1st Edition

Vibration Engineering Modeling, Simulation, Experimentation, and Applications

Edited By Nitesh P. Yelve, Susmita Naskar Copyright 2024
    108 Pages 88 B/W Illustrations
    by CRC Press

    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.

    1. Experimental Fault Identification in Journal Bearings Using Vibration-Based Condition Monitoring. 
    Pallavi Khaire and Vikas Phalle
    2. Advances in Vibration-Based Structural Health Monitoring in Civil Infrastructure. 
    K. Lakshmi
    3. 3D Vibration Control of Flexible Manipulator Using Inverse System and Strain Feedback. 
    Minoru Sasaki, Daiki Maeno, Muguro Joseph, Mizuki Takeda, Waweru Njeri, and Kojiro Matsushita
    4. Seismic Vibration Control of a Building Structure Using a Deep Liquid-Containing Tank with Submerged Cylindrical Pendulum Appendage. 
    Tanmoy Konar and Aparna (Dey) Ghosh
    5. Seismic Analysis of Base‑Isolated Liquid Storage Tanks Using Supplemental Clutching Inerter
    Ketan Narayanrao Bajad, Naqeeb Ul Islam, Radhey Shyam Jangid
    6. Optimal Piezo Patch Placement Using Genetic Algorithm and Performance Evaluation of Various Optimal Controllers for Active Vibration Control of Cantilever Beam. 
    Yusuf Khan, S.M. Khot, and Khan Nafees Ahmed
    7. Design and Fabrication of a Personnel Noise Enclosure for a Stone-Crushing Unit. 
    Ansaf Mohammed Ashraf, Rohan, P.P., Devsuriya Devan, Nithin, R., and Sudheesh Kumar, C. P.
    8. Investigation of Effect of Porous Material on Performance of Helmholtz Resonator. 
    Nilaj N. Deshmukh, Afzal Ansari, and Axin A. Samuel
    9. Application of Finite Element Method for Analyzing the Influence of Geometrical Parameters of Spur Gear Pair on Dynamic Behavior. 
    Achyut. S. Raut, S.M. Khot, and Vishal G. Salunkhe

    Biography

    Prof. Nitesh P. Yelve is presently working as an Assistant Professor in the Department of Mechanical Engineering of the Indian Institute of Technology (IIT) Bombay, India. He received his PhD from the Department of Aerospace Engineering of IIT Bombay. He also pursued the Postdoctoral Fellowship at the City University of Hong Kong. The areas of his research interest are structural health monitoring using ultrasonic guided waves and vibration methods, active vibration control, structural dynamics, and composite materials. He has presented 51 papers at national and international conferences in India and abroad, and published 32 papers in international journals. He is a Chartered Engineer and Certified Level II Vibration Analyst. He is a Fellow of The Institution of Engineers (India) and the Council of Vibration Specialists. He is also a Member of ASME and a Senior Member of IEEE and IIAV.

    Prof. Susmita Naskar is an Assistant Professor in the Faculty of Engineering & Physical Sciences at the University of Southampton. She worked as a postdoctoral research fellow at the Whiting School of Engineering of Johns Hopkins University in the collaboration of Army Research Lab, USA. She moved to the USA after completing her doctoral degree from the University of Aberdeen. Susmita's research interests and expertise broadly lie in the field of multi‑scale structural mechanics and multi‑physics analysis focusing on engineered materials and advanced composites involving the intersection of additive manufacturing, material characterization through computational design, and experiments in engineering. In addition, she is also working in advanced manufacturing techniques that are relevant to the fabrication of engineered materials like composites and metamaterial.