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Hydrodynamic Stability of Ships in Waves | Publishing Language: Chinese

Anti-capsizing stability checking for jack-up platforms based on ALE approach

Xiaolei LIU( )Mo WANGZhinan ZHOU
Tianjin Navigation Instruments Research Institute, Tianjin 30013, China
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Abstract

Objective

This study addresses the challenges associated with high computational cost in nonlinear analysis and the insufficient accuracy of code-based methods for the anti-capsizing stability check of jack-up platforms with independent spud legs. The aim is to enhance the existing verification system and provide an accurate, efficient calculation method for engineering design.

Methods

Taking a jack-up platform without a spudcan as the research object, a finite element model of the soil-spud leg was developed using the Arbitrary Lagrangian−Eulerian (ALE) approach. The capsizing moment was simulated by applying a bending moment at the top of the spud leg. The variation in spud leg displacement, rotation angle, and the relative vertical distance from the rotation center to the mud surface were analyzed. The generality of the laws was verified by varying the spud leg penetration depth (8 m−15 m) and soil parameters. The results of the proposed approach, the China Classification Society (CCS) code method, and the nonlinear pipe-soil analysis were compared, using an actual platform case for validation.

Results

It is confirmed that the motion of the spud leg is characterized by "overall translation + rotation around the rotation center". During the capsizing process, the relative vertical distance from the rotation center to the mud surface has small dispersion and can be considered approximately constant. Compared with the CCS code method, the relative error of the proposed approach is reduced by approximately 10%, bringing the results closer to the accurate values obtained from the nonlinear pipe-soil analysis.

Conclusions

The proposed approach achieves a balance between computational accuracy and efficiency, and can provide a reliable engineering reference for the anti-capsizing stability assessment of jack-up platforms.

CLC number: U661.2+2;U674.38+1 Document code: A

References

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Chinese Journal of Ship Research
Pages 122-131

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Cite this article:
LIU X, WANG M, ZHOU Z. Anti-capsizing stability checking for jack-up platforms based on ALE approach. Chinese Journal of Ship Research, 2026, 21(1): 122-131. https://doi.org/10.19693/j.issn.1673-3185.04562

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Received: 16 June 2025
Revised: 13 November 2025
Published: 16 December 2025
© 2026 Chinese Journal of Ship Research.