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SIMULATION AND OPTIMIZATION FOR INTERIOR SOUND FIELD OF A RAIL VEHICLE

机译:轨道车辆内部声场的仿真与优化

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摘要

A simulation and optimization scheme for reducing interior noise of rail vehicles is investigated in this paper. A sample subway of Shanghai Metro Line 9 is considered. Firstly, some interior noises are measured when the subway is running at a speed of 60 km/h. The A-weighted sound pressure levels (SPLs) of the measured noise signals are analyzed. A finite element model of the subway carriage is established based on its structural parameters, and then the Actran software is selected and used for acoustical simulation. The accuracy of the finite model is verified by comparing the one-third-octave SPL values from the simulations and measurements. According to the simulated sound field, several positions with relatively high SPLs in the carriage are determined for interior noise improvement. By. using orthogonal experimental design, finally, the best noise reduction scheme is put forward, which obtained an optimized SPL reduction of 4.81dB.The proposed scheme may be extended to other rail vehicles for improving interior acoustic environment.
机译:研究了一种减少轨道车辆内部噪声的仿真和优化方案。考虑上海地铁9号线的示例地铁。首先,当地铁以60 km / h的速度行驶时,会测量一些内部噪音。分析测得的噪声信号的A加权声压级(SPL)。根据其结构参数,建立了地铁车厢的有限元模型,然后选择Actran软件进行声学模拟。通过比较仿真和测量中的三分之一倍频程SPL值,验证了有限模型的准确性。根据模拟声场,确定车厢中具有较高SPL的几个位置,以改善内部噪音。通过。最后,通过正交试验设计,提出了最佳的降噪方案,使降噪效果最佳,降低了4.81dB。该方案可以推广到其他轨道车辆上,以改善室内声学环境。

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