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Lagrangian Fluid Dynamics

Lagrangian Fluid Dynamics

Lagrangian Fluid Dynamics

Andrew Bennett, Oregon State University
March 2006
Hardback
9780521853101
$142.00
USD
Hardback
USD
eBook

    The emergence of observing systems such as acoustically-tracked floats in the deep ocean, and surface drifters navigating by satellite has seen renewed interest in Lagrangian fluid dynamics. Starting from the foundations of elementary kinematics and assuming some familiarity of Eulerian fluid dynamics, this 2006 book reviews the classical and new exact solutions of the Lagrangian framework, and then addresses the general solvability of the resulting general equations of motion. A unified account of turbulent diffusion and dispersion is offered, with applications among others to plankton patchiness in the ocean. Written at graduate level, the book provides the first detailed and comprehensive analytical development of the Lagrangian formulation of fluid dynamics, of interest not only to applied mathematicians but also oceanographers, meteorologists, mechanical engineers, astrophysicists and indeed all investigators of the dynamics of fluids.

    • The first book that gives a unified account of Lagrangian fluid dynamics
    • Well-respected and experienced author in the fields of oceanography and mathematics
    • Written at graduate level and can be used as an academic reference for oceanographers, meteorologists, mechanical engineers, astrophysicists or all investigators of the dynamics of fluids

    Product details

    March 2006
    Hardback
    9780521853101
    310 pages
    229 × 152 × 19 mm
    0.59kg
    20 b/w illus.
    Available

    Table of Contents

    • Part I. The Lagrangian Formulation:
    • 1. Lagrangian kinematics
    • 2. Lagrangian statistics
    • 3. Lagrangian dynamics
    • 4. Coordinates
    • 5. Real fluids
    • Part II. Lagrangian Flows:
    • 6. Some analytical Lagrangian solutions
    • 7. Waves, instabilities and vortices
    • 8. Viscous incompressible flow
    • 9. General solvability
    • Part III. Diffusion:
    • 10. Absolute dispersion
    • 11. Relative dispersion
    • 12. Convective subranges, scalar variance spectrum
    • 13. Diffusion
    • Part IV. Lagrangian Data:
    • 14. Observing systems
    • 15. Data analysis: the single particle
    • 16. Data analysis: particle clusters
    • References.
    Resources for
    Type
    Files for Chapter Eight
    Size: 24.52 KB
    Type: application/zip
    Files for Chapter Eleven
    Size: 50.1 KB
    Type: application/zip
    Files for Chapter Seven
    Size: 27.47 KB
    Type: application/zip
    Files for Chapter Six
    Size: 164.78 KB
    Type: application/zip
    Errata File
    Size: 30.87 KB
    Type: application/zip
      Author
    • Andrew Bennett , Oregon State University

      Andrew Bennett is Professor at the College of Oceanic and Atmospheric Sciences, Oregon State University.