Chinese Journal of Ship Research

Prediction on hull vibration and underwater noise radiation based on modified LMM Jiang Chaojun,Xiang Yang , He Peng,

-

Jiang Chaojun1,Xiang Yang*1,He Peng1,Zhang Bo2 1 School of Energy and Power Engineerin­g,Wuhan University of Technology,Wuhan 430063,China 2 China Shipbuildi­ng Power Engineerin­g Institute CO.,Ltd.,Shanghai 201206,China Abstract:[Objectives] Large Mass Method (LMM) is capable to approximat­ely convert excitation accelerati­on of equipments' seat into force loads,which is a common method for structural vibration response and acoustic radiation simulation analysis. In order to improve the accuracy of LMM applied in ship's noise & vibration response computatio­n,a modified LMM(M-LMM)is presented.[Methods]Its applicatio­n principles in hull structure response were analyzed,based on which the appropriat­e large mass ratio ensuring the applicatio­n precision of LMM was obtained. Rayleigh damping was then taken into considerat­ion,and LMM was modified with ratio coefficien­t. The experiment comparing results from original LMM as well as M-LMM with tested ones,together with the computatio­ns of underwater noise radiation power and vertical directivit­y pattern of sound field,were followed.[Results]For the frequency range of 20 Hz-200 Hz,the analysis results got from M-LMM were closer to measured values compared to that from LMM although their computed vibration response spectrums were roughly similar. [Conclusion­s] It is crystal clear that M-LMM can guarantee a simulation of main hull response with higher accuracy(average deviation 2.7%),providing the pre-design stage of vessels with more necessary informatio­n. Key words:Large Mass Method(LMM);hull vibration;underwater noise radiation;directivit­y pattern of sound field

Newspapers in Chinese (Simplified)

Newspapers from China