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首页> 外文期刊>Computers and Geotechnics >A new semi-numerical method for elastoplastic analysis of a circular tunnel excavated in a Hoek-Brown strain-softening rock mass considering the blast- induced damaged zone
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A new semi-numerical method for elastoplastic analysis of a circular tunnel excavated in a Hoek-Brown strain-softening rock mass considering the blast- induced damaged zone

机译:一种新的半数值方法,用于考虑爆破诱导的受损区Hoek-Brown菌株软化岩体挖掘出圆形隧道的弹塑性分析的新数值方法

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摘要

Drill and blast method is mostly used method for excavation of tunnels throughout the world. This tunneling method involves the use of explosives. Compared with bored tunneling by Tunnel Boring Machine, blasting generally results 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. In fact, the extent of the damaged zone is finite. However, the effect of this zone is traditionally considered by a damage factor D applied to the entire rock mass surrounding the tunnel. This is a common modeling method which can greatly underestimate the strength and stability of the overall rock mass. In this paper, a semi-analytical solution is proposed for analysis of tunnels considering the damaged zone. The solution is presented for circular tunnels excavated in rock masses obeying a new proposed non-linear strain-softening behavior and the non- linear Hoek-Brown failure criterion. The damaged zone is assumed to have a cylindrical shape with reduced strength and deformability parameters.
机译:钻头和爆炸方法主要是在全球隧道挖掘的方法中使用的方法。这种隧道方法涉及使用炸药。与隧道镗床钻孔隧道相比,爆破通常导致在隧道边界周围开发爆炸引起的受损区域。从理论上讲,该区域的存在具有降低的强度和刚度,将影响隧道的整体性能,以及其结构和维护。事实上,受损区域的程度是有限的。然而,该区域的效果传统上被应用于隧道周围的整个岩石质量的损伤因子D.这是一种常见的建模方法,可以大大低估整体岩体的强度和稳定性。本文提出了一种半分析解决方案,用于分析考虑受损区域的隧道。在岩体中挖掘的圆形隧道呈现出遵守新的非线性菌株软化行为和非线性Hoek-Brown失效标准的圆形隧道。假设受损区具有圆柱形,具有降低的强度和可变形性参数。

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