Design of Vibration Isolation Device for Ship Power Equipment and Investigation on its Dynamic Properties

Author:

Fang Yuan Yuan1,Zhang Guo Hong1,Li Ya Fan1,Qi Peng Zhe1

Affiliation:

1. Jiangsu University of Science and Technology

Abstract

Mechanical noise caused by power equipment vibration is the main source of underwater radiated noise of the ship, and vibration isolation and noise reduction of ship equipment has been widely concerned. Therefore,a vibration isolation system designed for four sets of auxiliary engine of ship cabin was investigated in the paper, aimed to further reveal the influence of various parameters including floating raft shell thickness, excitation source, and different ship hull and installation platform thickness on the vibration level difference of system. The results obtained from numerical analysis using MSC software and experiment indicate that one-dimensional spring element simplified can properly simulate the actual rubber vibration isolator on low frequency bands, and increasing thickness of flat, hull and platform can improve the effect of vibration isolation obviously.

Publisher

Trans Tech Publications, Ltd.

Reference6 articles.

1. LI D B, YAN L H. Modal synthesis method for vibration isolation design of massive rotating machines resiliently supported by an elastic structure [J]. Journal of Sound and Vibration, 2000, 231(1): 233-245.

2. HUI C K, NG C F. New floating floor design with optimum isolator location [J]. Journal of Sound and Vibration, 2007, 303: 221-238.

3. Zhanggui ZHONG. The whole raft power flow theory and experimental research [J]. Noise and Vibration Control, 2007, (3): 24-27.

4. Feng Zhang. Acoustic design method and noise reduction performance analysis of space truss raft system [D]. China Ship Research Institute, 2012. (In Chinese).

5. Guozhi Wang. Simulation and prediction of ship machinery noise excitation [J]. Journal of Jiangsu University of Science and Technology, 2011, 25(4): 315-319. (In Chinese).

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