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Anwendung und Entwicklung eines Doppelunwuchtrotors zur aktiven Schwingungsdämpfung von der Eeklo Fußgängerbrücke
The twin rotor damper (TRD) is a device which uses the centrifugal forces of eccentrically rotating masses for active vibration control. Previous research has shown that the TRD is an effective and power efficient damping device. A prototype device was developed to evaluate these research results on a real structure. Footbridges are often, due to their slim and lightweight structure, susceptible to pedestrian induced vibrations. In this contribution, the development and implementation of the prototype on a footbridge in Belgium, the Eeklo footbridge, is presented. Here the focus is the development and construction of the prototype. For this purpose, a numerical investigation is performed to help determine the construction parameters of the prototype. The in-field experiments show that the TRD can effectively damp the pedestrian- induced vibration of the Eecklo footbridge in an power efficient manner with a prototype to structure mass-ratio of ca. 1%.
Anwendung und Entwicklung eines Doppelunwuchtrotors zur aktiven Schwingungsdämpfung von der Eeklo Fußgängerbrücke
The twin rotor damper (TRD) is a device which uses the centrifugal forces of eccentrically rotating masses for active vibration control. Previous research has shown that the TRD is an effective and power efficient damping device. A prototype device was developed to evaluate these research results on a real structure. Footbridges are often, due to their slim and lightweight structure, susceptible to pedestrian induced vibrations. In this contribution, the development and implementation of the prototype on a footbridge in Belgium, the Eeklo footbridge, is presented. Here the focus is the development and construction of the prototype. For this purpose, a numerical investigation is performed to help determine the construction parameters of the prototype. The in-field experiments show that the TRD can effectively damp the pedestrian- induced vibration of the Eecklo footbridge in an power efficient manner with a prototype to structure mass-ratio of ca. 1%.
Anwendung und Entwicklung eines Doppelunwuchtrotors zur aktiven Schwingungsdämpfung von der Eeklo Fußgängerbrücke
Terrill, Richard Douglas (Autor:in) / Seils, Axel (Autor:in) / Bäumer, Richard (Autor:in)
01.11.2019
2-s2.0-85105976875
Aufsatz (Konferenz)
Elektronische Ressource
Deutsch
DDC:
690
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