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January 23, 2026Journal of Marine Science and Engineering2 citationsOpen Access

Development and Field Testing of a Cavitation-Based Robotic Platform for Sustainable In-Water Hull Cleaning

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UPUroš PucJožef Stefan International Postgraduate SchoolAAAndreja AbinaJožef Stefan International Postgraduate SchoolESEdvin SalviPUH Team (Slovenia)

Key Points

  • This research aims to develop a robotic platform for in-water hull cleaning that effectively removes biofouling and minimizes environmental impact.
  • Developed a cavitation-based cleaning module for hulls.
  • Conducted field testing of the robotic platform in real sea conditions.
  • Integrated sensors to monitor seawater parameters during cleaning operations.
  • The robotic platform effectively removed biofouling from ship hulls.
  • Field tests demonstrated minimal environmental impact during the cleaning process.

Abstract

Biofouling on ship hulls significantly increases hydrodynamic drag, fuel consumption, and greenhouse gas emissions, while also facilitating the spread of invasive species in regional and global waters, thereby threatening marine biodiversity. To address these environmental and economic issues, we developed an innovative robotic platform for in-water hull cleaning. The platform utilizes a cavitation-based cleaning module that removes biofouling while minimizing hull surface damage and preventing the spread of detached particles into the marine environment. This paper describes the design, operation, and testing of a developed robotic cleaning system prototype. Emphasis is placed on integrating components and sensors for continuous monitoring of key seawater parameters (temperature, salinity, turbidity, dissolved oxygen, chlorophyll-a, etc.) before, during, and after underwater cleaning. Results from real-sea trials show the platform’s effectiveness in removing biofouling and its minimal environmental impact, confirming its potential as a sustainable solution for in-water hull cleaning.

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Cite This Study

Puc et al. (2026) studied this question.

synapsesocial.com/papers/69731005c8125b09b0d1fca1https://doi.org/10.3390/jmse14020227
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