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Ambient vibration monitoring
AMBIENT VIBRATION MONITORING; Contents; PREFACE; ACKNOWLEDGEMENTS; SUMMARY; 1 INTRODUCTION; 2 OBJECTIVES OF APPLICATIONS; 3 FEEDBACK FROM MONITORING TO BRIDGE DESIGN; 4 PRACTICAL MEASURING METHODS; 5 PRACTICAL EVALUATION METHODS; 6 THEORETICAL BASES; 7 OUTLOOK; 8 EXAMPLES FOR APPLICATION; APPENDIX; INDEX.
In-operation vibration monitoring for complex mechanical structures and rotating machines is of key importance in many industrial areas such as aeronautics (wings and other structures subject to strength), automobile (gearbox mounting with a sports car body), rail transportation, power engineering (rotating machines, core and pipes of nuclear power plants), and civil engineering (large buildings subject to hurricanes or earthquakes, bridges, dams, offshore structures)
Ambient vibration monitoring
AMBIENT VIBRATION MONITORING; Contents; PREFACE; ACKNOWLEDGEMENTS; SUMMARY; 1 INTRODUCTION; 2 OBJECTIVES OF APPLICATIONS; 3 FEEDBACK FROM MONITORING TO BRIDGE DESIGN; 4 PRACTICAL MEASURING METHODS; 5 PRACTICAL EVALUATION METHODS; 6 THEORETICAL BASES; 7 OUTLOOK; 8 EXAMPLES FOR APPLICATION; APPENDIX; INDEX.
In-operation vibration monitoring for complex mechanical structures and rotating machines is of key importance in many industrial areas such as aeronautics (wings and other structures subject to strength), automobile (gearbox mounting with a sports car body), rail transportation, power engineering (rotating machines, core and pipes of nuclear power plants), and civil engineering (large buildings subject to hurricanes or earthquakes, bridges, dams, offshore structures)
Ambient vibration monitoring
Wenzel, Helmut (author) / Pichler, Dieter
2005
1 Online-Ressource (xvi, 291 pages)
Includes bibliographical references and index
Book
Electronic Resource
English
DDC:
624.2/52
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