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首页> 外文期刊>International journal of geomechanics >Three-Dimensional Static and Seismic Stability Analysis of a Tunnel Face Driven in Weak Rock Masses
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Three-Dimensional Static and Seismic Stability Analysis of a Tunnel Face Driven in Weak Rock Masses

机译:弱岩体驱动隧道面的三维静震稳定性分析

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摘要

Face stability is an important issue for tunnel designs and constructions. This study investigated the seismic face stability of tunnels drilling in heavily fractured rock masses that follow the generalized Hoek-Brown yield criterion by means of an advanced three-dimensional (3D) failure mechanism in the framework of the kinematic approach of limit analysis. The pseudostatic method was employed to model seismic loadings. The classical tangential technique was used to compute the upper-bound solutions of necessary face pressures in the context of the generalized Hoek-Brown criterion. The obtained critical face pressures were found to agree well with those predicted by 3D numerical simulations using a commercial program and improve the existing upper-bound solutions previously published in the literature. Four sets of normalized charts are provided for parametric analysis and practical application in the preliminary design phase of tunnel face stability.
机译:面板稳定性是隧道设计和施工的重要问题。这项研究在运动极限分析的框架内,通过先进的三维(3D)破坏机制,研究了遵循广义Hoek-Brown屈服准则的重裂岩体中隧道的地震面稳定性。拟静力法被用来模拟地震荷载。在广义的Hoek-Brown准则的背景下,经典的切线技术用于计算必要的面压力的上限解。发现获得的临界表面压力与使用商业程序进行的3D数值模拟所预测的临界表面压力非常吻合,并改善了先前在文献中发表的现有上限解决方案。提供了四套归一化图表,用于隧道工作面稳定性初步设计阶段的参数分析和实际应用。

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