Description

A fully systematic treatment of the dynamics of vortex structures and their interactions in a viscous density stratified fluid is provided by this book. The various compact vortex structures such as monopoles, dipoles, quadrupoles, as well as more complex ones are considered theoretically from a physical point of view.

Another essential feature of the book is the close combination of theoretical analyses with numerous examples of real flows.

The book further provides real physical insight and base for postgraduate students specializing in geophysical and applied fluid dynamics. Among the family of vortex structures considered in the book, the most remarkable are the vortex dipoles. These are fundamental elements of the complex chaotic flows associated with the term 'two-dimensional turbulence'. The appearance of these structures in initially chaotic flows is currently of great interest because of a myriad of geophysical applications. Specific examples include the mushroom-like currents discovered from satellite images of the upper ocean. The book is well illustrated with many original photographs (some in colour) and diagrams.

Vortex Structures in a Stratified Fluid: Order from Chaos

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Hardback by Sergey I. Voropayev , Y.D. Afanasyev

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A fully systematic treatment of the dynamics of vortex structures and their interactions in a viscous density stratified fluid is... Read more

    Publisher: Taylor & Francis Ltd
    Publication Date: 15/05/1994
    ISBN13: 9780412405600, 978-0412405600
    ISBN10: 0412405601

    Number of Pages: 240

    Non Fiction , Mathematics & Science , Education

    Description

    A fully systematic treatment of the dynamics of vortex structures and their interactions in a viscous density stratified fluid is provided by this book. The various compact vortex structures such as monopoles, dipoles, quadrupoles, as well as more complex ones are considered theoretically from a physical point of view.

    Another essential feature of the book is the close combination of theoretical analyses with numerous examples of real flows.

    The book further provides real physical insight and base for postgraduate students specializing in geophysical and applied fluid dynamics. Among the family of vortex structures considered in the book, the most remarkable are the vortex dipoles. These are fundamental elements of the complex chaotic flows associated with the term 'two-dimensional turbulence'. The appearance of these structures in initially chaotic flows is currently of great interest because of a myriad of geophysical applications. Specific examples include the mushroom-like currents discovered from satellite images of the upper ocean. The book is well illustrated with many original photographs (some in colour) and diagrams.

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