Assessment of seismic demand and damping of a reinforced concrete building after CFRP jacketing of columns

Pinar Inci*, Caglar Goksu, Erkan Tore, Ergun Binbir, Ali Osman Ates, Alper Ilki

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

While the lateral confinement provided by an FRP jacket to a concrete column is passive in nature, confinement is activated when the concrete expands due to additional compression stresses or significant shear deformations. This characteristic of FRP jacketing theoretically leads to similar initial stiffness properties of FRP retrofitted buildings as the buildings without retrofit. In the current study, to validate this theoretical assumption, the initial stiffness characteristics, and thus, the potential seismic demands were investigated through forced vibration tests on two identical full-scale substandard reinforced concrete buildings with or without FRP retrofit. Power spectral density functions obtained using the acceleration response data captured through forced vibration tests were used to estimate the modal characteristics of these buildings. The test results clearly showed that the natural frequencies and the mode shapes of the buildings are quite similar. Since the seismic demand is controlled by the fundamental vibration modes, it is confirmed using vibration-based full-scale tests that the seismic demands of RC buildings remain unchanged after CFRP jacketing of columns. Furthermore, the damping characteristics were also found similar for both structures.

Original languageEnglish
Pages (from-to)651-665
Number of pages15
JournalStructural Engineering and Mechanics
Volume82
Issue number5
DOIs
Publication statusPublished - 10 Jun 2022

Bibliographical note

Publisher Copyright:
Copyright © 2022 Techno-Press, Ltd.

Funding

Authors acknowledge DowAksa Advanced Composites Holding B.V. and Governorship of Yalova for various supports provided for experimental studies. The contributions of Ilgaz Doğan (DowAksa), Cem Demir (PhD, ITU), Mustafa Comert (PhD, Rise Eng.), Ali Naki Şanver (MSc, Rise Eng.), Gökhan Sarı (Undergrad., Balıkesir University), Emin Amini (Undergrad., Balıkesir University), Tamer Şahna (Undergrad., Balıkesir University), Oğuzhan Sözer (Undergrad., Balıkesir University), Berkay Aldırmaz (MSc Cand., ITU), Ö mer Faruk Halıcı (PhD Candidate, ITU), Mehmet Aksa (Undergrad., Kultur Uni.) are also gratefully acknowledged.

FundersFunder number
Balıkesir University
Berkay Aldırmaz
DowAksa Advanced Composites Holding B.V.
International Technological University
Ö mer Faruk Halıcı

    Keywords

    • CFRP
    • forced vibration test
    • reinforced concrete
    • retrofitting
    • seismic demand

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