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Ocean-atmosphere interaction and climate modelling by B. A. Kagan

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Published by Cambridge University Press in Cambridge [England], New York .
Written in English

Subjects:

  • Ocean-atmosphere interaction -- Mathematical models.,
  • Climatology -- Mathematical models.

Book details:

Edition Notes

Includes bibliographical references (p. 358-373) and index.

StatementBoris A. Kagan ; translated by Mikhail Hazin.
SeriesCambridge atmospheric and space science series ;, [11]
Classifications
LC ClassificationsGC190.5 .K34 1995
The Physical Object
Paginationxiii, 377 p. :
Number of Pages377
ID Numbers
Open LibraryOL1090740M
ISBN 100521444454
LC Control Number94014977

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The oceans form % of the atmosphere’s lower surface, and are therefore of major significance in structuring both weather and climate over the globe. The actual circulation of the ocean and the.   During the following decades, the climate research community has made exceptional progress in refining our capacity to observe earth's climate and theorize about it, including new satellite-based and in situ monitoring systems and coupled ocean-atmosphere predictive numerical models. Dr Neil Wells is a lecturer in the Oceanography department at Southampton University in ocean modeling, climate and sea air interaction. Research in, large scale ocean modelling with interests in heat fluxes and heat content change. (ii) Application of ARGO data sets to . Atmosphere-Ocean Interaction. The oceans and atmosphere interact in many different ways. There can be a net exchange of heat, salt, water and momentum between them.

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