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Professor Thomas’ research focusses on the modelling and assessment of ship performance, in both the design and operational phases.
Areas of research include: fluid-structure interaction problems, such as slamming of large high-speed craft and the interaction of ships with sea ice; incorporating virtual reality into the ship design process; optimisation of ship layouts; data analytics for assessing ship performance from full scale measurements; improving the efficiency of wave energy devices; the control and fault detection of underwater vehicles.
Whilst he has an extensive background in experimental work, he currently focusses more on full scale measurements and data analytics as well as computational approaches.
Areas of research include: fluid-structure interaction problems, such as slamming of large high-speed craft and the interaction of ships with sea ice; incorporating virtual reality into the ship design process; optimisation of ship layouts; data analytics for assessing ship performance from full scale measurements; improving the efficiency of wave energy devices; the control and fault detection of underwater vehicles.
Whilst he has an extensive background in experimental work, he currently focusses more on full scale measurements and data analytics as well as computational approaches.
Research Interests
Papers共 123 篇Author StatisticsCo-AuthorSimilar Experts
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Data-Centric Engineering (2024)
RENEWABLE ENERGY (2024): 119825
SHIPS AND OFFSHORE STRUCTURESno. 4 (2023): 485-499
SHIP TECHNOLOGY RESEARCHno. 3 (2023): 222-238
2023 62ND IEEE CONFERENCE ON DECISION AND CONTROL, CDCpp.5851-5856, (2023)
Luofeng Huang,Wolter Hetharia, Andrea Grech La Rosac,Sasan Tavakoli,Danial Khojasteh,Minghao Li,Soegeng Riyadi,Dony Setyawan, I. K. A. P. Utamag,Giles Thomas
Maritime Research and Technologyno. 1 (2022): 017-024
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