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Article

A Study on the Nonlinear Seismic Response of Transmission Tower Systems Subjected to Successive Earthquake Ground Motions Considering SSI Effects

by
Pavlos Tarazis
1,
Efstathia Passakou
1,
Panagiota S. Katsimpini
1,2,*,
George A. Papagiannopoulos
2 and
George D. Hatzigeorgiou
2
1
Department of Civil Engineering, University of the Peloponnese, GR-26334 Patras, Greece
2
Structural Technology and Applied Mechanics Laboratory, School of Science and Technology, Hellenic Open University, GR-26335 Patras, Greece
*
Author to whom correspondence should be addressed.
Appl. Sci. 2026, 16(12), 6034; https://doi.org/10.3390/app16126034
Submission received: 21 May 2026 / Revised: 9 June 2026 / Accepted: 12 June 2026 / Published: 15 June 2026

Abstract

The present work focuses on the nonlinear seismic response of transmission tower systems when subjected to successive earthquake ground motions. To this end, nonlinear time-history analyses were carried out by applying multiple ground motion records in sequence, thereby replicating realistic scenarios in which structures endure repeated seismic loading during and following major earthquakes. The structural behavior was examined through two distinct modeling frameworks: a pinned configuration, where tower members are considered to resist axial forces only, and an SSI-based model, which captures the interaction between the structure and the supporting soil. Both frameworks were assessed in terms of several critical response quantities, namely peak displacements, permanent displacements following each seismic event, acceleration demands, and base shear forces developed at the foundation level. The comparative evaluation of the two models brought to light considerable discrepancies in the computed response, confirming that the dynamic characteristics of the soil and its coupling with the structure have a pronounced effect on the overall seismic performance of transmission towers. In addition, it was shown that the cumulative effect of successive seismic excitations drives a gradual buildup of deformations, yielding displacement demands that far exceed those obtained from conventional single-earthquake analyses. These outcomes point to the necessity of incorporating SSI and multi-sequence seismic loading into both the design and the seismic assessment of transmission infrastructure, as approaches relying solely on single-event excitation are likely to significantly underestimate the true seismic demand imposed on such structures.
Keywords: transmission towers; SSI; NLTH; multiple earthquakes transmission towers; SSI; NLTH; multiple earthquakes

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MDPI and ACS Style

Tarazis, P.; Passakou, E.; Katsimpini, P.S.; Papagiannopoulos, G.A.; Hatzigeorgiou, G.D. A Study on the Nonlinear Seismic Response of Transmission Tower Systems Subjected to Successive Earthquake Ground Motions Considering SSI Effects. Appl. Sci. 2026, 16, 6034. https://doi.org/10.3390/app16126034

AMA Style

Tarazis P, Passakou E, Katsimpini PS, Papagiannopoulos GA, Hatzigeorgiou GD. A Study on the Nonlinear Seismic Response of Transmission Tower Systems Subjected to Successive Earthquake Ground Motions Considering SSI Effects. Applied Sciences. 2026; 16(12):6034. https://doi.org/10.3390/app16126034

Chicago/Turabian Style

Tarazis, Pavlos, Efstathia Passakou, Panagiota S. Katsimpini, George A. Papagiannopoulos, and George D. Hatzigeorgiou. 2026. "A Study on the Nonlinear Seismic Response of Transmission Tower Systems Subjected to Successive Earthquake Ground Motions Considering SSI Effects" Applied Sciences 16, no. 12: 6034. https://doi.org/10.3390/app16126034

APA Style

Tarazis, P., Passakou, E., Katsimpini, P. S., Papagiannopoulos, G. A., & Hatzigeorgiou, G. D. (2026). A Study on the Nonlinear Seismic Response of Transmission Tower Systems Subjected to Successive Earthquake Ground Motions Considering SSI Effects. Applied Sciences, 16(12), 6034. https://doi.org/10.3390/app16126034

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