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Coastal flood risk to European surface transport infrastructure at different global warming levels

  • Khin Nawarat*
  • , Johan Reyns
  • , Michalis I. Vousdoukas
  • , Eamonn Mulholland
  • , Kees van Ginkel
  • , Luc Feyen*
  • , Roshanka Ranasinghe
  • *Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

European coastal regions host a dense transport network that supports various human activities and well-being. However, global warming is expected to increase coastal flooding risk, whose impact on existing and planned European transport systems remains unknown. Here we present the fully probabilistic assessment of coastal flood risk to Europe’s surface transport infrastructure at different levels of global warming. Under baseline conditions (1980–2020), we find 1,592 km of networks are affected annually, causing expected annual damage of up to €722 million. Roads are projected to be more affected than railways in all countries. Passenger and haulage transport within the low-elevation coastal zone are currently overwhelmingly road dependent, which signals potential for widespread disruptions unless transportation modes change. With 1.5 °C warming, the Europe-wide expected annual damage may reach €1,108 million, and with 4 °C, it is projected to be as high as €1,487 million. Adaptation expenditures will increase with every fraction of global warming in most countries.

Original languageEnglish
Pages (from-to)172-178
Number of pages7
JournalNature Climate Change
Volume16
Issue number2
Early online date14 Jan 2026
DOIs
Publication statusPublished - Feb 2026

Bibliographical note

Publisher Copyright:
© European Union, represented by The European Union and The Authors 2026.

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