Numerical Simulation of Main Structure of Full-Submersible Deep-Sea Aquaculture Platform Under Action of Water Waves
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Abstract:
The development and utilization of marine resources by human beings is gradually moving towards the deep sea, and deep-sea aquaculture platforms have emerged to meet the needs of aquaculture and food security. To better understand the motion response characteristics of the main structure of the full-submersible deep-sea aquaculture platform under the action of water waves, Fluent software is used to numerically simulate regular waves, irregular waves, and strong nonlinear waves, and their effects on the six degrees of freedom motion response of the main structure of the full-submersible deep-sea aquaculture platform are analyzed. The study found that under the towing condition, the smaller the wave direction angle, the more intense the movement. Under the platform’s working conditions, the larger the wave direction angle, the more intense the movement.
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This work was supported by the Self-cultivation Project of Collaborative Innovation Center of Marine Equipment and Technology Institute of Jiangsu University of Science and Technology (No.XTCX202402).
FENG Ran, FRANCK AUREL Likeufack Mdemaya, XU Gang. Numerical Simulation of Main Structure of Full-Submersible Deep-Sea Aquaculture Platform Under Action of Water Waves[J]. Transactions of Nanjing University of Aeronautics & Astronautics,2025,(S):167-179