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Experimental Vibration Analysis for Civil Engineering Structures: EVACES 2025 - Volume 3 [Kõva köide]

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  • Formaat: Hardback, 1030 pages, kõrgus x laius: 235x155 mm, 314 Illustrations, color; 300 Illustrations, black and white; XIX, 1030 p. 614 illus., 314 illus. in color., 1 Hardback
  • Sari: Lecture Notes in Civil Engineering 676
  • Ilmumisaeg: 25-Aug-2025
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3031961137
  • ISBN-13: 9783031961137
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  • Formaat: Hardback, 1030 pages, kõrgus x laius: 235x155 mm, 314 Illustrations, color; 300 Illustrations, black and white; XIX, 1030 p. 614 illus., 314 illus. in color., 1 Hardback
  • Sari: Lecture Notes in Civil Engineering 676
  • Ilmumisaeg: 25-Aug-2025
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3031961137
  • ISBN-13: 9783031961137
Teised raamatud teemal:

This volume presents peer-reviewed contributions from the 11th International Conference on Experimental Vibration Analysis for Civil Engineering Structures (EVACES), held in Porto, Portugal on July 2-4, 2025. The event brought together engineers, scientists, researchers, and practitioners, providing a forum for discussing and disseminating the latest developments and achievements in all major aspects of dynamic testing for civil engineering structures, including instrumentation, sources of excitation, data analysis, system identification, monitoring and condition assessment, in-situ and laboratory experiments, codes and standards, and vibration mitigation. The topics included but were not limited to: damage identification and structural health monitoring; testing, sensing and modeling; vibration isolation and control; system and model identification; coupled dynamical systems (including human–structure, vehicle–structure, and soil–structureinteraction); and application of advanced techniques involving the Internet of Things, robot, UAV, big data and artificial intelligence.

Predictive Vibration Diagnostics of Wind Turbine Aggregates.- Structural
health monitoring of mooring systems for floating wind turbines.- A
Physics-Informed Framework for Input Load Estimation in Offshore Wind
Turbines.- Damping ratio assessment for two full-scale operational onshore
wind turbines.