1. Van Blaaderen, E.A. (2022, October 27). Modelling Bowthruster Induced Flow near a Quay-Wall. TU Delft, Faculty of Civil Engineering and Geosciences, Hydraulic Engineering. Available online: https://repository.tudelft.nl/islandora/object/uuid:c5443985-9992-4de8-8505-f20456946799.
2. Van den Brink, A.J.W. (2022, October 27). Modelling of Scour Depth at Quay Walls due to Thrusters. Faculty of Civil Engineering and Geosciences. Hydraulik Engineering Dept.. Available online: https://repository.tudelft.nl/islandora/object/uuid%3A57693312-4315-45ff-bf56-82551871dc52.
3. Abramowicz-Gerigk, T., Burciu, Z., Jachowski, J., Kreft, O., Majewski, D., Stachurska, B., Sulisz, W., and Szmytkiewicz, P. (2021). Experimental Method for the Measurements and Numerical Investigations of Force Generated on the Rotating Cylinder under Water Flow. Sensors, 21.
4. PIANC (2015). Guidelines for protecting berthing structures from scour caused by ships. The World Association for Waterborne Transport Infrastructure (PIANC), Maritime Navigation Commission Report No. 180. Marcom Rep., 180, Available online: https://www.pianc.org.
5. Optimization of LNG terminal parameters for a wide range of gas tanker sizes: The case of the port of Swinoujscie;Arch. Transp.,2019