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Centrifuge testing and numerical modeling of tunnel face stability considering longitudinal slope angle and steady state seepage in soft clay

机译:考虑纵向角度和稳态渗透在软粘土中的隧道面稳定性的离心测试和数值模型

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摘要

Understanding the failure mechanism of a tunnel excavation face under complex hydrogeological conditions is a key challenge for geotechnical engineering. In this study, we investigated the excavation face instability induced by the longitudinal slope angle of the tunnel and steady state seepage flow. First, a fiber Bragg grating (FBG) system suitable for centrifuge model tests was proposed. The test apparatus was enhanced to investigate the influence of longitudinal slope angle on the active limit support pressure. Subsequently, a series of centrifuge model tests and Abaqus numerical simulation analyses were conducted to investigate the progressive failure mechanism of the excavation face. The experimental and numerical simulation results showed that the proposed geotechnical centrifuge FBG test system is fully feasible for multi-parameter monitoring of the centrifuge model. Under the assumptions of homogeneous and isotropic soil and steady state seepage flow, the seepage force in the limit support pressure is independent of the permeability coefficient. Moreover, the active and passive limit support pressures increase and decrease, respectively, with longitudinal slope angle, and the gap between them progressively decreases. Furthermore, under isotropic permeability, the soil internal friction angle, rather than soil cohesion, is responsible for the change in excavation face stability with longitudinal slope angle.
机译:了解复杂水文地质条件下隧道挖掘面的失效机制是岩土工程的关键挑战。在这项研究中,我们研究了隧道纵向斜角和稳态渗流流动引起的挖掘面不稳定。首先,提出了一种适用于离心模型试验的光纤布拉格光栅(FBG)系统。测试装置增强以研究纵向斜角对主体极限支撑压力的影响。随后,进行了一系列离心模型测试和ABAQUS数值模拟分析,以研究挖掘面的逐步故障机制。实验性和数值模拟结果表明,建议的地铁离心机FBG测试系统对于离心机模型的多参数监测是完全可行的。在均匀和各向同性土壤和稳态渗流流动的假设下,极限支撑压力中的渗漏力与渗透系数无关。此外,主动和无源极限支撑压力分别以纵向倾斜角度增加和减小,并且它们之间的间隙逐渐减小。此外,在各向同性渗透性下,土壤内部摩擦角,而不是土壤粘合,负责纵向斜坡角度的挖掘面稳定性的变化。

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