Numerical Techniques for Global Atmospheric Models (Lecture Notes in Computational Science and Engineering, 80, Band 80). This item is unavailable.
Language: English
Published by Springer, 2011
Series: Book 56 of 111 - Lecture Notes in Computational Science and Engineering
- Hardcover
- Used

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Ancien livre de bibliothèque avec équipements. Edition 2011. Ammareal reverse jusqu'à 15% du prix net de cet article à des organisations caritatives. ENGLISH DESCRIPTION Book Condition: Used, Very good. Former library book. Edition 2011. Ammareal gives back up to 15% of this item's net price to charity organizations.
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- Title
- Numerical Techniques for Global Atmospheric Models (Lecture Notes in Computational Science and Engineering, 80, Band 80)
- Publisher
- Springer
- Publication year
- 2011
- Condition
- Très bon
- Binding
- Hardcover
- Language
- English
- ISBN 10
- 3642116396
- ISBN 13
- 9783642116391
- Series
- Book 56 of 111: Lecture Notes in Computational Science and Engineering
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.
"Synopsis" may belong to another edition of this title.
From the Back Cover
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.
"About the title" may belong to another edition of this title.