OVERVIEW OF THE MAIN STRUCTURAL PROBLEMS INTEGRITY OF THE SHIP'S HULL
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Bužančić Primorac, B., Parunov, J. & Guedes Soares, C. (2020). Structural Reliability Analysis of Ship Hulls Accounting for Collision or Grounding Damage. J. Marine. Sci. Appl. 19, 717–733. https://doi.org/10.1007/s11804-020-00176-w
Aditya Rio Prabowo, Seung Jun Baek, Jung Hoon Byeon, Dong Myung Bae, Joung Hyung Cho, Jung Min Sohn (2017). Investigation on the Structural Damage of a Double-Hull Ship, Part I – Ship Collision, Procedia Structural Integrity, Volume 5, 935-942. https://doi.org/10.1016/j.prostr.2017.07.126.
Dimitranov, Dilyan, and Blagovest Belev. (2023). Reducing Ship’s Energy Consumption through Accommodation and Cargo Spaces Lights Automation. Journal of Marine Science and Engineering 11, no. 2: 434. https://doi.org/10.3390/jmse11020434
Cannon, Sophie. (2019). Engineering analysis of 19th century British merchant ships.
Kanun, Engin & Yakar, Murat. (2021). MOBILE PHONE-BASED PHOTOGRAMMETRY FOR 3D MODELING OF SHIP HULLS. Mersin University Journal of Maritime Faculty. 10.47512/meujmaf.926505.
Pastra, Aspasia & Johansson, Tafsir. (2022). Towards a Harmonized Framework for Vessel Inspection via Remote Techniques. 10.3850/978-981-18-5183-4_J03-07-636-c.
Alexandropoulou, V., Johansson, T., Kontaxaki, V.,Pastra, A., and Dalaklis, D. (2021). Maritime RemoteInspection Technology in Hull Survey & Inspection: ASynopsis of Liability Issues from a European UnionContext”, Journal of International Maritime Safety,Environmental Affairs and Shipping 5, no 4, 184-195.
American Bureau of Shipping (ABS), “Guidance Noteson the Use of Remote Inspection Technologies”,(2019), https://ww2.eagle.org/content/dam/eagle/rules-and-guides/current/other/242-gn-remote-inspection-tech/rit-gn-feb19.pdf
Leenes, R., Palmerini, E, Koops, B.-J.,Bertolini, A.,Salvini, P. and Lucivero, F. (2017). Regulatory Challenges ofRobotics: Some Guidelines for Addressing Legal andEthical Issues”, Law, Innovation and Technology 9, 1-44. https://doi.org/10.1080/17579961.2017.1304921
Poggi, L., Gaggero, T., Gaiotti, M. Ravina, E andRizzo C.M. (2022). Robotic inspection of ships: inherentchallenges and assessment of their effectiveness”,Ships and Offshore Structures 17, No. 4, 742-756. https://doi.org/10.1080/17445302.2020.1866378
Wirtz, J. and Zeithaml V. (2018). Cost-Effective ServiceExcellence”, Journal of the Academy of MarketingScience 46, no. 1, 59-80.
Johansson, T., Dalaklis, D. and Pastra A. (2021). MaritimeRobotics and Autonomous Systems Operations:Exploring Pathways for Overcoming InternationalTechno-Regulatory Data Barriers”, Journal of MarineScience and Engineering 9, no. 6. https://www.mdpi.com/2077-1312/9/6/594
Мельник О.М., Очеретна В.В., Шахов В.І., Котенко О.В., Васильченко С.В. (2023). Структурна цілісність корпусу судна. Проблеми, контроль, технічне обслуговування. Науковi інновації та передові технології. 4 (18). https://doi.org/10.52058/2786-5274-2023-4(18)
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