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Limit states and failure mechanisms of viscous dampers and the implications for large earthquakes
Authors:H Kit Miyamoto  Amir S J Gilani  Akira Wada  Christopher Ariyaratana
Abstract:Fluid viscous dampers are used to control story drifts and member forces in structures during earthquake events. These elements provide satisfactory performance at the design‐level or maximum considered earthquake. However, buildings using fluid viscous dampers have not been subjected to very large earthquakes with intensities greater than the design and maximum considered events. Furthermore, an extensive database of viscous damper performance during large seismic events does not exist. To address these issues, a comprehensive analytical and experimental investigation was conducted to determine the performance of damped structures subjected to large earthquakes. A critical component of this research was the development and verification of a detailed viscous damper mathematical model that incorporates limit states. The development of this model and the laboratory and simulation results conclude good correlation with the new model and the damper limit states and provide superior results compared with the typical damper model when considering near collapse evaluation of structures. Copyright © 2010 John Wiley & Sons, Ltd.
Keywords:fluid viscous dampers  damper components  damper limit states  damper failure mode  analytical simulations  experimental correlations  rare earthquakes
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