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Publishing Language: Chinese

Intelligent optimization design of wave-piercing bow lines for planing craft

Hanbing SUNJiwei BAI( )Chao WUJiayi LIUChenrui SHANG
College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China
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Abstract

Objective

The bow lines of a planing craft have a significant influence on its seakeeping performance, making their intelligent optimization design necessary.

Methods

This study focuses on a certain type of wave-piercing bow planing craft and uses the stem angle, second-order curve shape factors, and coordinates of the knuckle line bow control points as parameters for driving the deformation of the bow lines and carrying out the parametric modeling of the bow. It validates numerical calculation methods based on model test results and establishes a surrogate model according to the numerical results. It optimizes the still water resistance and motion response amplitude in regular waves at a speed corresponding to a volume Froude number of Fr = 2.7, and explores bow designs that balance resistance and seakeeping at the designed speed.

Results

The results under the constraint show that the still water resistance and the average wave-making resistance increase does not exceed 12% and the optimized hull form sees a reduction of about 20% in acceleration amplitude, heave amplitude, pitch amplitude, and heaving compared to the initial craft.

Conclusions

By optimizing the bow lines, the planing craft's low resistance is ensured while improving its motion response in regular waves, providing an intelligent optimization design method for planing craft lines.

CLC number: U661.74 Document code: A

References

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Chinese Journal of Ship Research
Pages 180-190

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Cite this article:
SUN H, BAI J, WU C, et al. Intelligent optimization design of wave-piercing bow lines for planing craft. Chinese Journal of Ship Research, 2024, 19(6): 180-190. https://doi.org/10.19693/j.issn.1673-3185.03799

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Received: 28 February 2024
Revised: 08 May 2024
Published: 12 October 2024
© 2024 Chinese Journal of Ship Research.