TR
EN
Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete
Öz
Reinforced concrete structures in marine environments deteriorate over time due to the hydrodynamic effects of seawater exposure and the transport of salt-laden, humid air. In particular, fluid-driven permeation and diffusion of chloride and sulfate ions into the porous matrix lead to chemical reactions that cause reinforcement corrosion and strength degradation, thereby shortening the service life of structures and threatening seismic safety. In countries such as Türkiye, which are both coastal and located in an active earthquake zone, evaluating the performance of these structures under prolonged fluid ingress is of great importance. This study investigates the mechanical and microstructural properties of a reinforced concrete structure exposed to long-term marine fluid conditions under real field conditions. Core compressive strength tests, Schmidt hammer tests, and tensile tests on reinforcement steel were conducted on samples taken from the structure. In addition, X-ray diffraction (XRD), X-ray fluorescence spectrometry (XRF), thermogravimetric analysis (TGA), and scanning electron microscopy (SEM) were performed to determine the microstructural characteristics altered by fluid-solid interactions. According to the findings, both the concrete and the reinforcement exhibited strength and durability losses driven by continuous moisture and ion transport. The compressive strength of the concrete did not satisfy regulatory requirements, and microstructural analyses indicated that the C-S-H gel underwent decalcification due to the influx of sulfate and magnesium-rich fluids, Portlandite was largely depleted, and the binder matrix exhibited chemical degradation. Advanced corrosion, cross-sectional loss, and pitting -facilitated by the presence of an aqueous electrolyte- were observed in the reinforcement, leading to reductions in yield strength, ductility, and bond performance. Furthermore, unsuitable aggregate properties and a weak Interfacial Transition Zone (ITZ) created preferential flow paths that accelerated deterioration, significantly reducing the structure's load-bearing capacity.
Anahtar Kelimeler
Destekleyen Kurum
Canakkale Onsekiz Mart University
Proje Numarası
FLÖAP-2025-5279
Etik Beyan
Ethical committee approval was not required for this study. The principles of research and publication ethics were complied with throughout the study.
Teşekkür
This work was supported by Canakkale Onsekiz Mart University, The Scientific Research Coordination Unit, Project No. FLÖAP-2025-5279. The authors would like to thank Biga As Yapı for providing the building-related data and Bilici İnşaat for supplying samples obtained from the demolished building.
Kaynakça
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Ayrıntılar
Birincil Dil
İngilizce
Konular
Yapı Malzemeleri
Bölüm
Araştırma Makalesi
Erken Görünüm Tarihi
28 Ağustos 2026
Yayımlanma Tarihi
-
Gönderilme Tarihi
10 Mayıs 2026
Kabul Tarihi
24 Ağustos 2026
Yayımlandığı Sayı
Yıl 2026 Sayı: Advanced Online Publication
APA
Altun, M. G., Çetinkaya, Y., Durgun, M. Y., & Yalçınkaya, V. (2026). Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete. Turkish Journal of Civil Engineering, Advanced Online Publication. https://doi.org/10.18400/tjce.1948066
AMA
1.Altun MG, Çetinkaya Y, Durgun MY, Yalçınkaya V. Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete. tjce. 2026;(Advanced Online Publication). doi:10.18400/tjce.1948066
Chicago
Altun, Muhammet Gökhan, Yusuf Çetinkaya, Muhammed Yasin Durgun, ve Vildan Yalçınkaya. 2026. “Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete”. Turkish Journal of Civil Engineering, sy Advanced Online Publication. https://doi.org/10.18400/tjce.1948066.
EndNote
Altun MG, Çetinkaya Y, Durgun MY, Yalçınkaya V (01 Ağustos 2026) Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete. Turkish Journal of Civil Engineering Advanced Online Publication
IEEE
[1]M. G. Altun, Y. Çetinkaya, M. Y. Durgun, ve V. Yalçınkaya, “Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete”, tjce, sy Advanced Online Publication, Ağu. 2026, doi: 10.18400/tjce.1948066.
ISNAD
Altun, Muhammet Gökhan - Çetinkaya, Yusuf - Durgun, Muhammed Yasin - Yalçınkaya, Vildan. “Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete”. Turkish Journal of Civil Engineering. Advanced Online Publication (01 Ağustos 2026). https://doi.org/10.18400/tjce.1948066.
JAMA
1.Altun MG, Çetinkaya Y, Durgun MY, Yalçınkaya V. Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete. tjce. 2026. doi:10.18400/tjce.1948066.
MLA
Altun, Muhammet Gökhan, vd. “Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete”. Turkish Journal of Civil Engineering, sy Advanced Online Publication, Ağustos 2026, doi:10.18400/tjce.1948066.
Vancouver
1.Muhammet Gökhan Altun, Yusuf Çetinkaya, Muhammed Yasin Durgun, Vildan Yalçınkaya. Influence of Long-Term Marine Fluid Ingress and Ion Transport on Properties of 30-Year-Old Reinforced Concrete. tjce. 01 Ağustos 2026;(Advanced Online Publication). doi:10.18400/tjce.1948066