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Comprehensive solutions for underwater tunnels in rock masses with different GSI values considering blast-induced damage zone and seepage forces

机译:考虑到爆炸造成损伤区和渗流力的不同GSI值,岩体水下隧道综合解决方案

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摘要

Rock excavation using drill and blast method is commonly used in tunneling world-wide. Drill and blast method has inherent disadvantage of deteriorating surrounding rock mass due to development of a blast-induced damage zone with reduced strength and stiffness parameters and increased permeability. Traditional tunnel analysis adopts same parameters for the entire rock mass, leading to the underestimation of tunnel stability. The blast damage zone with finite thickness is significant in tunnel stability. Tunneling below the groundwater table affects the hydraulic equilibrium. This will, in turn, cause seepage into the tunnel through the pores and discontinuities in the rock masses. The developed seepage force should be considered as an additional body force acting on both damaged and undamaged rock masses. This study presents a new analytical closed-form solution for the determination of stresses, strains, and displacements around a circular deep underwater tunnel with the consideration of the seepage forces and the damaged zone. The solutions are presented for tunnels excavated in pervious elastic-brittle-plastic rock masses with Mohr-Coulomb failure criterion. The damaged zone is assumed to have cylindrical shape with finite radius. The plastic zones may be formed in both damaged and undamaged rock masses, independently. In order to solve the proposed problem, three different paths for plasticity evolution including six different states that can possibly be encountered in the problem are considered. The results indicate that the seepage and the damaged zone have significant effects on the tunnel convergence and the distribution of stresses in the rock mass.
机译:使用钻杆和爆炸法的岩石挖掘通常用于全球隧道。钻头和爆炸方法具有围绕岩体劣化的固有的缺点,由于产生的强度和刚度参数降低和渗透性增加,造成损伤区。传统的隧道分析采用相同的参数为整个岩石质量,导致低估了隧道稳定性。隧道稳定性具有有限厚度的爆破损伤区是显着的。地下水位下面的隧道影响液压平衡。反过来,这将导致渗透到隧道穿过岩石和岩石中的不连续性。发达的渗流力应被视为作用于损坏和未损坏的岩石群体的额外体力。该研究提出了一种新的分析闭合溶液,用于确定围绕渗流力和受损区域围绕圆形深水下隧道周围的应力,菌株和位移。通过MoHR-Coulomb失效标准,展示了渗透渗透的隧道隧道。假设受损区域具有有限半径的圆柱形状。塑料区可以独立地形成损坏和未损坏的岩体。为了解决提出的问题,考虑了包括在问题中可能遇到的六种不同状态的可塑性演化的三种不同路径。结果表明,渗流和受损区域对隧道收敛性具有显着影响和岩体中应力的分布。

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