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Three-Dimensional Discrete Element Analysis on Tunnel Face Instability in Cobbles Using Ellipsoidal Particles

机译:椭球粒子对卵石隧道面不稳定性的三维离散元分析

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摘要

Soil disturbance has always been the major concern in shield tunneling activity. This paper presents the investigation on the micro-scale responses of the soils during shield tunnel excavation in sandy-cobble stratum. The code paraEllip3d is employed in discrete element method (DEM) analysis in which the soils are mimicked as an assembly of ellipsoids. Triaxial tests on the micro-scale responses of cobbles are carried out using the materials sampled from the tunnel face during construction period, and corresponding DEM simulations are performed to calibrate the micro parameters for the ellipsoids. On this basis, the face instability process during the shield tunneling in cobbles is studied using 1 g model test as well as corresponding DEM simulation. The micro-scale responses of cobbles are investigated by triaxial test as well as corresponding DEM simulations. Multiple material responses are discussed in the DEM simulations, including the stress–strain relationship, the contact distribution, and the force chain evolution in the elementary and model test. Finally, the mechanism of tunnel face instability in cobbles are discussed on the basis of aforementioned investigations.
机译:土壤扰动一直是盾构掘进活动的主要关注点。本文对砂卵石地层盾构隧道开挖过程中土壤的微观响应进行了研究。代码paraEllip3d用于离散元方法(DEM)分析中,在该分析中,土壤被模拟为椭圆体的组合。在施工期间使用从隧道工作面采样的材料对卵石的微观尺度响应进行了三轴测试,并进行了相应的DEM仿真,以校准椭球体的微观参数。在此基础上,利用1 g模型试验以及相应的DEM仿真研究了鹅卵石盾构掘进过程中的工作面失稳过程。通过三轴测试以及相应的DEM模拟研究了鹅卵石的微观响应。在DEM模拟中讨论了多种材料响应,包括基本和模型测试中的应力-应变关系,接触分布以及力链演变。最后,在上述研究的基础上,讨论了鹅卵石隧道面失稳的机理。

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