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Study on Acoustic Numerical Value Simulation and Reducing Noise Application of Damping Layer for Rail Wheel

机译:轨道车轮阻尼层的声数值模拟及降噪应用研究

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The acoustic numerical value simulation is significant for reducing rail-wheel noise, the effect of damping layer on reducing vibratin and noise can be validated basing on the acoustic numerical simulation. The finite element model of wheel vibration is built, the wheel vibration response is calculated by use of FEM. Then, the vibration velocities of wheel surface are extractd and are used as boundary conditions, then the boundary element model is built basing on the velocity boundary conditions the noise radiation from a rail wheel is calculated by use of BEM. The effect on both reducing vibration and noise of damping layer is analysed and compared basing on the numerical results. The results show that the damping layer sticking on wheel surface can significantly reducing the vibration and noise, a 2-3dB reduction of acoustic pressure level(APL) and a 3-4 dB reduction of sound power level(SPL) are achieved at all non-peak frequency, and the reductions of 20dB above of SPL are achieved at the peak frequencies, the APL and SPL curves tend to smooth. This research shows that the finite element method and boundary element method can effectively calculate the wheel vibration and noise, the damping layer of wheel surface may effectively reduce vibration and noise.
机译:声学数值模拟对于降低车轮噪声具有重要意义,基于声学数值模拟可以验证阻尼层对降低纤维蛋白和噪声的作用。建立了车轮振动的有限元模型,利用有限元方法计算了车轮振动响应。然后,提取车轮表面的振动速度并将其用作边界条件,然后基于速度边界条件建立边界元模型,并利用边界元法计算出来自车轮的噪声辐射。根据数值结果,对减振层的减振降噪效果进行了分析和比较。结果表明,在车轮表面上附着的阻尼层可以显着降低振动和噪音,在所有非噪声情况下,声压级(APL)降低2-3dB,声功率级(SPL)降低3-4dB。峰值频率,并且在峰值频率处将SPL降低了20dB以上,APL和SPL曲线趋于平滑。研究表明,有限元法和边界元法可以有效地计算出车轮的振动和噪声,车轮表面的阻尼层可以有效降低车轮的振动和噪声。

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