地铁车辆段试车线减振改造后振动特性及减振效果研究
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华东交通大学

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国家自然科学基金项目(面上项目,重点项目,重大项目)基于超材料的地铁周期性轨道-隧道结构低频振动控制研究


Study on Vibration Characteristics and Vibration Reduction Effects after Vibration Reduction Modification of Subway Depot Test Line
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    摘要:

    【目的】研究地铁车辆段试车线区域高层建筑振动超标的问题。【方法】通过对某地铁车辆段试车线减振改造前后的环境振动进行现场实测和有限元仿真,分析减振改造前后振源及上盖的振动传递规律。【结果】结果表明:发现车速对源强的主频的影响会影响到各楼层楼板振动的水平,卧室测点在60km/h工况下的振动较大,而客厅在40km/h工况下的振动更大。振动随振源的距离的增大呈现先减小后增大再减小的现象。钢弹簧浮置板进行减振的同时,噪声可能会略微放大,改造后振源各测点振动均降低了10dB以上,但7.5m测点的噪声增加了0.96dB。对比观察减振改造前后各分频振级随层高的变化,发现振动加速度级最大频段出现了前移,由减振改造前的25-40Hz变为了20-25Hz,这与振源处激励频率的改变有关。【结论】相比于普通碎石道床,减振改造后钢弹簧浮置板能大幅减少振动,使此车辆段试车线区域上盖建筑满足相应规范要求。

    Abstract:

    【Objective】Studying the issue of excessive vibration in high-rise buildings located in the test track area of subway depots.【Method】Through on-site measurement and finite element simulation of the environmental vibration before and after the vibration reduction transformation of a subway vehicle testing line, the vibration source and the vibration transmission law of the upper cover before and after the vibration reduction transformation are analyzed.【Result】The results indicate that the influence of vehicle speed on the dominant frequency of the source intensity affects the level of vibration transmitted to various floor slabs. The vibration measured in bedrooms is relatively large under the condition of 60km/h, while the vibration in living rooms is more significant under the condition of 40km/h. The vibration first decreases, then increases, and finally decreases again as the distance from the vibration source increases. While the steel spring floating slab reduces vibration, noise may be slightly amplified, with all vibration measurement points at the vibration source reduced by more than 10dB after the modification, but the noise at the 7.5m measurement point increased by 0.96dB. By comparing and observing the changes in vibration levels at different frequencies with floor height before and after the vibration reduction modification, it is found that the maximum frequency band of vibration acceleration level shifts forward, from 25-40Hz before the modification to 20-25Hz after, which is related to the change in excitation frequency at the vibration source.【Conclusion】Compared to conventional ballast beds, the steel spring floating slab after vibration reduction modification can significantly reduce vibrations, enabling the buildings constructed above the test track area of this depot to meet the corresponding regulatory requirements.

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  • 收稿日期:2024-09-19
  • 最后修改日期:2024-10-24
  • 录用日期:2024-10-28
  • 在线发布日期: 2025-04-03
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