Introduction To Theoretical And Mathematical Fluid Dynamics


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Introduction to Mathematical Fluid Dynamics


Introduction to Mathematical Fluid Dynamics

Author: Richard E. Meyer

language: en

Publisher: Courier Corporation

Release Date: 2012-03-09


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Excellent coverage of kinematics, momentum principle, Newtonian fluid, rotating fluids, compressibility, and more. Geared toward advanced undergraduate and graduate students of mathematics and science; prerequisites include calculus and vector analysis. 1971 edition.

Theoretical Fluid Dynamics


Theoretical Fluid Dynamics

Author: Achim Feldmeier

language: en

Publisher: Springer Nature

Release Date: 2020-03-17


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This textbook gives an introduction to fluid dynamics based on flows for which analytical solutions exist, like individual vortices, vortex streets, vortex sheets, accretions disks, wakes, jets, cavities, shallow water waves, bores, tides, linear and non-linear free-surface waves, capillary waves, internal gravity waves and shocks. Advanced mathematical techniques ("calculus") are introduced and applied to obtain these solutions, mostly from complex function theory (Schwarz-Christoffel theorem and Wiener-Hopf technique), exterior calculus, singularity theory, asymptotic analysis, the theory of linear and nonlinear integral equations and the theory of characteristics. Many of the derivations, so far contained only in research journals, are made available here to a wider public.

Introduction to Theoretical and Computational Fluid Dynamics


Introduction to Theoretical and Computational Fluid Dynamics

Author: Constantine Pozrikidis

language: en

Publisher: Oxford University Press

Release Date: 2011-11-17


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This book discusses the fundamental principles and equations governing the motion of incompressible Newtonian fluids, and simultaneously introduces numerical methods for solving a broad range of problems. Appendices provide a wealth of information that establishes the necessary mathematical and computational framework.