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Theoretical Aerodynamics

List Price: $22.95
SKU:
9780486619804
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  • Product Details

    Author:
    L. M. Milne-Thomson
    Series:
    Dover Books on Aeronautical Engineering
    Format:
    Paperback
    Pages:
    464
    Publisher:
    Dover Publications (February 17, 2011)
    Language:
    English
    ISBN-13:
    9780486619804
    ISBN-10:
    048661980X
    Weight:
    19.2oz
    Dimensions:
    5.5" x 8.5"
    Case Pack:
    18
    File:
    Dover-Dover_08042026_P10435224_onix30_Complete-20260803.xml
    Folder:
    Dover
    As low as:
    $21.80
    List Price:
    $22.95
    Publisher Identifier:
    P-DOVER
    Discount Code:
    D
    Audience:
    College/higher education
    Pub Discount:
    65
    Imprint:
    Dover Publications
  • Overview

    A classic in its field, this university text and reference book has long been one of the basic works. This is the complete reprinting of the revised (1966) edition which brings the subject up to date, including a complete and probably unique chapter on conical flow round sweptback wings.
    After two introductory chapters on the simplifying assumptions demanded for the study and a final chapter on vectors, the author treats the material in four fairly well-defined parts: (1) two-dimensional aerofoils (two-dimensional motion, rectilinear vortices, the circular cylinder as an aerofoil, Joukowski's transformation, theory of two-dimensional aerofoils, and thin aerofoils); (2) three-dimensional aerofoils (induced velocity, aerofoils of finite aspect ratio, the lifting line theory, lifting surface theory, propellers, and wind tunnel corrections); (3) subsonic and supersonic flow (subsonic flow, supersonic flow, supersonic sweptback and delta wings); and, (4) the aircraft as a whole (simple flight problems, moments, and stability). The treatment is founded on complex variable and vector methods, both of which are explained in the self-contained text. A wealth of problems, illustrations, and cross-references add to the book's value both as a text and a reference. The only prerequisite is a knowledge of the elements of the differential and integral calculus.