Mathematical Problems in the Geophysical Sciences: Geophysical fluid dynamics

Mathematical Problems in the Geophysical Sciences: Geophysical fluid dynamics PDF Author: William Hill Reid
Publisher: American Mathematical Soc.
ISBN:
Category : Mathematics
Languages : en
Pages : 402

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Mathematical Problems in the Geophysical Sciences: Geophysical fluid dynamics

Mathematical Problems in the Geophysical Sciences: Geophysical fluid dynamics PDF Author: William Hill Reid
Publisher: American Mathematical Soc.
ISBN:
Category : Mathematics
Languages : en
Pages : 402

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Mathematical Problems in the Geophysical Sciences, Part 1

Mathematical Problems in the Geophysical Sciences, Part 1 PDF Author: W. H. Reid
Publisher:
ISBN:
Category :
Languages : en
Pages : 383

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Topics in Geophysical Fluid Dynamics: Atmospheric Dynamics, Dynamo Theory, and Climate Dynamics

Topics in Geophysical Fluid Dynamics: Atmospheric Dynamics, Dynamo Theory, and Climate Dynamics PDF Author: M. Ghil
Publisher: Springer Science & Business Media
ISBN: 1461210526
Category : Science
Languages : en
Pages : 505

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Book Description
The vigorous stirring of a cup of tea gives rise, as we all know, to interesting fluid dynamical phenomena, some of which are very hard to explain. In this book our "cup of tea" contains the currents of the Earth's atmosphere, oceans, mantle, and fluid core. Our goal is to under stand the basic physical processes which are most important in describing what we observe, directly or indirectly, in these complex systems. While in many respects our understanding is measured by the ability to predict, the focus here will be on relatively simple models which can aid our physical intuition by suggesting useful mathematical methods of investiga tion. These elementary models can be viewed as part of a hierarchy of models of increasing complexity, moving toward those which might be use fully predictive. The discussion in this book will deal primarily with the Earth. Interplanetary probes of Venus, Mars, Jupiter and Saturn have revealed many exciting phenomena which bear on geophysical fluid dynamics. They have also enabled us to see the effect of changing the values of certain parameters, such as gravity and rotation rate, on geophysical flows. On the other hand, satellite observations of our own planet on a daily and hourly basis have turned it into a unique laboratory for the study of fluid motions on a scale never dreamt of before: the motion of cyclones can be observed via satellite just as wing tip vortices are studied in a wind tunnel.

Mathematical Problems in the Geophysical Sciences

Mathematical Problems in the Geophysical Sciences PDF Author: William Hill Reid
Publisher:
ISBN:
Category : Geophysics
Languages : en
Pages :

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Handbook of Mathematical Fluid Dynamics

Handbook of Mathematical Fluid Dynamics PDF Author: S. Friedlander
Publisher: Gulf Professional Publishing
ISBN: 008053354X
Category : Science
Languages : en
Pages : 627

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Book Description
The Handbook of Mathematical Fluid Dynamics is a compendium of essays that provides a survey of the major topics in the subject. Each article traces developments, surveys the results of the past decade, discusses the current state of knowledge and presents major future directions and open problems. Extensive bibliographic material is provided. The book is intended to be useful both to experts in the field and to mathematicians and other scientists who wish to learn about or begin research in mathematical fluid dynamics. The Handbook illuminates an exciting subject that involves rigorous mathematical theory applied to an important physical problem, namely the motion of fluids.

Mathematical Problems in the Geophysical Sciences

Mathematical Problems in the Geophysical Sciences PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Geophysical Fluid Dynamics I

Geophysical Fluid Dynamics I PDF Author: Emin Özsoy
Publisher: Springer
ISBN: 9783030169756
Category : Science
Languages : en
Pages : 287

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Book Description
This textbook develops a fundamental understanding of geophysical fluid dynamics by providing a mathematical description of fluid properties, kinematics and dynamics as influenced by earth’s rotation. Its didactic value is based on elaborate treatment of basic principles, derived equations, exemplary solutions and their interpretation. Both starting graduate students and experienced scientists can closely follow the mathematical development of the basic theory applied to the flow of uniform density fluids on a rotating earth, with (1) basic physics introducing the "novel" effects of rotation for flows on planetary scales, (2) simplified dynamics of shallow water and quasi-geostrophic theories applied to a variety of steady, unsteady flows and geophysical wave motions, demonstrating the restoring effects of Coriolis acceleration, earth’s curvature (beta) and topographic steering, (3) conservation of vorticity and energy at geophysical scales, and (4) specific applications to help demonstrate the ability to create and solve new problems in this very rich field. A comprehensive review of the complex geophysical flows of the ocean and the atmosphere is closely knitted with this basic description, intended to be developed further in the second volume that addresses density stratified geophysical fluid dynamics.

Mathematical Geophysics

Mathematical Geophysics PDF Author: Jean-Yves Chemin
Publisher: Oxford University Press
ISBN: 019857133X
Category : Mathematics
Languages : en
Pages : 263

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Book Description
Aimed at graduate students and researchers in mathematics, engineering, oceanography, meteorology and mechanics, this text provides a detailed introduction to the physical theory of rotating fluids, a significant part of geophysical fluid dynamics. The Navier-Stokes equations are examined in both incompressible and rapidly rotating forms.

Numerical Methods for Fluid Dynamics

Numerical Methods for Fluid Dynamics PDF Author: Dale R. Durran
Publisher: Springer Science & Business Media
ISBN: 1441964126
Category : Mathematics
Languages : en
Pages : 527

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Book Description
This scholarly text provides an introduction to the numerical methods used to model partial differential equations, with focus on atmospheric and oceanic flows. The book covers both the essentials of building a numerical model and the more sophisticated techniques that are now available. Finite difference methods, spectral methods, finite element method, flux-corrected methods and TVC schemes are all discussed. Throughout, the author keeps to a middle ground between the theorem-proof formalism of a mathematical text and the highly empirical approach found in some engineering publications. The book establishes a concrete link between theory and practice using an extensive range of test problems to illustrate the theoretically derived properties of various methods. From the reviews: "...the books unquestionable advantage is the clarity and simplicity in presenting virtually all basic ideas and methods of numerical analysis currently actively used in geophysical fluid dynamics." Physics of Atmosphere and Ocean

Mathematical Problems in the Geophysical Sciences: Inverse problems, dynamo theory, and tides

Mathematical Problems in the Geophysical Sciences: Inverse problems, dynamo theory, and tides PDF Author: William Hill Reid
Publisher: American Mathematical Society(RI)
ISBN:
Category : Mathematics
Languages : en
Pages : 392

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Book Description