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A full-spectrum analysis of high-speed train interior noise under multi-physical-field coupling excitations

journal contribution
posted on 2024-11-02, 00:01 authored by Xu Zheng, Zhiyong Hao, Xu WangXu Wang, Jie Mao
High-speed-railway-train interior noise at low, medium, and high frequencies could be simulated by finite element analysis (FEA) or boundary element analysis (BEA), hybrid finite element analysis-statistical energy analysis (FEA-SEA) and statistical energy analysis (SEA), respectively. First, a new method named statistical acoustic energy flow (SAEF) is proposed, which can be applied to the full-spectrum HST interior noise simulation (including low, medium, and high frequencies) with only one model. In an SAEF model, the corresponding multi-physical-field coupling excitations are firstly fully considered and coupled to excite the interior noise. The interior noise attenuated by sound insulation panels of carriage is simulated through modeling the inflow acoustic energy from the exterior excitations into the interior acoustic cavities. Rigid multi-body dynamics, fast multi-pole BEA, and large-eddy simulation with indirect boundary element analysis are first employed to extract the multi-physical-field excitations, which include the wheel-rail interaction forces/secondary suspension forces, the wheel-rail rolling noise, and aerodynamic noise, respectively. All the peak values and their frequency bands of the simulated acoustic excitations are validated with those from the noise source identification test. Besides, the measured equipment noise inside equipment compartment is used as one of the excitation sources which contribute to the interior noise. Second, a full-trimmed FE carriage model is firstly constructed, and the simulated modal shapes and frequencies agree well with the measured ones, which has validated the global FE carriage model as well as the local FE models of the aluminum alloy-trim composite panel. Thus, the sound transmission loss model of any composite panel has indirectly been validated. Finally, the SAEF model of the carriage is constructed based on the accurate FE model and stimulated by the multi-physic

History

Related Materials

  1. 1.
    DOI - Is published in 10.1016/j.ymssp.2015.12.010
  2. 2.
    ISSN - Is published in 08883270

Journal

Mechanical Systems and Signal Processing

Volume

75

Start page

525

End page

543

Total pages

19

Publisher

Elsevier

Place published

United Kingdom

Language

English

Copyright

© 2015 Elsevier Ltd

Former Identifier

2006060728

Esploro creation date

2020-06-22

Fedora creation date

2016-04-14