Geophysical fluid dynamics : understanding (almost) everything with rotating shallow water models /

For the dynamics of large and medium scale motions in the oceans and the atmosphere, a simplified rotating shallow water model, obtained by vertical averaging, is used throughout the book in order to explain the fundamentals, and to give in-depth treatment of important dynamical processes.

Bibliographic Details
Main Author: Zeitlin, V. (Vladimir) (Author)
Format: eBook
Language:English
Published: Oxford, United Kingdom : Oxford University Press, 2018.
Edition:First edition.
Subjects:
Online Access:Connect to the full text of this electronic book
Table of Contents:
  • Part I. Modelling large-scale oceanic and atmospheric flows: from primitive to rotating shallow water equations and beyond. Introduction ; Primitive equations model ; Simplifying primitive equations : rotating shallow water models and their properties ; Wave motions in rotating shallow water with boundaries, topography, at the equator, and in laboratory; Getting rid of fast waves : slow dynamics ; Vortex dynamics on the f and beta plane and wave radiation by vortices ; Rotating shallow water models as quasilinear hyperbolic systems, and related numerical methods
  • part II. Understanding fundamental dynamical phenomena with rotating shallow-water models. Geostrophic adjustment and wave-vortex (non)interaction ; RSW modons, and their surprising properties : RSW turbulence ; Instabilities of jets and fronts and their nonlinear evolution ; Instabilities in cylindrical geometry : vortices and laboratory flows ; Resonant wave interactions and resonant excitation of wave-guide modes ; Wave turbulence
  • part III. Generalisations of standard rotating shallow-water model, and their applications. Rotating shallow-water model with horizontal density and/or temperature gradients ; Rotating shallow-water models with moist convection ; Rotating shallow-water models with full Coriolis force.