)) 3 Available 3199

The classic textbook on fluid mechanics is revised and updated by Dr. David Dowling to better illustrate this important subject for modern students. With topics and concepts presented in a clear and accessible way, Fluid Mechanics guides students from the fundamentals to the analysis and application of fluid mechanics, including compressible flow and such diverse applications as aerodynamics and geophysical fluid mechanics. Its broad and deep coverage is ideal for both a first or second course in fluid dynamics at the graduate or advanced undergraduate level, and is well-suited to the needs of modern scientists, engineers, mathematicians, and others seeking fluid mechanics knowledge.

Over 100 new examples designed to illustrate the application of the various concepts and equations featured in the text
A completely new chapter on computational fluid dynamics (CFD) authored by Prof. Gretar Tryggvason of the University of Notre Dame. This new CFD chapter includes sample MatlabTM codes and 20 exercises
New material on elementary kinetic theory, non-Newtonian constitutive relationships, internal and external rough-wall turbulent flows, Reynolds-stress closure models, acoustic source terms, and unsteady one-dimensional gas dynamics
Plus 110 new exercises and nearly 100 new figures


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