Multi-Objective Optimization Design of Ship Propulsion Shaft System in Ice Area Based on NSWOA Algorithm

2026-99-0152

7/31/2026

Authors
Abstract
Content
Ship propulsion shaft systems are subjected to ice load excitation when ships are navigating in polar ice regions. Compared to conventional hydrodynamic effects, the ice load imposes higher requirements on the shaft system’s ability to withstand torsional stresses. To improve the power of the ship propulsion system when sailing in ice areas and reduce the power loss of the shaft system, while considering the vibration performance. In this paper, a multi-objective optimal design of the shaft system is carried out using the Non-dominated Sorted Whale Optimization Algorithm (NSWOA) to reduce stresses on both the motor shaft and the intermediate shaft. The coupled system model of motor-shaft system-propeller structural components is established, and the system dynamics response model is obtained by solving using the Newmark-β method. Based on the response model, a multi-objective whale optimization algorithm is used to optimize the power and vibration performance of the shaft system simultaneously. The optimized results show that the shaft system transfer efficiency is improved by 0.27%, and the stress at the shaft end is reduced by 11.8% and 12.3% respectively.
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DOI
https://doi.org/10.4271/2026-99-0152
Citation
Hu, C., Li, Y., Pan, S., Liu, Z., et al., "Multi-Objective Optimization Design of Ship Propulsion Shaft System in Ice Area Based on NSWOA Algorithm," The 10th International Conference on Mechanical Manufacturing Technology and Material Engineering (MMTME 2025), Shenyang, China, September 19, 2025, https://doi.org/10.4271/2026-99-0152.
Additional Details
Publisher
Published
13 hours ago
Product Code
2026-99-0152
Content Type
Technical Paper
Language
English