TY - JOUR
T1 - Progress over the last decade on how fire affects the structural behavior of tunnel linings
AU - Lantsoght, Eva O.L.
AU - Sanabria Diaz, Rafael A.
AU - Hendriks, Max A.N.
N1 - Publisher Copyright:
© 2025 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license. http://creativecommons.org/licenses/by/4.0/
PY - 2026/1/15
Y1 - 2026/1/15
N2 - Tunnel fires are relatively rare, but the consequences of damage can be large. This paper addresses the influence of tunnel fires on the ensuing damage to the concrete lining. To address this question, the existing literature is reviewed. This review focuses on different methodologies to get a well-rounded insight into the problem: relevant aspects of tunnel fire dynamics, theoretical considerations on the relation between the fire source and the resulting damage to the concrete, experimental evidences from testing concrete elements subjected to fire as well as data from tunnel fires that have taken place in the past, and insights from numerical analysis. The result is a comprehensive overview of what is currently known about the relation between a tunnel fire and the ensuing damage in the concrete, as well as guidance for the assessment of concrete tunnel linings under fire hazard and recommendations for future research to address the remaining open questions on this topic. To conclude, this paper gives a valuable overview based on different methodologies from the literature to give researchers, engineers, and asset owners a better insight in how fires can affect the concrete tunnel structure.
AB - Tunnel fires are relatively rare, but the consequences of damage can be large. This paper addresses the influence of tunnel fires on the ensuing damage to the concrete lining. To address this question, the existing literature is reviewed. This review focuses on different methodologies to get a well-rounded insight into the problem: relevant aspects of tunnel fire dynamics, theoretical considerations on the relation between the fire source and the resulting damage to the concrete, experimental evidences from testing concrete elements subjected to fire as well as data from tunnel fires that have taken place in the past, and insights from numerical analysis. The result is a comprehensive overview of what is currently known about the relation between a tunnel fire and the ensuing damage in the concrete, as well as guidance for the assessment of concrete tunnel linings under fire hazard and recommendations for future research to address the remaining open questions on this topic. To conclude, this paper gives a valuable overview based on different methodologies from the literature to give researchers, engineers, and asset owners a better insight in how fires can affect the concrete tunnel structure.
KW - Case studies
KW - Experimental evidence
KW - Fire engineering
KW - Literature review
KW - Numerical evidence
KW - Tunnels
KW - Underground structures
UR - https://www.scopus.com/pages/publications/105024204607
U2 - 10.1016/j.engstruct.2025.121713
DO - 10.1016/j.engstruct.2025.121713
M3 - Artículo de revisión
AN - SCOPUS:105024204607
SN - 0141-0296
VL - 347
JO - Engineering Structures
JF - Engineering Structures
M1 - 121713
ER -