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September 10, 2025Journal of Marine Science and Engineering0 citationsOpen Access

Influence of the Upstream Channel of a Ship Lift on the Hydrodynamic Performance of a Fleet Entry Chamber and Design of Traction Scheme

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HCHaichao ChangQZQiang ZhengZLZuyuan Liu

Key Points

  • The study reveals substantial transverse force oscillations near floating navigation walls, impacting ship stability.
  • Cargo ships experience drastic resistance fluctuations during shallow water transitions, while tugboats face hydrodynamic interactions.
  • Using a RANS-based CFD approach, simulations were performed for ships at varying depths and speeds in confined waters.
  • The proposed mechanical traction system shows structural feasibility, indicating potential for improving ship entry safety and efficiency.

Abstract

This study investigates the hydrodynamic performance of ships entering a ship lift compartment that is under the influence of upstream channel geometry and proposes a mechanical traction scheme to enhance operational safety and efficiency. Utilizing a Reynolds-averaged Navier–Stokes (RANS)-based computational fluid dynamics (CFD) approach with overlapping grid technology, numerical simulations were conducted for both single and grouped ships navigating through varying water depths, speeds, and shore distances. The results revealed significant transverse force oscillations near the floating navigation wall due to unilateral shore effects, posing risks of deviation. The cargo ship experienced drastic resistance fluctuations in shallow-to-very-shallow-water transitions, while tugboats were notably affected by hydrodynamic interactions during group entry. A mechanical traction system with a four-link robotic arm was designed and analyzed kinematically and statically, demonstrating structural feasibility under converted real-ship traction forces (55.1 kN). The key findings emphasize the need for collision avoidance measures in wall sections and validate the proposed traction scheme for safe and efficient ship entry/exit. This research provides critical insights for optimizing ship lift operations in restricted waters.

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Cite This Study

Chang et al. (2025) studied this question.

synapsesocial.com/papers/68c1abf954b1d3bfb60e42c9https://doi.org/10.3390/jmse13071375
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