Comparative analysis of track damping effect of structure jointly constructed by subway tunnels and high-rise buildings

Song Zhang, Bo Liu, Kun Wang, Yinan Yan, Huanhuan Fan, Yue Pan
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Abstract

The joint construction of subways and other public buildings is a relatively newer type of construction. There is little research experience in the vibration characteristics and track damping design for this type of structure. In this study, a field test was adopted to conduct site measurement analysis on the vibration response of the joint construction project consisting of a subway tunnel and a building with typical frame structures. Numerical simulation methods were also adopted to, respectively, assume the use of ordinary tracks and steel-spring floating slab tracks for the subway for the situation where the Cologne-egg high-elastic fasteners were used on the track for damping purposes. Comparisons were performed to analyze the difference in the system vibration response between three different types of track. The results showed that the high-elastic fastener track and floating slab track both have a certain degree of damping effect compared with an ordinary track. Specifically speaking, the former has a damping advantage for frequency bands below 20 Hz, while the latter has the advantage for frequency bands above 20 Hz under the impact of the structural vibration characteristics for this joint construction. For this jointly construction structure, affected by the natural vibration characteristics of the structure, the natural frequency of the floating slab track is within 4 ∼ 10 Hz, and the similar vibration reduction effect can be achieved. This indicates that the structural vibration characteristic of the jointly constructed structure is an important factor determining the appropriate natural frequency of the floating slab track.
地铁隧道与高层建筑共建结构的轨道阻尼效应对比分析
地铁和其他公共建筑的联合结构是一种相对较新的建筑类型。对这类结构的振动特性和轨道阻尼设计的研究经验很少。本研究采用现场试验的方法,对由地铁隧道和典型框架结构建筑组成的联合建筑工程的振动响应进行现场测量分析。同时还采用了数值模拟方法,分别假设地铁使用普通轨道和钢弹簧浮置板轨道,在轨道上使用科隆蛋高弹性扣件进行减振。对三种不同类型轨道的系统振动响应差异进行了比较分析。结果表明,与普通轨道相比,高弹性扣件轨道和浮动板轨道都具有一定程度的减振效果。具体来说,前者在 20 Hz 以下的频段具有阻尼优势,而后者在 20 Hz 以上的频段则具有优势。对于这种联合施工结构,受结构固有振动特性的影响,浮置板轨道的固有频率在 4 ∼ 10 Hz 范围内,可以达到类似的减振效果。这表明,共建结构的振动特性是决定浮置板轨道合适固有频率的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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