9781119401056-1119401054-Helicopter Flight Dynamics: Including a Treatment of Tiltrotor Aircraft (Aerospace Series)

Helicopter Flight Dynamics: Including a Treatment of Tiltrotor Aircraft (Aerospace Series)

ISBN-13: 9781119401056
ISBN-10: 1119401054
Edition: 3
Author: Padfield, Gareth D.
Publication date: 2018
Publisher: Wiley
Format: Hardcover 856 pages
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Book details

ISBN-13: 9781119401056
ISBN-10: 1119401054
Edition: 3
Author: Padfield, Gareth D.
Publication date: 2018
Publisher: Wiley
Format: Hardcover 856 pages

Summary

Acknowledged authors Padfield, Gareth D. wrote Helicopter Flight Dynamics: Including a Treatment of Tiltrotor Aircraft (Aerospace Series) comprising 856 pages back in 2018. Textbook and eTextbook are published under ISBN 1119401054 and 9781119401056. Since then Helicopter Flight Dynamics: Including a Treatment of Tiltrotor Aircraft (Aerospace Series) textbook was available to sell back to BooksRun online for the top buyback price or rent at the marketplace.

Description

The Book

The behaviour of helicopters and tiltrotor aircraft is so complex that understanding the physical mechanisms at work in trim, stability and response, and thus the prediction of Flying Qualities, requires a framework of analytical and numerical modelling and simulation. Good Flying Qualities are vital for ensuring that mission performance is achievable with safety and, in the first and second editions of Helicopter Flight Dynamics, a comprehensive treatment of design criteria was presented, relating to both normal and degraded Flying Qualities. Fully embracing the consequences of Degraded Flying Qualities during the design phase will contribute positively to safety. In this third edition, two new Chapters are included. Chapter 9 takes the reader on a journey from the origins of the story of Flying Qualities, tracing key contributions to the developing maturity and to the current position. Chapter 10 provides a comprehensive treatment of the Flight Dynamics of tiltrotor aircraft; informed by research activities and the limited data on operational aircraft. Many of the unique behavioural characteristics of tiltrotors are revealed for the first time in this book.

The accurate prediction and assessment of Flying Qualities draws on the modelling and simulation discipline on the one hand and testing practice on the other. Checking predictions in flight requires clearly defined mission tasks, derived from realistic performance requirements. High fidelity simulations also form the basis for the design of stability and control augmentation systems, essential for conferring Level 1 Flying Qualities. The integrated description of flight dynamic modelling, simulation and flying qualities of rotorcraft forms the subject of this book, which will be of interest to engineers practising and honing their skills in research laboratories, academia and manufacturing industries, test pilots and flight test engineers, and as a reference for graduate and postgraduate students in aerospace engineering.

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