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- W3189640479 abstract "Objectives The string-type mooring system is proposed for the permanent berthing demand of special offshore platforms. It is necessary to study the hydrodynamic performance of the platform using this system to verify its adaptability to the permanent berthing demand. Methods Based on the three-dimensional potential flow theory, the numerical model of wharf berthing platform is established by using the boundary element method, and the frequency domain numerical simulation of the mooring platform under different wharf tide conditions is carried out. Two different mooring systems, string mooring and traditional dock mooring, were introduced into the time-domain simulation to simulate the performance of the mooring platform under extreme wave action, and parameterized analysis was conducted to analyze the influence of different tidal levels of the wharf on the motion response of the mooring platform. Results By providing omni-directional restoring force, the String-type mooring system strengthens the rotational motion limitation of the platform, greatly weakens the most violent rolling motion of the mooring platform, transfers the energy of environmental load to translational motion, and further strengthens the restriction of the overall motion of the platform; the motion range of the mooring platform is balanced and stable and controllable; the effect of the system on the movement restriction of the platform is less affected by the change of the tide level. Conclusions Compared with the traditional mooring system, the string mooring system is more suitable for the permanent berthing of special offshore platforms." @default.
- W3189640479 created "2021-08-16" @default.
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- W3189640479 date "2021-08-01" @default.
- W3189640479 modified "2023-09-27" @default.
- W3189640479 title "Numerical simulation research on hydrodynamic performance of platform with string-type mooring system" @default.
- W3189640479 doi "https://doi.org/10.19693/j.issn.1673-3185.02338" @default.
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