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Study on vibration of Futian underground hub in Guangzhou-Shenzhen-Hong Kong high-speed rail

机译:广州 - 深圳市福田地下枢纽振动研究

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A finite element model considering the high-speed train excitation loads, track structure, vibration reduction measures, station structure, characteristics of foundation soils was established to study the problem of vibration in the underground Futian hub of Guangzhou-Shenzhen-Hong Kong high-speed rail. The first 200 natural frequencies of the station are all within 40Hz, the vibration energy concentrates mainly in the second and third floors, in the form of bending vibration mode; the modes of local orbital plate mainly accounts for vertical vibration, and the lowest frequency is near 26Hz.The additional displacement and stress induced by vibration is not great in general, vibration energy of the structure is mainly concentrated in the band of 15~20Hz. When the train passes by at a speed of 200km/h, without damping rubber pads, the maximum vibration level at upper floors is 57.9 dB, while with damping pads under the orbits the vibration level decreases by 5~6dB, which is a significant effect.
机译:考虑高速列车励磁负荷,轨道结构,减震措施,站结构,基础土壤特征的有限元模型成立,研究了广州 - 深圳 - 香港高速地下福田枢纽振动问题轨。该站的前200个固有频率都在40Hz内,振动能量主要集中在第二和第三层,以弯曲振动模式;局部轨道板的模式主要占垂直振动,最低频率接近26Hz。通过振动引起的额外位移和应力一般不大,结构的振动能量主要集中在15〜20Hz的带中。当火车以200km / h的速度通过时,没有阻尼橡胶垫,上层的最大振动水平为57.9 dB,而轨道下的阻尼垫振动水平降低5〜6dB,这是一个显着效果。

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