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Dynamic Characteristics of Intersection Structure consisting of Twin Shield Tunnels and a Transverse Passage

机译:双盾构隧道与横向通道交叉口结构的动力特性

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摘要

The intersection structure, composed of twin shield tunnels and a transverse passage, is ubiquitous in the metros around the world. However, the dynamic characteristics of this kind of intersection structure have not been studied a lot yet. By carrying out the corresponding model tests and numerical simulations, the dynamic characteristics of this kind of intersection structure are studied in this paper, which is very helpful for the determination of the ground vibration from this kind of underground structure. The results show that the vibration of the transverse passage is more severe than the main tunnel, manifested that the frequency response function (FRF) of the transverse passage has greater magnitudes than that of the main tunnel at the locations with the same distance from the vibration source. The peak frequencies of the acceleration responses at different locations of the intersection structure under the moving train load are all located in the frequency band 44.9-56.1 Hz where the corresponding 1/3 octave band spectra of FRF have the largest values in the considered frequency band 31.5-250 Hz, indicating that the natural frequencies of the intersection structure in the frequency band 44.9 similar to 56.1 Hz have significant influences on its acceleration responses below 250 Hz induced by the moving train.
机译:由双屏蔽隧道和横向通道组成的交叉路口结构在世界各地的地铁中无处不在。但是,这种交叉路口结构的动力特性尚未得到研究。通过进行相应的模型试验和数值模拟,研究了这种交叉口结构的动力特性,这对于确定这种地下结构的地面振动非常有帮助。结果表明,横向通道的振动比主隧道严重,表明横向通道的频率响应函数(FRF)在与振动距离相同的位置处比主通道的幅度大。资源。在动车荷载作用下,交叉路口结构在不同位置的加速度响应的峰值频率都位于44.9-56.1 Hz频段,其中FRF的相应1/3倍频程频谱在所考虑的频段中具有最大值31.5-250 Hz,表明在44.9频段类似于56.1 Hz的交叉路口结构的固有频率对其在行驶列车引起的250 Hz以下的加速度响应有重大影响。

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