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Principles of Helicopter Aerodynamics (Cambridge Aerospace Series)

Principles of Helicopter Aerodynamics (Cambridge Aerospace Series)
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Principles of Helicopter Aerodynamics (Cambridge Aerospace Series)

 
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NU-BER-00095260

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This book is a modern treatment of the aerodynamic principles of helicopters and rotating-wing vertical lift aircraft. Part one covers the technical history of helicopter flight, basic methods of rotor aerodynamics, and performance-related design issues. Part two contains advanced topics in helicopter aerodynamics, including airfoil flows, unsteady aerodynamics, dynamic stall, rotor wakes, and rotor-airframe aerodynamic interactions. Part three contains chapters on autogiros and advanced aerodynamic analysis and a new chapter on the aerodynamics of wind turbines. The book is extensively illustrated and contains homework problems.

 
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Product Details
Author:J. Gordon Leishman D.Sc.(Eng.) Ph.D. F.R.Ae.S.
Hardcover:864 pages
Publisher:Cambridge University Press
Publication Date:April 24, 2006
Language:English
ISBN:0521858607
Package Length:10.3 inches
Package Width:7.2 inches
Package Height:1.7 inches
Package Weight:3.55 pounds
Average Customer Rating: based on 1 reviews

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Average Customer Review:5.0 ( 1 customer reviews )
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39 of 40 found the following review helpful:


5A must have for all rotorcraft engineers  Aug 04, 2000 By M.Tarascio
As an aerospace engineer I have read many books on rotorcraft and I must admit that this is the most up to date and useful text on rotorcraft that I have had the pleasure to read. There are many aspects of the text that stand out, however the one I found most useful, especially as a graduate student, was that the equations are derived from engineering basics and are accompanied by clear explanations of the principles involved. The text and equations are also supplimented by clear diagrams that serve to enhance understanding of the more complex topics covered. All in all a great book and one that I would highly recommend to both rotorcraft students and practicing engineers alike.

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
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