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Subsidence more than doubles sea-level rise today along densely populated coasts
Oelsmann, J.; Nicholls, R.J.; Lincke, D.; Marcos, M.; Shirzaei, M.; Sanchez, L.; Ohenhen, L.; Dettmering, D.; Hinkel, J.; Horton, B.P.; Seitz, F. (2026). Subsidence more than doubles sea-level rise today along densely populated coasts. Nature Comm. 17(1): 4382. https://dx.doi.org/10.1038/s41467-026-72293-z
In: Nature Communications. Nature Publishing Group: London. ISSN 2041-1723; e-ISSN 2041-1723, meer
Peer reviewed article  

Beschikbaar in  Auteurs 

Auteurs  Top 
  • Oelsmann, J.
  • Nicholls, R.J., meer
  • Lincke, D.
  • Marcos, M.
  • Shirzaei, M.
  • Sanchez, L.
  • Ohenhen, L.
  • Dettmering, D.
  • Hinkel, J.
  • Horton, B.P.
  • Seitz, F.

Abstract
    Despite its strong influence on relative sea-level (RSL) rise, there is still low confidence in estimates of vertical land motion (VLM) and its contribution to RSL change. To address this problem, we synergize diverse VLM data, which now cover almost 65% of the coastal population, and are key to resolve small scale subsidence, including East, South, and Southeast Asian cities and populated deltaic regions, largely not covered by earlier geodetic measurements. We find that the average modern (1995-2020) global RSL rise experienced by coastal populations (6 mm/year) is about twice the climate-driven absolute sea-level rise. This reflects a strong tendency for higher rates of subsidence in densely populated areas, with 71% of the global coastal population living in subsiding regions. Paired with community efforts to extend consistent observations, these data are essential to ensure reliable estimates of present and future RSL rise to support risk and adaptation assessment.

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