EGU25-16457, updated on 15 Mar 2025
https://doi.org/10.5194/egusphere-egu25-16457
EGU General Assembly 2025
© Author(s) 2025. This work is distributed under
the Creative Commons Attribution 4.0 License.
Poster | Friday, 02 May, 14:00–15:45 (CEST), Display time Friday, 02 May, 14:00–18:00
 
Hall X2, X2.17
Ship wake induced seabed modification in the Baltic Sea
Jacob Geersen1, Peter Feldens1, Jens Schneider von Deimling2, Luisa Rollwage2, Lenya Baumann2, Sebastian Krastel2, Christian Winter2, and Patrick Westfeld3
Jacob Geersen et al.
  • 1Leibniz Institute for Baltic Sea Research Warnemünde (IOW), Marine Geology, Rostock, Germany (jacob.geersen@io-warnemuende.de)
  • 2Institute of Geosciences, Faculty of Mathematics and Natural Sciences, Kiel University, Kiel, Germany
  • 3Federal Maritime and Hydrographic Agency (BSH), Rostock, Germany

The Baltic Sea is one of the busiest marine regions in terms of commercial shipping. Increased marine traffic over the last decades already led to increased number of bigger ships and more powerful propulsions systems. This development has put a number of environmental effects of shipping, such as air pollution, marine noise or accidental discharges of hazardous substances, on the discussion list. What has, however, only marginally been studied is the possible effect of commercial shipping on sedimentation patterns and seafloor morphology. Here we use AIS data from the last 20 years to identify hotspots of marine traffic in the Baltic Sea. Subsequently we collect multibeam bathymetric data from different sources and databases to investigate seafloor morphology in some traffic hotspots. We further collect seabed sediment samples and time-lapse bathymetric data in the Bay of Kiel, where Kiel Canal, one of the most heavily used artificial waterways on the globe, commences. First results indicate that ships can erode hard substrate such as basal till, most likely through interaction of their wake with the seafloor. In addition to eroding the hard seafloor, the wakes may also mobilize and locally redistribute mobile sands.

How to cite: Geersen, J., Feldens, P., Schneider von Deimling, J., Rollwage, L., Baumann, L., Krastel, S., Winter, C., and Westfeld, P.: Ship wake induced seabed modification in the Baltic Sea, EGU General Assembly 2025, Vienna, Austria, 27 Apr–2 May 2025, EGU25-16457, https://doi.org/10.5194/egusphere-egu25-16457, 2025.