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Experimental study on the vibration damping of two parallel shield tunnels connected by an assembled transverse passage

机译:组装横向通道连接两个平行屏蔽隧道振动阻尼的实验研究

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摘要

Transverse passages are ubiquitous in urban subways, and they pose serious mutual threats to the two adjacent tunnels they connect. In this paper, the frequency sweep loads were applied in model tests and the influence mechanism of integral transverse passage (ITP) was studied by using the one-third octave of the frequency response function (FRF). Subsequently, a new assembled transverse passage (ATP) was proposed and its vibration attenuation effect was studied. The results showed that, when the frequency sweep load is applied to one tunnel, the adjacent tunnel is more susceptible to a load that has a central frequency of 12.5-80 Hz due to the existence of ITP. The closer the loading frequency is to 31.5 Hz, the greater the impact on the adjacent tunnel becomes. When an ATP is used, the vertical acceleration level (VAL) of the tunnel to which the load is applied will increase by 1.3 dB, while that of the adjacent tunnel will decrease by 7.2 dB, and the transverse passage will decrease by 8.7 dB. Compared to the ITP, when the lining structure of an adjacent tunnel is closer to the ATP, the reduction in the vibration response of the structure is more pronounced, and the vibration response is reduced over a larger central frequency range.
机译:横向通道在城市地铁中普遍存在,它们对他们连接的两个相邻的隧道构成了严重的相互威胁。在本文中,通过使用频率响应函数(FRF)的三分之一八度音程研究了模型试验中的频率扫描载荷和积分横向通道(ITP)的影响机理。随后,提出了一种新的组装横向通道(ATP),研究了其振动衰减效果。结果表明,当频率扫描载荷施加到一个隧道时,相邻的隧道由于ITP的存在而更容易受到12.5-80Hz的中心频率的负荷。装载频率越接近31.5Hz,对相邻隧道的影响越大。当使用ATP时,施加负载的隧道的垂直加速电平(VAL)将增加1.3dB,而​​相邻隧道的隧道将减小7.2dB,横向通道将减小8.7dB。与ITP相比,当相邻隧道的衬里结构更靠近ATP时,结构的振动响应的减小更加明显,并且振动响应在更大的中央频率范围内降低。

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