Parametric investigation of tuned mass damper on metallic buildings response subjected to far-field and near-fault ground motions

Author:

Ras Abdelouahab

Publisher

Springer Science and Business Media LLC

Subject

Civil and Structural Engineering

Reference35 articles.

1. Constantinou, M. C., & SoongDargush, T. T. G. F. (1998). Passive energy dissipation systems for structural design and retrofit. Multidisciplinary Centre for Earthquake Engineering Research, University of Buffalo.

2. Fahimi Farzam, M., & Kaveh, A. (2020). Optimum design of tuned mass dampers using colliding bodies optimization in frequency domain. Iranian Journal of Science and Technology, Transactions of Civil Engineering, 44, 787–802. https://doi.org/10.1007/s40996-019-00296-6

3. Fahimi Farzam, M., Kaveh, A., Jalali, H. H., & Maroofiazar, R. (2020). Robust optimum design of tuned mass damper inerter. Acta Mechanica. https://doi.org/10.1007/s00707-020-02720

4. Feudo, S., L., Allani, A., Cumunel, G., Argoul, P., & Bruno, D. (2015). Experimental study of a tuned mass damper endowed with changeable stiffness and eddy currents damping. 9ème Colloque National AFPS, 30 November to 2 December – Marne la vallée, France.

5. Garcí, V. J., Duque, E. P., Inaudi, J. A., Marquez, C. O., Mera, J. D., & Rios, A. C. (2021). Pendulum tuned mass damper: optimization and performance assessment in structures with elastoplastic behaviour. Heliyon, 7, 114–132.

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