Modeling Atmospheric and Oceanic Flows

Modeling Atmospheric and Oceanic Flows

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Modeling Atmospheric and Oceanic Flows: Insights from Laboratory Experiments and Numerical Simulations provides a broad overview of recent progress in using laboratory experiments and numerical simulations to model atmospheric and oceanic fluid motions. This volume not only surveys novel research topics in laboratory experimentation, but also highlights recent developments in the corresponding computational simulations. As computing power grows exponentially and better numerical codes are developed, the interplay between numerical simulations and laboratory experiments is gaining paramount importance within the scientific community. The lessons learnt from the laboratorya€“model comparisons in this volume will act as a source of inspiration for the next generation of experiments and simulations. Volume highlights include: Topics pertaining to atmospheric science, climate physics, physical oceanography, marine geology and geophysics Overview of the most advanced experimental and computational research in geophysics Recent developments in numerical simulations of atmospheric and oceanic fluid motion Unique comparative analysis of the experimental and numerical approaches to modeling fluid flow Modeling Atmospheric and Oceanic Flows will be a valuable resource for graduate students, researchers, and professionals in the fields of geophysics, atmospheric sciences, oceanography, climate science, hydrology, and experimental geosciences.Smolarkiewicz, P. K., and L. G. Margolin (2000), Variational methods for elliptic problems in fluid models, ... Takahashi (2003), The fully developed superrotation simulated by a general circulation model of a Venus-like atmosphere, J. Atmos.


Title:Modeling Atmospheric and Oceanic Flows
Author: Thomas von Larcher, Paul D. Williams
Publisher:John Wiley & Sons - 2014-10-30
ISBN-13:

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