The equations of oceanic motions

Modeling and prediction of oceanographic phenomena and climate is based on the integration of dynamic equations. The Equations of Oceanic Motions derives and systematically classifies the most common dynamic equations used in physical oceanography, from large-scale thermohaline circulations to those...

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1. Verfasser: Müller, Peter 1944-
Format: E-Book
Sprache:English
Veröffentlicht: Cambridge Cambridge University Press 2006
Online-Zugang:Volltext
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520 |a Modeling and prediction of oceanographic phenomena and climate is based on the integration of dynamic equations. The Equations of Oceanic Motions derives and systematically classifies the most common dynamic equations used in physical oceanography, from large-scale thermohaline circulations to those governing small scale motions and turbulence. After establishing the basic dynamical equations that describe all oceanic motions, Müller then derives approximate equations, emphasizing the assumptions made and physical processes eliminated. He distinguishes between geometric, thermodynamic and dynamic approximations and between the acoustic, gravity, vortical and temperature-salinity modes of motion. Basic concepts and formulae of equilibrium thermodynamics, vector and tensor calculus, curvilinear coordinate systems, and the kinematics of fluid motion and wave propagation are covered in appendices. Providing the basic theoretical background for graduate students and researchers of physical oceanography and climate science, this book will serve as both a comprehensive text and an essential reference. 
776 0 8 |i Erscheint auch als  |n Druck-Ausgabe  |z 9780521855136 
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The equations of oceanic motions Peter Müller
Cambridge Cambridge University Press 2006
1 Online-Ressource (x, 291 Seiten)
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Modeling and prediction of oceanographic phenomena and climate is based on the integration of dynamic equations. The Equations of Oceanic Motions derives and systematically classifies the most common dynamic equations used in physical oceanography, from large-scale thermohaline circulations to those governing small scale motions and turbulence. After establishing the basic dynamical equations that describe all oceanic motions, Müller then derives approximate equations, emphasizing the assumptions made and physical processes eliminated. He distinguishes between geometric, thermodynamic and dynamic approximations and between the acoustic, gravity, vortical and temperature-salinity modes of motion. Basic concepts and formulae of equilibrium thermodynamics, vector and tensor calculus, curvilinear coordinate systems, and the kinematics of fluid motion and wave propagation are covered in appendices. Providing the basic theoretical background for graduate students and researchers of physical oceanography and climate science, this book will serve as both a comprehensive text and an essential reference.
Erscheint auch als Druck-Ausgabe 9780521855136
Erscheint auch als Druck-Ausgabe 9781107410602
TUM01 ZDB-20-CTM TUM_PDA_CTM https://doi.org/10.1017/CBO9780511617843 Volltext
spellingShingle Müller, Peter 1944-
The equations of oceanic motions
title The equations of oceanic motions
title_auth The equations of oceanic motions
title_exact_search The equations of oceanic motions
title_full The equations of oceanic motions Peter Müller
title_fullStr The equations of oceanic motions Peter Müller
title_full_unstemmed The equations of oceanic motions Peter Müller
title_short The equations of oceanic motions
title_sort equations of oceanic motions
url https://doi.org/10.1017/CBO9780511617843
work_keys_str_mv AT mullerpeter theequationsofoceanicmotions
AT mullerpeter equationsofoceanicmotions