A method for the transfer function matrix of combined primary–secondary systems using classical modal decomposition |
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Authors: | E. Heredia‐Zavoni,A. P rez‐P rez,F. Barranco‐Cicilia |
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Affiliation: | E. Heredia‐Zavoni,A. Pérez‐Pérez,F. Barranco‐Cicilia |
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Abstract: | An iterative method is presented to compute the transfer function matrix of combined primary–secondary systems for seismic response analysis. It accounts for non‐proportional damping and dynamic interaction of the combined system. A closed form sequence is developed for the iterative computation of the transfer function matrix. Such sequence is assembled using independently the real classical mode frequencies, shapes and damping ratios of the primary system, and the natural frequency and critical damping ratio of the SDOF secondary system. The necessary and sufficient condition for convergence of the sequence is given in the paper. The method is illustrated through a couple of examples, including one of an appendix connected to a multi‐storey shear building. Convergence of the method is thoroughly analysed and peak responses are obtained using a spectral density function approach. Copyright © 2005 John Wiley & Sons, Ltd. |
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Keywords: | secondary systems seismic response non‐classical damping dynamic interaction pseudo‐force method random vibrations |
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