Our systems are now restored following recent technical disruption, and we’re working hard to catch up on publishing. We apologise for the inconvenience caused. Find out more

Recommended product

Popular links

Popular links


Inverse Methods in Physical Oceanography

Inverse Methods in Physical Oceanography

Inverse Methods in Physical Oceanography

Andrew F. Bennett, College of Oceanic and Atmospheric Sciences, Oregon State University
March 2008
Paperback
9780521055284

    Observations of ocean circulation have increased as a result of international field programmes and of remote sensing systems on artificial earth satellites. Oceanographers are increasingly turning to inverse methods for combining these observations with numerical models of ocean circulation. Professor Bennett's work explores the potential for inverse theory, emphasizing possibilities rather than expedient or rudimentary applications. In addition to interpolating the data and adding realism to the model solutions, the methods can yield estimates for unobserved flow variables, forcing fields, and model parameters. Inverse formulations can resolve ill-posed modelling problems, lead to design criteria for oceanic observing systems, and enable the testing of models as scientific hypothesis. Exercises of varying difficulty rehearse technical skills and supplement the central theoretical development. Thus this book will be invaluable for environmental scientists and engineers, advanced undergraduates in applied mathematics, and graduate students in physical oceanography.

    • Rigorous mathematical treatment of the subject
    • Well-respected author
    • Covers important topics in both oceanography and meteorology

    Reviews & endorsements

    '… can be warmly recommended to every reader and library.' Mitteilungen German Geophysical Society

    See more reviews

    Product details

    March 2008
    Paperback
    9780521055284
    368 pages
    228 × 151 × 20 mm
    0.553kg
    102 b/w illus. 9 tables
    Available

    Table of Contents

    • Preface
    • 1. Finite-dimensional inverse theory
    • 2. The smoothing of observations
    • 3. Data assimilation
    • 4. The spatial structure of the Kalman filter
    • 5. Generalized inverses of dynamical models
    • 6. Antenna analysis
    • 7. Nonlinear quasi-geostrophic models
    • 8. Open-ocean modeling: quasi-geostrophy
    • 9. Primitive-equation models
    • 10. Outstanding problems
    • Bibliography
    • Subject index.
    Resources for
    Type
    Inverse Ocean Modeling (IOM) website
      Author
    • Andrew F. Bennett , College of Oceanic and Atmospheric Sciences, Oregon State University