Topics in Experimental Dynamics Substructuring and Wind Turbine Dynamics, Volume 2
eBook - ePub

Topics in Experimental Dynamics Substructuring and Wind Turbine Dynamics, Volume 2

Proceedings of the 30th IMAC, A Conference on Structural Dynamics, 2012

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eBook - ePub

Topics in Experimental Dynamics Substructuring and Wind Turbine Dynamics, Volume 2

Proceedings of the 30th IMAC, A Conference on Structural Dynamics, 2012

About this book

Topics in Experimental Dynamics Substructuring and Wind Turbine Dynamics, Volume 2, Proceedings of the 30th IMAC, A Conference and Exposition on Structural Dynamics, 2012, the second volume of six from the Conference, brings together 31 contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Structural Dynamics.

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Information

Year
2025
eBook ISBN
9781040601235

Table of contents

  1. Cover
  2. Series Page
  3. Title Page
  4. Copyright Page
  5. Preface
  6. Table of Contents
  7. 1 Tutorial on Experimental Dynamic Substructuring Using the Transmission Simulator Method
  8. 2 Experimental-Analytical Substructure Model Sensitivity Analysis for Cutting Machine Chatter Prediction
  9. 3 Eliminating Indefinite Mass Matrices with the Transmission Simulator Method of Substructuring
  10. 4 Using Substructuring to Predict the Human Hand Influence on a Mechanical Structure
  11. 5 Simple Experiments to Validate Modal Substructure Models
  12. 6 Experimental Realization of System-Level Vibration by Use of Single Component Based on Virtual Boundary Condition Concept
  13. 7 An Introduction to the SEM Substructures Focus Group Test Bed - The Ampair 600 Wind Turbine
  14. 8 Modal Assessment of Wind Turbine Blade in Preparation of Experimental Substructuring
  15. 9 Comparison of Some Wind Turbine Blade Tests in Various Configurations
  16. 10 Consideration of Interface Damping in Dynamic Substructuring
  17. 11 Direct Hybrid Formulation for Substructure Decoupling
  18. 12 Substructuring with Nonlinear Subcomponents: A Nonlinear Normal Mode Perspective
  19. 13 An Effective Method for Assembling Impulse Response Functions to Linear and Non-linear Finite Element Models
  20. 14 Truncating the Impulse Responses of Substructures to Speed Up the Impulse-Based Substructuring
  21. 15 Application of Residual Vectors to Superelement Modeling of an Offshore Wind Turbine Foundation
  22. 16 Demonstrating Predictive Capability of Validated Wind Turbine Blade Models
  23. 17 Towards the Experimental Assessment of NLBeam for Modeling Large
  24. 18 Wind Turbine Experimental Dynamic Substructure Development
  25. 19 Validation of a Finite Element Model Used for Dynamic Stress-Strain Prediction
  26. 20 Dynamic Stress-Strain on Turbine Blade Using Digital Image Correlation Techniques Part 1: Static Load and Calibration
  27. 21 Dynamic Stress-Strain on Turbine Blades Using Digital Image Correlation Techniques Part 2: Dynamic Measurements
  28. 22 Structural Health Monitoring of Wind Turbine Blades Under Fatigue Loads
  29. 23 Dynamic Characterization of Whisper 500 Turbine Blade
  30. 24 Developing a Finite Element Model in Conjunction with Modal Test for Wind Turbine Blade Models
  31. 25 Dynamic Stress-Strain Prediction from Limited Measurements in the Presence of Structural Defects
  32. 26 On the Mode Based Simulation of Dry Friction inside Lap Joints
  33. 27 Efficient Updating of Static Modes in the Craig-Bampton Reduction Basis
  34. 28 Comparison of CMS, Krylov and Balanced Truncation Based Model Reduction from a Mechanical Application Engineer’s Perspective
  35. 29 Vertical Axis Wind Turbine Operational Modal Analysis in Sheared Wind Flow
  36. 30 Output-Only Estimation of Wind Induced Stresses in Structures
  37. 31 Modal Testing of 9 m CX-100 Turbine Blades

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Yes, you can access Topics in Experimental Dynamics Substructuring and Wind Turbine Dynamics, Volume 2 by R. Mayes,D. Rixen,D.T. Griffith,D. De Klerk in PDF and/or ePUB format. We have over 1.5 million books available in our catalogue for you to explore.