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Structure Strengthening Method for Enhancing Seismic Behavior of Soft Tunnel Portal Section

机译:用于增强软隧道门户剖面抗震性能的结构强化方法

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Tunnel portal sections always suffer serious damage under strong earthquakes. This paper aims to study the seismic performance of lining strengthening method in soft rock portal section by employing the model test. Firstly, the shaking table test considering the test cases, the modified input motions, the boundary condition, and monitoring equipment are conducted to simulate the seismic response of the soft tunnel portal section. Then, the lining strengthening method of increasing concrete grade is applied to the tunnel structure to study the aseismic performance of the soft rock tunnel portal section, and the seismic effects of the tunnel linings with different concrete grades are compared and analyzed. The result shows that the proportion of soft rock to total surrounding rock is the key factor affecting the seismic response of soft rock tunnel portal section; the larger the proportion of soft rock in surrounding rock, the more vulnerable the structure to earthquake damage; the seismic performance of the lining strengthening in hard rock portal is remarkable while limited in soft rock portal section. The stiffness and strength of the lining are larger than those of surrounding rock; the seismic performance of the soft portal section could hardly be improved only by the lining strengthening method. It is suggested to adopt both the structure strengthening and isolation method in the seismic design of soft portal section.
机译:隧道门户部分始终在强大的地震下遭受严重损害。本文旨在通过采用模型试验研究衬里加固方法在软岩门骨区内的地震性能。首先,考虑测试用例,改进的输入动作,边界条件和监测设备的振动台测试是为了模拟软隧道门户部分的地震响应。然后,将混凝土等级的衬里强化方法应用于隧道结构,研究软岩隧道门壁部分的抗空性能,并进行了隧道衬里与不同混凝土等级的抗震效果进行了比较和分析。结果表明,软岩与周围岩石总量的比例是影响软岩隧道门户剖面抗震反应的关键因素;周围岩石中软岩比例越大,地震损坏的结构越脆弱;硬岩门户衬里加强衬里的地震性能显着,而软岩门段则是有限的。衬里的刚度和强度大于周围岩石的强度;仅通过衬里的强化方法才能改善软门壁部分的地震性能。建议采用软门壁部分地震设计中的结构强化和隔离方法。

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