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Computational Methods for the Atmosphere and the Oceans

Computational Methods for the Atmosphere and the Oceans
Author: Roger Temam
Publisher: Elsevier
Total Pages: 797
Release: 2009-06-16
Genre: Computers
ISBN: 0080931030

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This book provides a survey of the frontiers of research in the numerical modeling and mathematical analysis used in the study of the atmosphere and oceans. The details of the current practices in global atmospheric and ocean models, the assimilation of observational data into such models and the numerical techniques used in theoretical analysis of the atmosphere and ocean are among the topics covered. • Truly interdisciplinary: scientific interactions between specialties of atmospheric and ocean sciences and applied and computational mathematics • Uses the approach of computational mathematicians, applied and numerical analysts and the tools appropriate for unsolved problems in the atmospheric and oceanic sciences• Contributions uniquely address central problems and provide a survey of the frontier of research


Computational Methods for the Atmosphere and the Oceans

Computational Methods for the Atmosphere and the Oceans
Author:
Publisher:
Total Pages: 761
Release: 2009
Genre: Marine sciences
ISBN:

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A compilation of the current state of the art in numerical modeling of the atmosphere and ocean.


Numerical Methods for Atmospheric and Oceanic Sciences

Numerical Methods for Atmospheric and Oceanic Sciences
Author: A Chandrasekar
Publisher: Cambridge University Press
Total Pages:
Release: 2022-06-30
Genre: Science
ISBN: 1009258176

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Numerical Methods for Atmospheric and Oceanic Sciences caters to the needs of students of atmospheric and oceanic sciences in senior undergraduate and graduate courses as well as students of applied mathematics, mechanical and aerospace engineering. The book covers fundamental theoretical aspects of the various numerical methods that will help both students and teachers in gaining a better understanding of the effectiveness and rigour of these methods. Extensive applications of the finite difference methods used in the processes involving advection, barotropic, shallow water, baroclinic, oscillation and decay are covered in detail. Special emphasis is given to advanced numerical methods such as Semi-Lagrangian, Spectral, Finite Element and Finite Volume methods. Each chapter includes various exercises including Python codes that will enable students to develop the codes and compare the numerical solutions obtained through different numerical methods.


Numerical Techniques for Global Atmospheric Models

Numerical Techniques for Global Atmospheric Models
Author: Peter H. Lauritzen
Publisher: Springer Science & Business Media
Total Pages: 570
Release: 2011-03-29
Genre: Mathematics
ISBN: 364211640X

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This book surveys recent developments in numerical techniques for global atmospheric models. It is based upon a collection of lectures prepared by leading experts in the field. The chapters reveal the multitude of steps that determine the global atmospheric model design. They encompass the choice of the equation set, computational grids on the sphere, horizontal and vertical discretizations, time integration methods, filtering and diffusion mechanisms, conservation properties, tracer transport, and considerations for designing models for massively parallel computers. A reader interested in applied numerical methods but also the many facets of atmospheric modeling should find this book of particular relevance.


Atmospheres and Oceans on Computers

Atmospheres and Oceans on Computers
Author: Lars Petter Røed
Publisher: Springer
Total Pages: 275
Release: 2018-09-04
Genre: Science
ISBN: 3319938649

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This textbook introduces step by step the basic numerical methods to solve the equations governing the motion of the atmosphere and ocean, and describes how to develop a set of corresponding instructions for the computer as part of a code. Today's computers are powerful enough to allow 7-day forecasts within hours, and modern teaching of the subject requires a combination of theoretical and computational approaches. The presentation is aimed at beginning graduate students intending to become forecasters or researchers, that is, users of existing models or model developers. However, model developers must be well versed in the underlying physics as well as in numerical methods. Thus, while some of the topics discussed in the modeling of the atmosphere and ocean are more advanced, the book ensures that the gap between those scientists who analyze results from model simulations and observations and those who work with the inner works of the model does not widen further. In this spirit, the course presents methods whereby important balance equations in oceanography and meteorology, namely the advection-diffusion equation and the shallow water equations on a rotating Earth, can be solved by numerical means with little prior knowledge. The numerical focus is on the finite-difference (FD) methods, and although more powerful methods exist, the simplicity of FD makes it ideal as a pedagogical introduction to the subject. The book also includes suitable exercises and computer problems.


Handbook of Numerical Analysis: Special volume, computational chemistry

Handbook of Numerical Analysis: Special volume, computational chemistry
Author:
Publisher: North-Holland is
Total Pages:
Release: 1990
Genre: Numerical analysis -- v. 14. Special volume : computational methods for the atmospher and the oceans -- v. 15. Special volume : mathematical modeling and numerical methods in finance -- v. 16. Special volume : numerical methods for non-newtonian fluids
ISBN:

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Numerical Methods for Fluid Dynamics

Numerical Methods for Fluid Dynamics
Author: Dale R. Durran
Publisher: Springer Science & Business Media
Total Pages: 527
Release: 2010-09-14
Genre: Mathematics
ISBN: 1441964126

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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


Handbook of Numerical Analysis: Special volume, foundations of computational mathematics

Handbook of Numerical Analysis: Special volume, foundations of computational mathematics
Author:
Publisher: North-Holland is
Total Pages:
Release: 1990
Genre: Numerical analysis -- v. 14. Special volume : computational methods for the atmospher and the oceans -- v. 15. Special volume : mathematical modeling and numerical methods in finance -- v. 16. Special volume : numerical methods for non-newtonian fluids
ISBN:

Download Handbook of Numerical Analysis: Special volume, foundations of computational mathematics Book in PDF, ePub and Kindle