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首页> 外文期刊>Journal of Performance of Constructed Facilities >Vibration Response and Cumulative Fatigue Damage Analysis of Overlapped Subway Shield Tunnels
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Vibration Response and Cumulative Fatigue Damage Analysis of Overlapped Subway Shield Tunnels

机译:重叠地铁屏蔽隧道振动响应及累积疲劳损伤分析

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摘要

Overlapped subway shield tunnels are subjected to the dynamic impacts caused by running trains and are damaged during their long-term service life. In this paper, the dynamic response and cumulative damage evolution of the overlapped shield tunnels were numerically studied. The numerical simulation takes into account the uniaxial constitutive concrete model and the fatigue damage constitutive model of steel-reinforced concrete that is able to simulate any number of loading (cycling) times. For simplicity, only the case of a train running in the upper tunnel is considered in this study. The fatigue life of the overlapped tunnel section is numerically computed. The results indicate that the fatigue life meets the design requirements. The maximum principal stress is mainly concentrated at the bottom arch in the upper tunnel as the train runs in the upper tunnel. The lower tunnel is subjected to smaller damage than the upper tunnel. The tunnel structure undergoes greater tensile damage than the compressive damage in terms of damage amplitude and range. The failure of the structure is mainly associated with tensile damage. The cumulative damage of overlapped shield tunnels indicates a two-stage feature: the rapid increase stage (0-6.85 years) and the slow development stage (6.85-102.74 years). The steel spring floating slab can greatly reduce the cumulative compressive and tensile damage of the bottom arch at the upper tunnel.
机译:重叠的地铁屏蔽隧道受到行驶训练引起的动态冲击,并且在长期使用寿命期间受损。在本文中,在数值上研究了重叠屏蔽隧道的动态响应和累积损伤演化。数值模拟考虑了单轴构成混凝土模型及钢筋混凝土疲劳损伤本构模型,其能够模拟任何数量的装载(循环)时间。为简单起见,在本研究中考虑了在上隧道中运行的火车的情况。数值计算重叠隧道部分的疲劳寿命。结果表明,疲劳生活符合设计要求。由于火车在上部隧道中运行,最大主应力主要集中在上隧道中的底部拱形。低隧道受到上隧道的损坏较小。隧道结构比损坏幅度和范围的压缩损坏更大的拉伸损伤。该结构的失败主要与拉伸损伤有关。重叠屏蔽隧道的累积损坏表示两层特征:快速增加阶段(0-6.85岁)和慢的发展阶段(6.85-102.74岁)。钢弹簧浮动板可以大大减少上隧道底拱的累积压缩和拉伸损伤。

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