Hamiltonian fluid dynamics and stability theory work hand-in-hand in a variety of engineering, physics, and physical science fields. Until now, however, no single reference addressed and provided background in both of these closely linked subjects. Introduction to Hamiltonian Fluid Dynamics and Stability Theory does just that-offers a comprehensive introduction to Hamiltonian fluid dynamics and describes aspects of hydrodynamic stability theory within the context of the Hamiltonian formalism.
The author uses the example of the nonlinear pendulum-giving a thorough linear and nonlinear stability analysis of its equilibrium solutions-to introduce many of the ideas associated with the mathematical argument required in infinite dimensional Hamiltonian theory needed for fluid mechanics. He examines Andrews' Theorem, derives and develops the Charney-Hasegawa-Mima (CMH) equation, presents an account of the Hamiltonian structure of the Korteweg-de Vries (KdV) equation, and discusses the stability theory associated with the KdV soliton.
The book's tutorial approach and plentiful exercises combine with its thorough presentations of both subjects to make Introduction to Hamiltonian Fluid Dynamics and Stability Theory an ideal reference, self-study text, and upper level course book.
Introduction to Hamiltonian Fluid Dynamics and Stability Theory (Monographs and Surveys in Pure and Applied Mathematics)
📄 Viewing lite version
Full site ›
Book Details
Author(s)Gordon E Swaters
PublisherChapman and Hall/CRC
ISBN / ASIN1584880236
ISBN-139781584880233
Sales Rank6,865,295
CategoryMathematics
MarketplaceUnited States 🇺🇸
Description ▲
More Books in Mathematics
Collins Primary Maths: Year 1 Bk.2
View
Collins Primary Maths: Year 2 Bk.2
View
Maths Plus: Bk.2
View
Spark Island: KS2 National Tests Maths
View
KS3 Maths (Test Practice)
View
Pupil Book 3B (Collins New Primary Maths)
View
Collins New Primary Maths – Pupil Book 5C
View
Year 9 Pupil Book 3 (Levels 6-8) (New Maths Frameworki…
View
Student Book Foundation 1: Foundation 1: Edexcel Modul…
View