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Review Article

A review of the potential impacts of climate change on the safety and performance of bridges

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Pages 192-212 | Received 24 Dec 2018, Accepted 07 Mar 2019, Published online: 01 Apr 2019

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Read on this site (10)

Amro Nasr, Jonas Johansson, Oskar Larsson Ivanov, Ivar Björnsson & Dániel Honfi. (2023) Risk-based multi-criteria decision analysis method for considering the effects of climate change on bridges. Structure and Infrastructure Engineering 19:10, pages 1445-1458.
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Amro Nasr. (2022) Probabilistic analysis of the impact of climate change on creep of concrete structures in Sweden. Structure and Infrastructure Engineering 0:0, pages 1-13.
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Deming Zhu, You Dong & Dan M. Frangopol. (2022) Experimental and numerical investigation on wave impacts on box-girder bridges. Structure and Infrastructure Engineering 18:10-11, pages 1379-1397.
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Amro Nasr, Erik Kjellström, Ivar Björnsson, Daniel Honfi, Oskar L. Ivanov & Jonas Johansson. (2020) Bridges in a changing climate: a study of the potential impacts of climate change on bridges and their possible adaptations. Structure and Infrastructure Engineering 16:4, pages 738-749.
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Articles from other publishers (23)

Amro Nasr, Ivar Björnsson & Jonas Johansson. (2023) National-Level Analysis of the Impact of Climate Change on Local Scour under Bridge Piers in Sweden. Journal of Infrastructure Systems 29:2.
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Eloi Figueiredo, Luís Oliveira SantosIonut MoldovanDimitrios Kraniotis, José MeloLuís Dias & Guilherme B. A. Coelho. (2023) A Roadmap for an Integrated Assessment Approach to the Adaptation of Concrete Bridges to Climate Change. Journal of Bridge Engineering 28:6.
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Mohamed Annad, Nadjib Hemaidi Zourgui, Abdelouahab Lefkir, Abderrahmane Kibboua & Oussama Annad. (2023) Scour-dependent seismic fragility curves considering soil-structure interaction and fuzzy damage clustering: A case study of an Algerian RC Bridge with shallow foundations. Ocean Engineering 275, pages 114157.
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Wen Xiong, C. S. CaiRongzhao ZhangHuiduo ShiChang Xu. (2023) Review of Hydraulic Bridge Failures: Historical Statistic Analysis, Failure Modes, and Prediction Methods. Journal of Bridge Engineering 28:4.
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Francesco Morgan Bono, Luca Radicioni, Simone Cinquemani, Lorenzo Benedetti, Gabriele Cazzulani, Claudio Somaschini & Marco Belloli. (2023) A Deep Learning Approach to Detect Failures in Bridges Based on the Coherence of Signals. Future Internet 15:4, pages 119.
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Tong Wang, Yang Liu, Qiyuan Li, Peng Du, Xiaogong Zheng & Qingfei Gao. (2023) State-of-the-Art Review of the Resilience of Urban Bridge Networks. Sustainability 15:2, pages 989.
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Innocent Chirisa, Tariro Nyevera & Thembani Moyo. 2023. Adapting the Built Environment for Climate Change. Adapting the Built Environment for Climate Change 161 181 .
Mark A. Trigg, Mohammad Saied Dehghani, Yohannes Y. Kesete, Andrew B. Carr, Stephanie G. Trigg, Dimitrios Zekkos, David Lopez, Marta Pertierra, Cees J. van Westen, Victor Jetten & Fred L. Ogden. (2022) Realities of bridge resilience in Small Island Developing States. Mitigation and Adaptation Strategies for Global Change 28:1.
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Amro Nasr, Dániel Honfi & Oskar Larsson Ivanov. (2022) Probabilistic analysis of climate change impact on chloride-induced deterioration of reinforced concrete considering Nordic climate. Journal of Infrastructure Preservation and Resilience 3:1.
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Yinshan Liu, Bo Pang, Yuanfeng Wang, Chengcheng Shi, Boqun Zhang, Xiaohui Guo, Shuowen Zhou & Jingjing Wang. (2022) Life-cycle maintenance strategy of bridges considering reliability, environment, cost and failure probability CO2 emission reduction: A bridge study with climate scenarios. Journal of Cleaner Production 379, pages 134740.
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Eloi Figueiredo & James Brownjohn. (2022) Three decades of statistical pattern recognition paradigm for SHM of bridges. Structural Health Monitoring 21:6, pages 3018-3054.
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Hongze Li, Yanli Chen, Jia Liu, Zheng Zhang & Hang Zhu. (2022) Unmanned Aircraft System Applications in Damage Detection and Service Life Prediction for Bridges: A Review. Remote Sensing 14:17, pages 4210.
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Alysha Helmrich & Mikhail Chester. (2022) Navigating Exploitative and Explorative Leadership in Support of Infrastructure Resilience. Frontiers in Sustainable Cities 4.
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Richard Fish. 2022. Highway Bridge Management. Highway Bridge Management 9 17 .
A. H. S. Garmabaki, Adithya Thaduri, Stephen Famurewa & Uday Kumar. (2021) Adapting Railway Maintenance to Climate Change. Sustainability 13:24, pages 13856.
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Amro Nasr, Oskar Larsson Ivanov, Ivar Björnsson, Jonas Johansson & Dániel Honfi. (2021) Towards a Conceptual Framework for Built Infrastructure Design in an Uncertain Climate: Challenges and Research Needs. Sustainability 13:21, pages 11827.
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Alysha Helmrich, Samuel Markolf, Rui Li, Thomaz Carvalhaes, Yeowon Kim, Emily Bondank, Mukunth Natarajan, Nasir Ahmad & Mikhail Chester. (2021) Centralization and decentralization for resilient infrastructure and complexity. Environmental Research: Infrastructure and Sustainability 1:2, pages 021001.
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A. M. M. MuhaiminLu Zhang, Sunil DhakalXuan LvNipesh PradhanangaVamsi Sai KalasapudiAtorod Azizinamini. (2021) Identification and Analysis of Factors Affecting the Future of Bridge Design, Construction, and Operation. Journal of Management in Engineering 37:5.
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Erika J. Palin, Irina Stipanovic Oslakovic, Kenneth Gavin & Andrew Quinn. (2021) Implications of climate change for railway infrastructure. WIREs Climate Change 12:5.
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Carlos M. Chang, Oscar OrtegaJeffrey Weidner. (2021) Integrating the Risk of Climate Change into Transportation Asset Management to Support Bridge Network-Level Decision-Making. Journal of Infrastructure Systems 27:1.
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Müsteyde Baduna KoçyiğitÖnder KoçyiğitHüseyin AkayGülay Demir. (2020) Experimental investigation of the effect of skew angle on partially or fully submerged deck scour. Canadian Journal of Civil Engineering 47:9, pages 1027-1036.
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Akay, Baduna Kocyigit & Yanmaz. (2019) Development of a Safety-Inspection Method for River Bridges in Turkey. Water 11:9, pages 1902.
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Amro Nasr, Ivar Björnsson, Oskar Larsson Ivanov, Jonas Johansson & Erik Kjellström. A qualitative prioritization of the risks imposed on bridges due to climate change. A qualitative prioritization of the risks imposed on bridges due to climate change.