Vibration-based techniques for damage detection and localization in engineering structures
Contributor(s): Nobari, Ali S. [ed.] | Aliabadi, M. H. Ferri [ed.].
Series: Computational and experimental methods in structures ; / edited by Ferri M. H. Aliabadi; v.10. Publisher: New Jersey World Scientific 2018Description: x, 243p.ISBN: 9781786344960.Subject(s): Vibration-based techniquesDDC classification: 624.176 | V659 Summary: In the oil and gas industries, large companies are endeavoring to find and utilize efficient structural health monitoring methods in order to reduce maintenance costs and time. Through an examination of the vibration-based techniques, this title addresses theoretical, computational and experimental methods used within this trend. By providing comprehensive and up-to-date coverage of established and emerging processes, this book enables the reader to draw their own conclusions about the field of vibration-controlled damage detection in comparison with other available techniques. The chapters offer a balance between laboratory and practical applications, in addition to detailed case studies, strengths and weakness are drawn from a broad spectrum of information.Item type | Current location | Collection | Call number | Status | Date due | Barcode | Item holds |
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Books | PK Kelkar Library, IIT Kanpur | General Stacks | 624.176 V659 (Browse shelf) | Available | A183699 |
Browsing PK Kelkar Library, IIT Kanpur Shelves , Collection code: General Stacks Close shelf browser
624.176 Si64b Buckling experiments [v. 2] | 624.176 Si64b Buckling experiments [v.1] | 624.176 Sz74f Formulas for mechanical and structural shock and impact | 624.176 V659 Vibration-based techniques for damage detection and localization in engineering structures | 624.176 W184E EXACT SOLUTIONS FOR BUCKLING OF STRUCTURAL MEMBERS | 624.176 W184s Structural vibration | 624.176 Y9s Structural plasticity |
In the oil and gas industries, large companies are endeavoring to find and utilize efficient structural health monitoring methods in order to reduce maintenance costs and time. Through an examination of the vibration-based techniques, this title addresses theoretical, computational and experimental methods used within this trend. By providing comprehensive and up-to-date coverage of established and emerging processes, this book enables the reader to draw their own conclusions about the field of vibration-controlled damage detection in comparison with other available techniques. The chapters offer a balance between laboratory and practical applications, in addition to detailed case studies, strengths and weakness are drawn from a broad spectrum of information.
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