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Titlebook: Advanced Physical Oceanographic Numerical Modelling; James J. O’Brien (Secretary of the Navy Professor) Book 1986 Springer Science+Busines

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发表于 2025-3-21 19:38:00 | 显示全部楼层 |阅读模式
期刊全称Advanced Physical Oceanographic Numerical Modelling
影响因子2023James J. O’Brien (Secretary of the Navy Professor)
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学科分类Nato Science Series C:
图书封面Titlebook: Advanced Physical Oceanographic Numerical Modelling;  James J. O’Brien (Secretary of the Navy Professor) Book 1986 Springer Science+Busines
影响因子This book is a direct result of the NATO Advanced Study Institute held in Banyuls-sur-mer, France, June 1985. The Institute had the same title as this book. It was held at Laboratoire Arago. Eighty lecturers and students from almost all NATO countries attended. The purpose was to review the state of the art of physical oceanographic numerical modelling including the parameterization of physical processes. This book represents a cross-section of the lectures presented at the ASI. It covers elementary mathematical aspects through large scale practical aspects of ocean circulation calculations. It does not encompass every facet of the science of oceanographic modelling. We have, however, captured most of the essence of mesoscale and large-scale ocean modelling for blue water and shallow seas. There have been considerable advances in modelling coastal circulation which are not included. The methods section does not include important material on phase and group velocity errors, selection of grid structures, advanced methods to conservation in highly nonlinear systems, inverse methods and other important ideas for modern ocean modelling. Hopefully, this book will provide a foundation of
Pindex Book 1986
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发表于 2025-3-21 21:49:22 | 显示全部楼层
1389-2185 le as this book. It was held at Laboratoire Arago. Eighty lecturers and students from almost all NATO countries attended. The purpose was to review the state of the art of physical oceanographic numerical modelling including the parameterization of physical processes. This book represents a cross-se
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Biogeochemistry of a Subalpine Ecosystemmethods are shown using a time-dependent Stommel model on a spherical grid. Solutions with rectangular and irregular coastlines are presented. The multigrid method is faster in the initial phases of a spin up process for a rectangular ocean up to a factor of 5 and for irregular coastlines up to a factor of 3.
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Biogeography and Ecology in Antarcticabeen rewritten in the explicit Cyber 205 Vector Fortran. Sections of model code before and after vectorization are presented to illustrate the usage of the special features of the Cyber 205. The vectorized version of the model runs approximately 32 times faster than the scalar version. Some key results of the model simulation are also described.
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Gene E. Likens,F. Herbert Bormannn stability and accuracy, and speed becomes a lesser priority. Thus numerical solutions for elliptic problems provide the framework for introducing finite differences for PDEs. These approximations lead to large sets of algebraic equations which require solution.
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https://doi.org/10.1007/978-3-030-26296-9g because of the structure of the partial differential equations involved and the numerical algorithms one must use to solve them. Ocean models usually “vectorize” very easily and require the storage of a large number of variables at a particular instant, enabling one to take full advantage of the capabilities of a supercompter.
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Introductionwly emerged leaf samples between May 2011 and November 2012 from 20 sites in the Fukushima Prefecture. Autoradiograph images indicated that woody plants tend to accumulate radiocesium in their newly emerged leaves than herbaceous plants due to translocation-deposited radiocesium on old stems and/or
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