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Vibration and acoustic radiation of bogie area under random excitation in high-speed trains 被引量:3

Vibration and acoustic radiation of bogie area under random excitation in high-speed trains
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摘要 Based on the experiments on a platform with real vehicle structure and finite element simulation, the vibration and interior acoustic radiation under random excitations of high-speed trains’ bogie area were studied. Firstly, combined with line tests, a vehicle body with a length of 7 m was used as the research object. By comparing the results of experiment and simulation, the accuracy of the finite element model was verified. Secondly, the power spectral density curves at typical measuring points in bogie area were obtained by processing and calculating the line test data, which was measured when the vehicle ran at high speeds, and the standard vibration spectrum of the bogie area was obtained by the extreme envelope method. Furthermore, the random vibration test and simulation prediction analysis of the real vehicle structure were carried out to further verify the accuracy of the noise and vibration prediction model. Finally, according to the vibration and acoustic radiation theory, the indirect boundary element method was adopted to predict the acoustic response of the real vehicle. The analysis shows that the simulated power spectral density curves of acceleration and sound pressure level are highly consistent with the experimental ones, and the error between the simulated prediction and the experimental result is within the allowable range of 3 dB. Based on the experiments on a platform with real vehicle structure and ?nite element simulation, the vibration and interior acoustic radiation under random excitations of high-speed trains’ bogie area were studied.Firstly, combined with line tests, a vehicle body with a length of 7 m was used as the research object. By comparing the results of experiment and simulation, the accuracy of the ?nite element model was veri?ed. Secondly, the power spectral density curves at typical measuring points in bogie area were obtained by processing and calculating the line test data, which was measured when the vehicle ran at high speeds, and the standard vibration spectrum of the bogie area was obtained by the extreme envelope method.Furthermore, the random vibration test and simulation prediction analysis of the real vehicle structure were carried out to further verify the accuracy of the noise and vibration prediction model. Finally, according to the vibration and acoustic radiation theory, the indirect boundary element method was adopted to predict the acoustic response of the real vehicle. The analysis shows that the simulated power spectral density curves of acceleration and sound pressure level are highly consistent with the experimental ones, and the error between the simulated prediction and the experimental result is within the allowable range of 3 dB.
出处 《Journal of Modern Transportation》 2019年第2期120-128,共9页 现代交通学报(英文版)
基金 support for this work from the Ministry of Science and Technology of China(2016YFB1200500)
关键词 High-speed TRAINS Standard vibration spectrum Indirect BOUNDARY ELEMENT method RANDOM EXCITATION Acoustic radiation High-speed trains Standard vibration spectrum Indirect boundary element method Random excitation Acoustic radiation
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