Dynamic analysis and experimental testing of a multi-tagline anti-sway and positioning system for slender-beam payload lifting during offshore operations

Maokai Sun, Wanru Deng, Zewen Sun, Guangdong Han*, Shenghai Wang, Hongpeng Zhang, Yi Wei, Yuqing Sun, Zhiming Yuan

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

To address the issues of anti-slip and anti-sway during the lifting of slender-beam payloads (SBP) in offshore environment, this paper presents a novel Multi-Tagline Anti-Sway and Positioning System (MTAPS). The entire lifting process is divided into two stages: the single-point lifting stage and the multi-tagline damping constraint stage. Dynamic modeling is performed at these two stages, and both Damping Control (DC) and Hierarchical Control (HC) strategies are designed for the MTAPS. Matlab/Simulink is used to analyze the dynamic characteristics of the SBP from the horizontal position to the lift-off stage. The sway reduction effect of the two MTAPS control strategies are then compared. Comprehensive experiments are conducted to validate the accuracy of the dynamic models and the effectiveness of the control methods. These experiments demonstrate that the MTAPS effectively mitigates the swinging of the SBP caused by single-point lifting, achieving an average reduction of sway motion by 86.25% during the suspension stage. The simulations and experiments shed lights on multi-tagline control strategies, as well as on the optimization of the offshore lifting process of SBP.
Original languageEnglish
Article number119790
Number of pages18
JournalOcean Engineering
Volume315
Early online date22 Nov 2024
DOIs
Publication statusPublished - 1 Jan 2025

Funding

This work was supported by [the National Natural Science Foundation of China (Project No. 52101396), the China Fundamental Research Funds for the Central Universities (Project No. 3132023510, 3132024207, 3132024214), the China Scholarship Council (Project No. 202306570044)].

Keywords

  • Multi-tagline constraint
  • Multi-tagline anti-sway and positioning system
  • Slender-beam payload
  • Anti-slip
  • Anti-sway

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