Low-Speed Aerodynamics. Second Edition

Allen Plotkin

,

Joseph Katz

Note moyenne 
Allen Plotkin et Joseph Katz - Low-Speed Aerodynamics. Second Edition.
LOW-SPEED AERODYNAMICS is important in the design and operation of aircraft flying at low Mach number, and ground and marine vehicles. This book offers... Lire la suite
97,70 €
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Résumé

LOW-SPEED AERODYNAMICS is important in the design and operation of aircraft flying at low Mach number, and ground and marine vehicles. This book offers a modern treatment of the subject, both the theory of inviscid, incompressible, and irrotational aerodynamics and the computational techniques now available to solve complex problems. A unique feature of the text is that the computational approach (from a single vortex element to a three-dimensional panel formulation) is interwoven throughout. Thus, the reader can learn about classical methods of the past while also learning how to use numerical methods to solve real-world aerodynamic problems. This second edition updates the first edition with a new chapter on the laminar boundary layer, the latest versions of computational techniques, and additional coverage of interaction problems. It includes a systematic treatment of two-dimensional panel methods and a detailed presentation of computational techniques for three -dimensional and unsteady flows. With extensive illustrations and examples, this book will be useful for senior and beginning graduate-level courses, as well as a helpful reference tool for practicing engineers.

Sommaire

    • Fundamentals of Inviscid, Incompressible Flow
    • General Solution of the Incompressible, Potential Flow Equations
    • Small-Disturbance Flow over Three-Dimensional Wings : Formulation of the Problem
    • Small-Disturbance Flow over Two-Dimensional Airfoils
    • Exact Solutions with Complex Variables
    • Perturbation Methods
    • Three-Dimensional Small-Disturbance Solutions
    • Numerical (Panel) Methods
    • Singularity Elements and Influence Coefficients
    • Two-dimensional Numerical Solutions
    • Three-Dimensional Numerical Solutions
    • Unsteady Incompressible Potential Flow
    • The Laminar Boundary Layer
    • Enhancement of the Potential Flow Model

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À propos des auteurs

Joseph Katz is Professor of Aerospace Engineering and Engineering Mechanics at San Diego State University. Allen Plotkin is Professor of Aerospace Engineering and Engineering Mechanics at San Diego State University.

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