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Titlebook: Oceanic Circulation Models: Combining Data and Dynamics; David L. T. Anderson,Jürgen Willebrand Book 1989 Kluwer Academic Publishers 1989

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書目名稱Oceanic Circulation Models: Combining Data and Dynamics
編輯David L. T. Anderson,Jürgen Willebrand
視頻videohttp://file.papertrans.cn/701/700519/700519.mp4
叢書名稱Nato Science Series C:
圖書封面Titlebook: Oceanic Circulation Models: Combining Data and Dynamics;  David L. T. Anderson,Jürgen Willebrand Book 1989 Kluwer Academic Publishers 1989
描述This book which is the outcome of a NATO-Advanced Study Institute on Mod- elling the Ocean Circulation and Geochemical Tracer Transport is concerned with using models to infer the ocean circulation. Understanding our climate is one of the major problems of the late twentieth century. The possible climatic changes resulting from the rise in atmospheric carbon dioxide and other trace gases are of primary interest and the ocean pla. ys a ma. jor role in determining the magnitude, temporal evolution and regional distribution of those changes. Because of the poor observational basis the ocean general circulation is not well understood. The World Ocean Circulation Experiment (WOCE) which is now underway is an attempt to improve our knowledge of ocean dynamics and thermodynamics on global scales relevant to climate change. Despite those efforts, the oceanic data base is likely to remain scarce and it is crucial to use appropriate methods in order to extract the maximum amount of information from observations. The book contains a thorough analysis of methods to combine data of val‘ious types with dynamical concepts, and to assimilate data directly into ocean models. The properties of geocl
出版日期Book 1989
關(guān)鍵詞Atlantic Ocean; Distribution; Inversion; Map; Ocean; Scale; Southern Ocean; Wind; satellite; temperature
版次1
doihttps://doi.org/10.1007/978-94-009-1013-3
isbn_softcover978-94-010-6946-5
isbn_ebook978-94-009-1013-3Series ISSN 1389-2185
issn_series 1389-2185
copyrightKluwer Academic Publishers 1989
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Determining Diffusivities from Hydrographic Data by Inverse Methods with Applications to the Circum has been generalized in this respect (see e.g. Wunsch 1984). We should also mention Hogg’s model (Hogg 1987) which is an inversion of the advective-diffusive balances on two isopycnals subject to the geostrophic constraint between the isopycnals. The model was applied in the central North Atlantic.
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,Altimeter Data Assimilation into Ocean Circulation Models — Some Preliminary Results,ole in that they must be able to successfully extrapolate surface observational information downward into the ocean interior if they are to achieve success in reconstructing a realistic ocean circulation.
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Book 1989ith using models to infer the ocean circulation. Understanding our climate is one of the major problems of the late twentieth century. The possible climatic changes resulting from the rise in atmospheric carbon dioxide and other trace gases are of primary interest and the ocean pla. ys a ma. jor rol
7#
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1389-2185 oncerned with using models to infer the ocean circulation. Understanding our climate is one of the major problems of the late twentieth century. The possible climatic changes resulting from the rise in atmospheric carbon dioxide and other trace gases are of primary interest and the ocean pla. ys a m
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Introduction to Chemical Tracers of the Ocean Circulation,at play at the air-sea interface and how they affect the tracer concentrations at the surface. Finally in section 4 two recent studies on how tracers constrain diapycnal mixing in the deep ocean are discussed.
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Assimilation of XBT Data Using a Variational Technique,ns from this preliminary field. Operationally, a short range forecast constitutes the preliminary field. Constraints on the time evolution of the system are not imposed, since O.I. (as currently used) is an analysis at a single time.
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