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The effects of floating slab bending resonances on the vibration isolation of rail viaduct

机译:浮动平板弯曲共振对钢轨高架桥隔振的影响

摘要

This paper compared the performance of several isolation designs to control vibration transmissions from concrete rail viaducts. The isolation systems analysed includes medium- and short-length floating slabs, and floating ladders. The vibration was measured in Japan, Korea and Hong Kong. The study aimed to assess the effects of bending resonances of the floating slab systems. Simple formulae of estimating the significant bending resonance frequency and support passage frequency of a floating slab system are proposed. The resonance peaks obtained in site measurement are found to be in agreement with the calculation results. The results show that other than the vertical rigid body resonances for the isolation systems, the bending resonances of slabs have significant effects on vibration isolation performance. In particular, bending resonance frequencies should not coincide with the vertical isolator resonance and support passage frequency. According to the in-situ measurement results, a mini-type concrete floating slab can reduce the vibration level by more than 30 dB in the frequency range of 63-200 Hz. This should be achieved by designing the first bending resonances of the floating slab to be out of the dominant frequency range of concrete rail viaduct vibration.
机译:本文比较了几种隔离设计在控制混凝土轨道高架桥的振动传递方面的性能。所分析的隔离系统包括中等长度和短长度的浮动平板以及浮动梯子。在日本,韩国和香港测量了振动。该研究旨在评估浮动平板系统的弯曲共振的影响。提出了一种简单的公式来估算浮板系统的明显弯曲共振频率和支撑通过频率。发现在现场测量中获得的共振峰与计算结果一致。结果表明,除了隔离系统的竖向刚体共振以外,平板的弯曲共振对隔振性能有重要影响。特别是,弯曲共振频率不应与垂直隔离器共振和支撑通道频率一致。根据现场测量结果,微型混凝土浮板在63-200 Hz的频率范围内可将振动水平降低30 dB以上。这应通过将浮板的第一弯曲共振设计为超出混凝土轨道高架桥振动的主要频率范围来实现。

著录项

  • 作者

    Hui CK; Ng CF;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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