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Incompressible Fluid Dynamics is a textbook for graduate and advanced undergraduate students of engineering, applied mathematics, and geophysics. The text comprises topics that establish the broad conceptual framework of the subject, expose key phenomena, and play an important role in the myriad of applications that exist in both nature and technology.The first half of the book covers topics that include the inviscid equations of Euler and Bernoulli, the Navier-Stokes equation and some of its simpler exact solutions, laminar boundary layers and jets, potential flow theory with its various applications to aerodynamics, the theory of surface gravity waves, and flows with negligible inertia, such as suspensions, lubrication layers, and swimming micro-organisms.The second half is more specialised. Vortex dynamics, which is so essential to many natural phenomena in fluid mechanics, is developed in detail. This is followed by chapters on stratified fluids and flows subject to a strong background rotation, both topics being central to our understanding of atmospheric and oceanic flows. Fluid instabilities and the transition to turbulence are also covered, followed by two chapters on fully developed turbulence.The text is largely self-contained, and aims to combine mathematical precision with a breadth of engineering and geophysical applications. Throughout, physical insight is given priority over mathematical detail.
This text investigates the fundamental principles of incompressible fluid dynamics by bridging the gap between theoretical mathematical frameworks and practical engineering and geophysical applications. P. A. Davidson, an expert in the field, utilizes a pedagogical approach that prioritizes physical intuition alongside rigorous derivation. The book serves as a comprehensive resource for students and researchers, organizing complex phenomena into a structured progression from basic equations to advanced turbulence theory.
What You Will Find
Experts and educators frequently cite this text as a standard reference for graduate-level fluid mechanics due to its balance of mathematical depth and physical clarity. Readers often note that the prose is accessible yet rigorous, making it a foundational resource for those working in engineering and geophysics.
Page Count:
528
Publication Date:
2022-01-28
Publisher:
Oxford University Press
ISBN-10:
0198869096
ISBN-13:
9780198869092
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