Numerical and experimental investigation of motion characteristics of a travelling trimaran encountering a freak wave
Liu, Zhen and Zhang, Haipeng and Shi, Lei and Shi, Kaiyuan and Chen, Gang and Tao, Longbin (2025) Numerical and experimental investigation of motion characteristics of a travelling trimaran encountering a freak wave. Ocean Engineering, 317. 120060. ISSN 0029-8018 (https://doi.org/10.1016/j.oceaneng.2024.120060)
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Abstract
A hybrid frequency-time domain model has been developed to investigate motion characteristics of a travelling trimaran encountering a freak wave. A deterministic wave train containing a freak wave was modelled in a towing tank at Marine Design and Research Institute of China for testing the model trimaran under the action of the freak wave. Comprehensive numerical simulations examine the effect of the encountering position of the trimaran with the freak wave, forward speed and the configuration of side hulls on heave and pitch motions of the trimaran excited by the freak wave. It is found that there exists a feature of phase leading of the heave and pitch time histories around the occurrence time of the freak wave as the encountering position moves astern. It is further demonstrated that different encountering positions of the trimaran with the freak wave crest can merely lead to slight difference for the maximum peak-trough values of the heave and pitch motions, respectively. The maximum peak-trough values of the heave and pitch motion of the trimaran encountering the freak wave crest with center of gravity (CG) at different forward speeds tend to increase and decrease respectively as the forward speed increases. The time history of pitch motion is found to exhibit a whole downshift as the side hulls move forward.
ORCID iDs
Liu, Zhen, Zhang, Haipeng, Shi, Lei, Shi, Kaiyuan, Chen, Gang and Tao, Longbin ORCID: https://orcid.org/0000-0002-8389-7209;-
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Item type: Article ID code: 91589 Dates: DateEvent1 February 2025Published13 December 2024Published Online7 December 2024AcceptedSubjects: Technology > Hydraulic engineering. Ocean engineering
Naval Science > Naval architecture. Shipbuilding. Marine engineeringDepartment: Faculty of Engineering > Naval Architecture, Ocean & Marine Engineering Depositing user: Pure Administrator Date deposited: 16 Dec 2024 12:58 Last modified: 20 Dec 2024 11:19 URI: https://strathprints.strath.ac.uk/id/eprint/91589