Study on Local Vibration Control of the 100 m X-BOW Polar Exploration Cruise Ship

Author:

Jiang Guohe1,Chen Jiachen1,Guo Hao1,Wu Gang1ORCID,Liu Zhenzhen1

Affiliation:

1. Merchant Marine College, Shanghai Maritime University, Shanghai 201306, China

Abstract

A finite element model of a 100 m X-BOW polar exploration cruise ship has been developed. The ship’s frequency response analysis was conducted, with the simulated results closely matching the test data. The maximum discrepancy was 22%, equating to a negligible 0.24 mm/s difference in terms of comfort. This indicates that the simulation meets the standards of engineering precision and validates the model’s accuracy. Utilizing a global modal equivalent mass solution approach, in conjunction with the spatial distribution of local modal mass, a method for calculating the equivalent mass of a single local mode in mixed modes has been devised. This method was applied to determine the equivalent mass of the local vibration region of the 100 m X-BOW ship. Tuned mass dampers (TMDs) were then designed based on this equivalent mass. Analysis reveals that the TMDs achieve a 31 dB vibration absorption effect at a frequency of 13.4 Hz with a mass ratio of 0.05. They also provide a control effect at 10 Hz and 18.8 Hz, corresponding to 3 dB and 2 dB reductions, respectively. The control frequency band is broad, flat, and robust, indicating the effectiveness of the TMDs in mitigating vibrations across a wide range of frequencies.

Funder

Science & Technology Commission of Shanghai Municipality and Shanghai Engineering Research Center of Ship Intelligent Maintenance and Energy Efficiency

Publisher

MDPI AG

Reference22 articles.

1. DNVGL (2018). Vibration Analysis Report, U11058_101-012, 2018, DNV.

2. Shuai, B. (2014). Local Vibration Analysis of a Container Ship Engine-Room and Superstructure, South China University of Technology.

3. Zhang, Y. (2015). Numerical Simulation and Measurement of Local Vibration of Small Coastal Research Ship, Zhejiang Ocean University.

4. Li, X.-Y. (2019). Research on Vibration Prediction and Local Structure Optimization of Tuna Longline Fishing Vessel, Dalian Ocean University.

5. Zhang, Q. (2017). Study on Vibration Reduction of Stern of 1000 ton First Class Refined Oil Product Ship, Dalian University of Technology.

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