Aeroelasticity deals with the fluid-structure interaction problems in general, even though the subject traditionally evolved because of the special need in the design of aerospace structures. This book covers aeroelasticity along with some non-aerospace topics. It requires no prior courses on the theory of vibrations. The book provides the background of mechanics and strength of materials as well as solutions of differential equations. It contains extensive examples and case studies regarding aeroelasticity.
Aeroelasticity deals with the fluid-structure interaction problems in general, even though the subject traditionally evolved because of the special need in the design of aerospace structures. This book covers aeroelasticity along with some non-aerospace topics. It requires no prior courses on the theory of vibrations. The book provides the background of mechanics and strength of materials as well as solutions of differential equations. It contains extensive examples and case studies regarding aeroelasticity.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Rama Bhat is a professor of mechanical and industrial engineering at Concordia University, Montreal, Canada. His research areas include dynamics of structures, vibration of continuous systems, rotor dynamics, sound transmission into aircraft fuselage, dynamics of micro-electro-mechanical systems, ride dynamics and biodynamics. He has published widely and taught courses in the above areas. In particular, he has been teaching a course on the principles of aeroelasticity for over two decades. He was awarded the NASA Award for his contribution as a member of the team that developed the "PROSSS-Programming Structured Synthesis System" and is a Fellow of several technical societies.
Inhaltsangabe
Introduction. Elementary Aerodynamics. Static Aeroelasticity. Divergence of a Lifting Surface. Divergence of a Typical Section with a Control Surface. Dynamic Aeroelasticity. One-Dimensional Aeroelastic Model of Airfoils. Rolling of a Straight Wing. Flutter of a Cantilever Wing. Approximate Techniques of Modeling Continuous Systems. Nonlinear Aeroelasticity. Unsteady Aerodynamics. References.
Introduction. Elementary Aerodynamics. Static Aeroelasticity. Divergence of a Lifting Surface. Divergence of a Typical Section with a Control Surface. Dynamic Aeroelasticity. One-Dimensional Aeroelastic Model of Airfoils. Rolling of a Straight Wing. Flutter of a Cantilever Wing. Approximate Techniques of Modeling Continuous Systems. Nonlinear Aeroelasticity. Unsteady Aerodynamics. References.
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