3 edition of Fronts, Waves and Vortices in Geophysical Flows found in the catalog.
Published
2010
by Springer-Verlag Berlin Heidelberg in Berlin, Heidelberg
.
Written in English
Edition Notes
Statement | edited by Jan-Bert Flor |
Series | Lecture Notes in Physics -- 805 |
Contributions | SpringerLink (Online service) |
The Physical Object | |
---|---|
Format | [electronic resource] / |
ID Numbers | |
Open Library | OL25563401M |
ISBN 10 | 9783642115868, 9783642115875 |
Qingyang Song, Hidenori Aiki, The Climatological Horizontal Pattern of Energy Flux in the Tropical Atlantic as Identified by a Unified Diagnosis for Rossby and Kelvin Waves, Journal of Geophysical Research: Oceans, /JC, , 2, (). In conclusion, I warmly recommend this book to any students in physics because it’s well written interesting and very useful." (Stéphane Métens, Physicalia, Vol. 26 (1), ) "This book is a first introduction to the mathematical description of fields, flows and waves.
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This book provides an introductory-level exploration of geophysical fluid dynamics (GFD), the principles governing air and water flows on large terrestrial scales. Physical principles are illustrated with the aid of the simplest existing models, and the computer methods are shown in juxtaposition with the equations to which they apply. After publishing a book titled Ocean Circulation Physics (Academic Press, ), Stern dedicated an increasing amount of time and effort to the investigation of vortices. He is credited with the modon solution (Section ), and seminal studies of jets and jet-vortex interactions, complementing his theoretical results with original and.
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This book presents a fluid mechanics perspective to the dynamics of fronts and vortices and their interaction with waves in geophysical flows. It provides a basic physical background for modeling coherent structures in a geophysical context, and it gives essential information on advanced topics such as spontaneous wave emission and wavemomentum.
This book presents a fluid mechanics perspective to the dynamics of fronts and vortices and their interaction with waves in geophysical flows.
It provides a basic physical background for modeling coherent structures in a geophysical context, and it gives essential information on advanced topics such as spontaneous wave emission and wavemomentum Format: Paperback.
This book introduces and presents a fluid mechanics perspective, the dynamics of fronts, vortices and their interaction with waves in geophysical flows. It provides a basic physical background for modeling on advanced topics such as spontaneous wave emission and wavemomentum transfer in geophysical flows.
This book presents from a fluid mechanics perspective the dynamics of fronts, vortices, and their interaction with waves in geophysical flows. It provides a basic physical background for modeling coherent structures in a geophysical context and gives essential information on advanced topics such as spontaneous wave emission and wave-momentum.
This book presents a fluid mechanics perspective to the dynamics of fronts and vortices and their interaction with waves in geophysical flows. It provides a basic physical background for modeling coherent structures in a geophysical context.
Book Review. Fronts, Waves and Vortices in Geophysical Flows, by Jan-Bert Flór (ed.), Springer, ; ISBN: Article in Pure and Applied Geophysics January Book Review. Fronts, Waves and Vortices in Geophysical Flows, by Jan-Bert Flór (ed.), Springer, ; ISBN: Zeitlin V.
() Lagrangian Dynamics of Fronts, Vortices and Waves: Understanding the (Semi-)geostrophic Adjustment. In: Flor JB. (eds) Fronts, Waves and Vortices in Geophysical Flows.
Waves and flows are pervasive on and within Earth. This book presents a unified physical and mathematical approach to waves and flows in the atmosphere, oceans, rivers, volcanoes and the mantle, emphasizing the common physical principles and mathematical methods that apply to a variety of phenomena and disciplines.
Book Review Book Review Icha, Andrzej Pure Appl. Geophys. (), – Springer Basel AG Pure and Applied Geophysics DOI /s Fronts, Waves and Vortices in Geophysical Flows, by Jan-Bert Flo ´ r (ed.), Springer, ; ISBN: ANDRZEJ ICHA Coherent structures, or localized states, are significant.
from book Fronts, Waves and Vortices in Geophysical Flows (pp) Lagrangian Dynamics of Fronts, Vortices and Waves: Understanding the (Semi-)geostrophic Adjustment Chapter. This book gives a modern account of the nonlinear interactions between waves and mean flows, such as shear flows and vortices.
A detailed account of the theory of linear dispersive waves in moving media is followed by a thorough introduction to classical wave-mean interaction theory. About the author.
James C. McWilliams is a theoretical and computational oceanic scientist who has done research on many fluid dynamical topics, ranging from climate variability and anthropogenic change, to oceanic general circulation, to mesoscale eddies, and to boundary-layer ular topics in recent years are submesocale fronts, filament, vortices, and topographic wakes.
Lecture Notes in Physics Founding Editors: W. Beiglbock, J. Ehlers, K. Hepp, H. Weidenm¨ uller¨ Editorial Board R. Beig, Vienna, Austria W. Beiglbock, Heidelberg. 10 Mathematics, waves and geophysical flow Talk 8 Water waves with rough vorticity Bogdan Matioc* We discuss the existence of traveling water waves with rough vorticity, when accounting for surface tension effects at the wave sur-face.
A rough - that is discontinuous or unbounded - vorticity is quite common in geophysical flows and it can. Nathan Paldor. Clouds, Chemistry and Climate. Paul J. Timescales of Magmatic Processes. Anthony Dosseto. Quasi-Geostrophic Theory of Oceans and Atmosphere. Fabio Cavallini.
Physics of Surface, Interface and Cluster Catalysis. Hideaki Kasai. Fronts, Waves and Vortices in Geophysical Flows. Jan-Bert Flor. Light Scattering by Nonspherical Particles. Fronts, Waves and Vortices in Geophysical Flows, () Optimal Transport, Convection, Magnetic Relaxation and Generalized Boussinesq Equations.
Journal of. A basic vortex–wave interaction in quasigeostrophic flows is investigated. Specifically, the interaction between a point vortex and an initially horizontal interface separating two regions of uniform potential vorticity is considered.
In the asymptotic limit of small amplitude interface motions, the exact solution of the initial value problem is presented. Introduction to Geophysical Fluid Dynamics provides an introductory-level exploration of geophysical fluid dynamics (GFD), the principles governing air and water flows on large terrestrial scales.
Physical principles are illustrated with the aid of the simplest existing models, and the computer methods are shown in juxtaposition with the equations to which they apply. The book explains the key notions and fundamental processes in the dynamics of the fluid envelopes of the Earth (transposable to other planets), and methods of their analysis, from the unifying viewpoint of rotating shallow-water model (RSW).
The model, in its one- or two-layer versions, plays a distinguished role in geophysical fluid dynamics, having been used for around a century for.
The goal of this winterschool is to bring together leading experts from astrophysical and geophysical communities, in order to discuss flows where stratification, rotation and magnetic field play an important role.
Emphasis will be put on simple models of oceans, atmosphere and planet interiors, where basic phenomena such as waves and instabilities can be described theoretically.Read the latest chapters of International Geophysics atElsevier’s leading platform of peer-reviewed scholarly literature.Geophysical flows.
Much of my early work concerned the dynamics of large scale flows dominated by the influence of stratification and the Earth’s rotation, as arise in the Earth’s atmosphere and oceans. Roll waves on flowing cornstarch suspensions We report a traveling wave instability in low Reynolds number flows of aqueous.