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Experimental Validation of Building Vibration Propagation Using a Four-Story Laboratory Model
A 4-story scale model building was designed and constructed for the purpose of predicting vibration levels at each floor. Mathematical models of column, beam, and slab elements were developed and combined, forming a system model. Each component of the scale model building was tested in order to validate their corresponding mathematical model. Measured data from the scale model building was then compared to analytical predictions. All analytical models successfully validated their corresponding physical model by accurately predicting resonant amplifications and average vibration levels. Finally, recommendations for the modeling of full-scale structures are presented.
Experimental Validation of Building Vibration Propagation Using a Four-Story Laboratory Model
A 4-story scale model building was designed and constructed for the purpose of predicting vibration levels at each floor. Mathematical models of column, beam, and slab elements were developed and combined, forming a system model. Each component of the scale model building was tested in order to validate their corresponding mathematical model. Measured data from the scale model building was then compared to analytical predictions. All analytical models successfully validated their corresponding physical model by accurately predicting resonant amplifications and average vibration levels. Finally, recommendations for the modeling of full-scale structures are presented.
Experimental Validation of Building Vibration Propagation Using a Four-Story Laboratory Model
Hughes, Michael F. (Autor:in) / Sanayei, Masoud (Autor:in) / Moore, James A. (Autor:in) / Zapfe, Jeffrey A. (Autor:in) / White, Robert D. (Autor:in)
Structures Congress 2008 ; 2008 ; Vancouver, British Columbia, Canada
Structures Congress 2008 ; 1-10
14.10.2008
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
Experimental Validation of Building Vibration Propagation Using a Four-Story Laboratory Model
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