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Numerical Analysis of Twin Tunnels Lining under Different Seismic Conditions

机译:不同地震条件下双隧道衬砌的数值分析

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摘要

The last seismic events showed that tunnel lining may suffer extensive damage. Employing numerical modeling has a great importance in predicting the seismic performance of tunnels. This paper tests the tunnel lining of the Zaouit Ait Mellal (ZAM) twin tunnels located between the cities of Marrakesh and Agadir in Morocco. Dynamic analysis was adopted by FLAC 2D software using the finite-difference elements. Four soil cross-sections were chosen, with different support devices installed along the twin tunnels, such as rock bolts and steel ribs. The seismic signals introduced as input were obtained from three different earthquakes: Al Hoceima 2004 in Morocco, EL Centro 1940 in the USA, and Kobe 1995 in Japan. The numerical results show that the deformation of the tunnel lining is more noteworthy in the sections using steel ribs compared to those using rock bolts, which is observed by the large values of relative displacement, reaching 1020 (mm) and 2.29 × 105 (N.m/m) of maximum bending moment. The analysis indicates that these sections present higher vulnerability during an earthquake, which should be considered when looking at the overall safety of the tunnel.
机译:最后地震事件表明,隧道衬里可能遭受广泛的损害。采用数值建模在预测隧道的地震性能方面具有重要意义。本文测试了位于摩洛哥的马拉喀什和阿加迪尔城市之间的Zaouit Ait Mellal(ZAM)双隧道的隧道衬里。 FLAC 2D软件采用动态分析使用有限差分元素。选择四个土壤横截面,沿着双隧道安装不同的支撑装置,例如岩石螺栓和钢肋。作为输入引入的地震信号是从三种不同的地震:在美国的摩洛哥,El Centro 1940的Al Hoceima 2004,以及日本的科比1995。数值结果表明,与使用岩螺栓的人相比,隧道衬里的变形更加值得注意,与使用岩石螺栓的那些相比,通过相对位移的大值观察,达到1020(mm)和2.29×105(nm / m)最大弯矩。分析表明,这些部分在地震期间呈现了更高的脆弱性,这在看隧道的整体安全时应考虑。

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