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Atmospheric Dynamics

Authors:

  • Compact introduction to atmospheric dynamics

  • Focus on key concepts

  • Comprehensive textbook

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Table of contents (11 chapters)

  1. Front Matter

    Pages i-xiv
  2. Vortex Dynamics

    • Ulrich Achatz
    Pages 99-129
  3. The Dynamics of the Shallow-Water Equations

    • Ulrich Achatz
    Pages 131-177
  4. The Planetary Boundary Layer

    • Ulrich Achatz
    Pages 249-299
  5. The Meridional Circulation

    • Ulrich Achatz
    Pages 343-405
  6. Appendices

    • Ulrich Achatz
    Pages 507-539
  7. Back Matter

    Pages 541-554

About this book

This textbook is intended for both undergraduate and graduate courses in meteorology and atmospheric sciences, as well as for researchers working on theoretical and numerical aspects of weather and climate or on geophysical fluid dynamics. The treatment is concise, thorough, and self-contained. All necessary concepts are introduced, and the reader is given explicit guidance on all mathematical steps.

The book begins with a derivation of the equations of motion. These are then used to discuss fundamental aspects of weather and climate. The mechanisms behind vortical motions, that are known from the daily weather map, are discussed. Shallow-water theory is introduced as a tool for an efficient analysis of key concepts, such as atmospheric waves and synoptic-scale vortices. Quasigeostrophic theory is described and then used to explain the occurrence and mechanisms of extratropical weather by means of baroclinic instability. The specific properties of the atmospheric boundary layer are discussed, with a focus on the interaction between turbulence and mean flows. This is followed by a detailed look at the global atmospheric circulation, highlighting its control by Rossby waves and gravity waves.

At the same time, the reader is introduced to essential concepts that find applications in the field, such as balance by geostrophic and hydrostatic equilibrium, the role of entropy and potential temperature, potential vorticity, the Kelvin theorem, instability theory, the Reynolds equations, Eliassen-Palm and pseudo-momentum flux, multi-scale asymptotics, WKB theory, wave action, the transformed Eulerian mean, critical layers, and wave refraction.

The text is supplemented by appendices on important mathematical concepts and further elaborations of the main text. Chapter summaries and reading recommendations help the reader not merely to keep focus on the essentials, but just as well to broaden the horizon.

Authors and Affiliations

  • Institut für Atmosphäre und Umwelt, Goethe Universität, Frankfurt am Main, Germany

    Ulrich Achatz

About the author

Ulrich Achatz holds the chair for the Theory of Atmospheric Dynamics and Climate at Goethe Universität Frankfurt. He has a diploma in physics and a PhD in astronomy, both from the University of Bonn, and a habilitation degree in atmospheric physics from the University of Rostock. His research interests focus on the interaction of atmospheric motions with different scales, from turbulence over gravity and Rossby waves to the global atmospheric circulation, and its reliable description in weather and climate codes.

Bibliographic Information

Buy it now

Buying options

eBook USD 54.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 69.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access