
- 380 pages
- English
- PDF
- Available on iOS & Android
Advances in Vibration Engineering and Structural Dynamics
About this book
The aim of this book is to present recent and innovative advances on research studies and engineering applications in important areas of vibration engineering and structural dynamics. The fourteen chapters of the book cover a wide range of interesting issues related to modelling, rotordynamics, vibration control, estimation and identification, modal analysis, dynamic structures, finite element analysis, numerical methods and other practical engineering applications and theoretical developments on this very broad matter. The audience of the book includes researchers, professors, engineers, practitioners, engineering students and new comers in a variety of disciplines seeking to know more about the state of the art, challenging open problems and innovative solution proposals in vibration engineering and structural dynamics.
Frequently asked questions
- Essential is ideal for learners and professionals who enjoy exploring a wide range of subjects. Access the Essential Library with 800,000+ trusted titles and best-sellers across business, personal growth, and the humanities. Includes unlimited reading time and Standard Read Aloud voice.
- Complete: Perfect for advanced learners and researchers needing full, unrestricted access. Unlock 1.4M+ books across hundreds of subjects, including academic and specialized titles. The Complete Plan also includes advanced features like Premium Read Aloud and Research Assistant.
Please note we cannot support devices running on iOS 13 and Android 7 or earlier. Learn more about using the app.
Information
Table of contents
- Advances in Vibration Engineering and Structural Dynamics
- Contents
- Preface
- Chapter 1 Rotors on Active Magnetic Bearings: Modeling and Control Techniques
- Chapter 2 Estimation and Active Damping of Unbalance Forces in Jeffcott-Like Rotor-Bearing Systems
- Chapter 3 Rotordynamic Stabilization of Rotors on Electrodynamic Bearings
- Chapter 4 Free Vibration Analysis of Spinning Spindles: A Calibrated Dynamic Stiffness Matrix Method
- Chapter 5 Vibration Control of Flexible Structures Using Semi-Active Mount : Experimental Investigation
- Chapter 6 Recent Advances on Force Identification in Structural Dynamics
- Chapter 7 Vibration and Optimization Analysis of Large-Scale Structures using Reduced-Order Models and Reanalysis Methods
- Chapter 8 Vibration Analysis of Cracked Beams Using the Finite Element Method
- Chapter 9 Vibrations of Cylindrical Shells
- Chapter 10 A Simplified Analytical Method for High-Rise Buildings
- Chapter 11 An Analysis of the Beam-to-Beam Connections Effect and Steel- Concrete Interaction Degree Over the Composite Floors Dynamic Response
- Chapter 12 Parametric Vibration Analysis of Transmission Mechanisms Using Numerical Methods
- Chapter 13 Vibration of Satellite Solar Array Paddle Caused by Thermal Shock When a Satellite Goes Through the Eclipse
- Chapter 14 Optimal Vibrotactile Stimulation Activates the Parasympathetic Nervous System