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Documents dont l'auteur est "Rahmzadeh, Ahmad"

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Aller à : 2025 | 2024 | 2023 | 2022 | 2021 | 2020 | 2018
Nombre de documents: 13

2025

Rahmzadeh, A., Shahria Alam, M., & Tremblay, R. (2025). Effect of Influential Parameters on Lateral Cyclic Response of Posttensioned Base Rocking Steel Bridge Piers. Journal of Structural Engineering, 152(1), 04025232 (19 pages). Lien externe

2024

Hossain, F., Rahmzadeh, A., Tremblay, R., & Alam, M. S. (2024). Multi-spring model for tubular rocking steel bridge piers subjected to earthquake loading. Engineering Structures, 315, 118449 (17 pages). Lien externe

2023

Rahmzadeh, A., Alam, M. S., & Tremblay, R. (2023). 3D response simulation of a bridge with a posttensioned base rocking steel pier under sequential loading of traffic loads, braking force, and earthquake excitations. Earthquake Engineering & Structural Dynamics, 52(9), 2830-2851. Lien externe

Rahmzadeh, A., Alam, M. S., & Tremblay, R. (2023). Cyclic Response of Buckling-Restrained Stainless Steel Energy Dissipating Bars. I: Experimental Investigations. Journal of Engineering Mechanics, 149(4), 14 pages. Lien externe

Rahmzadeh, A., Tremblay, R., & Alam, M. S. (2023). Cyclic Response of Buckling-Restrained Stainless Steel Energy Dissipating Bars. II: Finite Element Investigations. Journal of Engineering Mechanics, 149(4), 12 pages. Lien externe

2022

Rahmzadeh, A., Alam, M. S., & Tremblay, R. (mai 2021). Characterization of the Lateral Response of Base Rocking Steel Bridge Piers [Communication écrite]. CSCE annual Conference 2021. Lien externe

Wakjira, T. G., Rahmzadeh, A., Alam, M. S., & Tremblay, R. (2022). Explainable machine learning based efficient prediction tool for lateral cyclic response of post-tensioned base rocking steel bridge piers. Structures, 44, 947-964. Lien externe

Rahmzadeh, A., Tremblay, R., & Alam, M. S. (2022). Finite-element simulation of the lateral response of posttensioned base rocking steel bridge piers. Journal of Structural Engineering, 148(9), 18 pages. Lien externe

2021

Rahmzadeh, A., Tremblay, R., & Alam, M. S. (septembre 2020). Experimental investigations on buckling restrained energy dissipating stainless steel bars [Communication écrite]. 17th world Conference on Earthquake Engineering (17WCEE), Sendai, Japan (11 pages). Lien externe

Rahmzadeh, A., Alam, M. S., & Tremblay, R. (2021). Experimental Investigations on the Lateral Cyclic Response of Post-Tensioned Rocking Steel Bridge Piers. Journal of Structural Engineering, 147(12), 18 pages. Lien externe

2020

Rahmzadeh, A., Alam, M. S., Tremblay, R., & King, P. (septembre 2020). Experimental and finite element studies on the cyclic response of post-tensioned rocking steel bridge piers [Communication écrite]. 17th world Conference on Earthquake Engineering (17WCEE), Sendai, Japan (11 pages). Lien externe

Alam, M. S., Tremblay, R., Islam, K., Rahmzadeh, A., Hossain, F., & King, P. (septembre 2020). Use of rocking steel piers for enhanced seismic performance of bridges [Communication écrite]. 17th world Conference on Earthquake Engineering (17WCEE), Sendai, Japan (12 pages). Lien externe

2018

Rahmzadeh, A., Alam, M. S., & Tremblay, R. (2018). Analytical Prediction and Finite-Element Simulation of the Lateral Response of Rocking Steel Bridge Piers with Energy-Dissipating Steel Bars. Journal of Structural Engineering (United States), 144(11), 15 pages. Lien externe

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