The book provides readers with a snapshot of recent research and industrial trends in field of industrial acoustics and vibration. Each chapter, accepted after a rigorous peer-review process, reports on a selected, original piece of work presented and discussed at the Second International Conference on Acoustics and Vibration (ICAV2018), which was organized by the Tunisian Association of Industrial Acoustics and Vibration (ATAVI) and held March 19-21, in Hammamet, Tunisia. The contributions cover advances in both theory and practice in a variety of subfields, such as: smart materials and structures; fluid-structure interaction; structural acoustics as well as computational vibro-acoustics and numerical methods. Further topics include: engines control, noise identification, robust design, flow-induced vibration and many others. This book provides a valuable resource for both academics and professionals dealing with diverse issues in applied mechanics. By combining advanced theories withindustrial issues, it is expected to facilitate communication and collaboration between different groups of researchers and technology users.
The book provides readers with a snapshot of recent research and industrial trends in field of industrial acoustics and vibration. Each chapter, accepted after a rigorous peer-review process, reports on a selected, original piece of work presented and discussed at the Second International Conference on Acoustics and Vibration (ICAV2018), which was organized by the Tunisian Association of Industrial Acoustics and Vibration (ATAVI) and held March 19-21, in Hammamet, Tunisia. The contributions cover advances in both theory and practice in a variety of subfields, such as: smart materials and structures; fluid-structure interaction; structural acoustics as well as computational vibro-acoustics and numerical methods. Further topics include: engines control, noise identification, robust design, flow-induced vibration and many others. This book provides a valuable resource for both academics and professionals dealing with diverse issues in applied mechanics. By combining advanced theories withindustrial issues, it is expected to facilitate communication and collaboration between different groups of researchers and technology users.
Reports on new advances in condition monitoring of both acoustics emissions and vibration Covers key methods, including artificial neural networks and finite element modeling Describes a number of case studies in a wide range of application fields
Tahar Fakhfakh
Noise control Non-stationary vibration signals Effects of vibration loading Early fault detection Stability of rotating machines Computational vibro-acoustics Dynamic response of planetary gears Numerical methods in acoustics Modeling Resonance Sound transmission loss Analysis of pitting defects Planetary gear transmission Multidisciplinary design optimization problems Optimal design of shape memory alloy Vibration analysis of beam