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Large-Scale Atmosphere-Ocean Dynamics. Vol. 2

Large-Scale Atmosphere-Ocean Dynamics. Vol. 2

Hardback (15 Aug 2002)

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Publisher's Synopsis

Numerical weather prediction is a problem of mathematical physics. The complex flows in the atmosphere and oceans are believed to be accurately modelled by the Navier-Stokes equations of fluid mechanics together with classical thermodynamics. However, due to the enormous complexity of these equations, meteorologists and oceanographers have constructed approximate models of the dominant, large-scale flows that control the evolution of weather systems and that describe, for example, the dynamics of cyclones and ocean eddies. The simplifications often result in models that are amenable to solution both analytically and numerically. The lectures in this volume, first published in 2002, examine and explain why such simplifications to Newton's second law produce accurate, useful models and, just as the meteorologist seeks patterns in the weather, mathematicians seek structure in the governing equations, such as groups of transformations, Hamiltonian structure and stability. This book and its companion show how geometry and analysis facilitate solution strategies.

About the Publisher

Cambridge University Press

Cambridge University Press dates from 1534 and is part of the University of Cambridge. We further the University's mission by disseminating knowledge in the pursuit of education, learning and research at the highest international levels of excellence.

Book information

ISBN: 9780521807579
Publisher: Cambridge University Press
Imprint: Cambridge University Press
Pub date:
DEWEY: 551.5246
DEWEY edition: 21
Language: English
Number of pages: 390
Weight: 954g
Height: 253mm
Width: 181mm
Spine width: 22mm