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Fatigue Life Characteristics of Segmental Lining Structure for the Shallow Buried Metro Tunnel under the Dynamic Load of a High-Speed Railway

机译:高速铁路动态负荷下浅埋到隧道浅埋到隧道节段衬砌结构的疲劳寿命特征

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Shallow buried shield metro tunnels constructed underneath subgrade project of high-speed railways are becoming increasingly common in China, but the lower metro tunnel bears the fatigue effect of dynamic load induced by the upper high-speed railway, so the long-term durability of segmental lining is a nonnegligible problem. The segmental lining structure of metro tunnel is in a state of static-dynamic loads for a long time, especially when a high-speed railway passes above the metro line, and the long-term durability of segmental lining needs further research. Based on theoretical analysis, the effect of different forms of loads on the fatigue life was analyzed, the change law of the static-dynamic loads on segmental lining was summarized, and the method was put forward to evaluate the fatigue life characteristics of segmental lining. The research results reveal that the additional dynamic load is the fundamental reason for the fatigue failure of the structure, and the existence of static load can cause and accelerate the occurrence of structural fatigue failure simultaneously. The results indicate that the fatigue life decreases gradually with the increase of static-dynamic load. Based on coupling analysis of static-dynamic loads of segmental lining, the fatigue life increases first and then decreases with the increase of buried depth of metro tunnel, and it remains unchanged when the depth exceeds a certain value. According to the actual metro tunnel engineering, by using ABAQUS software, a three-dimensional numerical simulation was carried out to analyze the characteristics of the fatigue life and evolution rules of segmental lining. Based on the modified fatigue life formula and metro service life, the optimization design of the buried depth was carried out to determine the most reasonable range of the buried depth. This study provides a valuable reference for safe operation and long-term durability of metro tunnels under high-speed railways.
机译:浅埋盾牌地铁隧道在高速铁路路基工程下构建的地铁隧道在中国越来越普遍,但是较低的地铁隧道承担了上高速铁路诱导的动态载荷的疲劳效果,因此节段的长期耐久性衬里是一个非资格的问题。 Metro隧道的节段衬砌结构长时间处于静动力载荷状态,特别是当在地铁线上的高速铁路通过时,节段衬里的长期耐久性需要进一步研究。基于理论分析,分析了不同形式的载荷对疲劳寿命的影响,总结了节段衬里的静动力载荷的变化规律,提出了该方法来评估节段衬砌的疲劳寿命特性。研究结果表明,额外的动态载荷是结构疲劳失效的根本原因,静态负荷的存在可以同时引起结构疲劳失效的发生。结果表明,随着静动力负荷的增加,疲劳寿命逐渐降低。基于节段衬砌静动载荷的耦合分析,疲劳寿命首先增加,然后随着地铁隧道的埋藏深度的增加而降低,并且当深度超过一定值时保持不变。根据实际的地铁隧道工程,通过使用ABAQUS软件,进行了三维数值模拟,以分析节段衬里的疲劳寿命和演化规则的特征。基于改进的疲劳寿命和地铁使用寿命,进行了埋藏深度的优化设计,以确定埋藏深度的最合理范围。本研究为高速铁路下的地铁隧道安全运行和长期耐久性提供了有价值的参考。

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