Atmospheric Circulation Dynamics And General Circulation Models

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Atmospheric Circulation Dynamics and Circulation Models

Author: Masaki Satoh
language: en
Publisher: Springer Science & Business Media
Release Date: 2004-05-03
This book describes the methods used to construct general circulation models (GCMs) of the atmosphere, and how such models perform in applications relating to the real climate and environmental systems. Part 1 summarizes the physical processes involved; Part 2 covers atmospheric structures; Part 3 outlines basic steps for constructing GCMs. Includes an appendix with basic data and mathematical formulae to enable readers to construct GCMs for themselves.
Atmospheric Circulation Dynamics and General Circulation Models

Author: Masaki Satoh
language: en
Publisher: Springer Science & Business Media
Release Date: 2013-07-04
General circulation models (GCMs), which define the fundamental dynamics of atmospheric circulation, are nowadays used in various fields of atmospheric science such as weather forecasting, climate predictions and environmental estimations. The Second Edition of this renowned work has been updated to include recent progress of high resolution global modeling. It also contains for the first time aspects of high-resolution global non-hydrostatic models that the author has been studying since the publication of the first edition. Some highlighted results from the Non-hydrostatic ICosahedral Atmospheric Model (NICAM) are also included. The author outlines the theoretical concepts, simple models and numerical methods for modeling the general circulation of the atmosphere. Concentrating on the physical mechanisms responsible for the development of large-scale circulation of the atmosphere, the book offers comprehensive coverage of an important and rapidly developing technique used in the atmospheric science. Dynamic interpretations of the atmospheric structure and their aspects in the general circulation model are described step by step.
The Development of Atmospheric General Circulation Models

Presents unique perspectives from leading researchers on the development and application of atmospheric general circulation models. It is a core reference for academic researchers and professionals involved in atmospheric physics, meteorology and climate science, and a resource for graduate-level courses in climate modeling and numerical weather prediction.