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Numerical Analyses of the Influence of Blast-Induced Damaged Rock Around Shallow Tunnels in Brittle Rock

机译:脆性岩石中浅埋隧洞爆破损伤岩石影响的数值分析

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摘要

Most of the railway tunnels in Sweden are shallow-seated (<20 m of rock cover) and are located in hard brittle rock masses. The majority of these tunnels are excavated by drilling and blasting, which, consequently, result in the development of a blast-induced damaged zone around the tunnel boundary. Theoretically, the presence of this zone, with its reduced strength and stiffness, will affect the overall performance of the tunnel, as well as its construction and maintenance. The Swedish Railroad Administration, therefore, uses a set of guidelines based on peak particle velocity models and perimeter blasting to regulate the extent of damage due to blasting. However, the real effects of the damage caused by blasting around a shallow tunnel and their criticality to the overall performance of the tunnel are yet to be quantified and, therefore, remain the subject of research and investigation. This paper presents a numerical parametric study of blast-induced damage in rock. By varying the strength and stiffness of the blast-induced damaged zone and other relevant parameters, the near-field rock mass response was evaluated in terms of the effects on induced boundary stresses and ground deformation. The continuum method of numerical analysis was used. The input parameters, particularly those relating to strength and stiffness, were estimated using a systematic approach related to the fact that, at shallow depths, the stress and geologic conditions may be highly anisotropic. Due to the lack of data on the post-failure characteristics of the rock mass, the traditional Mohr-Coulomb yield criterion was assumed and used. The results clearly indicate that, as expected, the presence of the blast-induced damage zone does affect the behaviour of the boundary stresses and ground deformation. Potential failure types occurring around the tunnel boundary and their mechanisms have also been identified.
机译:瑞典的大多数铁路隧道都是浅层的(岩层<20 m),位于坚硬的脆性岩体中。这些隧道的大部分是通过钻孔和爆破开挖的,因此,导致在隧道边界周围形成了爆炸诱发的损坏区域。从理论上讲,该区域的存在,其强度和刚度降低,将影响隧道的整体性能及其施工和维护。因此,瑞典铁路局使用一套基于峰值粒子速度模型和周边爆破的准则来调节爆破造成的破坏程度。然而,由浅隧道周围爆破造成的破坏的实际影响及其对隧道整体性能的关键性尚待量化,因此仍然是研究和研究的主题。本文提出了爆炸引起的岩石损伤的数值参数研究。通过改变爆炸引起的破坏区域的强度和刚度以及其他相关参数,根据对诱发边界应力和地面变形的影响,评估了近场岩体响应。使用了数值分析的连续方法。输入参数,特别是与强度和刚度有关的输入参数,是使用系统方法估算的,该方法与以下事实有关:在较浅的深度,应力和地质条件可能是高度各向异性的。由于缺乏有关岩体破坏后特征的数据,因此假定并使用了传统的Mohr-Coulomb屈服准则。结果清楚地表明,正如预期的那样,爆炸引起的损坏区域的存在确实会影响边界应力和地面变形的行为。还已经确定了在隧道边界附近发生的潜在故障类型及其机理。

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