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Fundamentals of Modern Unsteady Aerodynamics

  • Book
  • © 2016

Overview

  • Provides a clear introduction to the fundamental physics and basic equations of aerodynamics
  • Covers modern topics related to developments in recent years
  • This 2nd edition includes new numerical examples, a section on the ground effect, and state-space representation
  • Includes supplementary material: sn.pub/extras

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Table of contents (9 chapters)

Keywords

About this book

In this book, the author introduces the concept of unsteady aerodynamics and its underlying principles. He provides the readers with a comprehensive review of the fundamental physics of free and forced unsteadiness, the terminology and basic equations of aerodynamics ranging from incompressible flow to hypersonics. The book also covers modern topics related to the developments made in recent years, especially in relation to wing flapping for propulsion. The book is written for graduate and senior year undergraduate students in aerodynamics and also serves as a reference for experienced researchers. Each chapter includes ample examples, questions, problems and relevant references.
 
The treatment of these modern topics has been completely revised end expanded for the new edition. It now includes new numerical examples, a section on the ground effect, and state-space representation.

Authors and Affiliations

  • Istanbul, Turkey

    Ülgen Gülçat

Bibliographic Information

  • Book Title: Fundamentals of Modern Unsteady Aerodynamics

  • Authors: Ülgen Gülçat

  • DOI: https://doi.org/10.1007/978-981-10-0018-8

  • Publisher: Springer Singapore

  • eBook Packages: Engineering, Engineering (R0)

  • Copyright Information: Springer Science+Business Media Singapore 2016

  • Softcover ISBN: 978-981-10-1150-4Published: 23 August 2016

  • eBook ISBN: 978-981-10-0018-8Published: 31 October 2015

  • Edition Number: 2

  • Number of Pages: XIV, 395

  • Number of Illustrations: 5 b/w illustrations, 194 illustrations in colour

  • Topics: Aerospace Technology and Astronautics, Classical and Continuum Physics, Engineering Fluid Dynamics

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