
Vibration Engineering
Modeling, Simulation, Experimentation, and Applications
- 108 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Vibration Engineering
Modeling, Simulation, Experimentation, and Applications
About this book
Vibration Engineering presents recent developments in the field of engineering, encompassing industrial norms, applications within the finite element method, infrastructure safety assessment, and active vibration control strategies. It offers a study in seismic vibration control and analysis for building structures and liquid storage tanks.
Spanning across the multiple domains of vibration engineering, the book highlights machinery diagnostics, modal analysis, energy harvesting, balancing, vibration isolation, and human-vibration interaction. It discusses experimental fault identification in journal bearings using vibration-based methods. This book also considers advances in vibration-based structural health monitoring of civil infrastructures.
This book will be a useful reference for industry professionals and engineers facing challenges while dealing with the vibrations in the fields of mechanical, aerospace, structural, and civil engineering.
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Information
Table of contents
- Cover
- Half Title
- Title Page
- Copyright Page
- Table of Contents
- Preface
- Editors
- Contributors
- Chapter 1 Experimental Fault Identification in Journal Bearings Using Vibration-Based Condition Monitoring
- Chapter 2 Advances in Vibration-Based Structural Health Monitoring of Civil Infrastructure
- Chapter 3 3D Vibration Control of Flexible Manipulator Using Inverse System and Strain Feedback
- Chapter 4 Seismic Vibration Control of a Building Structure Using a Deep Liquid-Containing Tank with Submerged Cylindrical Pendulum Appendage
- Chapter 5 Seismic Analysis of Base-Isolated Liquid Storage Tanks Using Supplemental Clutching Inerter
- Chapter 6 Optimal Piezo Patch Placement Using Genetic Algorithm and Performance Evaluation of Various Optimal Controllers for Active Vibration Control of Cantilever Beam
- Chapter 7 Design and Fabrication of a Personnel Noise Enclosure for a Stone-Crushing Unit
- Chapter 8 Investigation of Effect of Porous Material on Performance of Helmholtz Resonator
- Chapter 9 Application of Finite Element Method for Analyzing the Influence of Geometrical Parameters of Spur Gear Pair on Dynamic Behavior
- Index