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NUMERICAL MODELLING OF SOIL-INFILLED ROCK DISCONTINUITIES

机译:土质岩石不连续性的数值模拟

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Numerical modelling often form an essential part in the design of urban tunnels in order to evaluate the interaction of the geo-structure with other structures in the vicinity of the excavation (buildings, public services, driveways etc.), the design of the support and to establish limits of alert during the construction. With the understanding that rock joints play a key role in a rock mass, the approach used for such prediction should be able to describe all important mechanisms characterising a discontinuous medium. In this scenario, rock joints that are filled with fine materials are likely to be the weakest elements in a rock mass, having a dominant influence on its overall shear behaviour because of the low frictional properties of the infill. This paper presents a discussion on some of the relevant factors affecting the shear behaviour of soil-infilled rock discontinuities. To illustrate the effect of some of those factors in a class A prediction, a hypothetical example of a cavern excavation in a jointed medium is presented. The analysis is based on a discontinuum approach and performed using the distinct element program UDEC. A new semi-empirical yield criterion for soil-infilled rock discontinuities under constant normal stiffness conditions has been employed and compared to the conventional Mohr-Coulomb slip model. The new criterion better describes the shear behaviour of the rock joint resulting in a difference of approximately 50 percnet in the induced settlement at the surface.
机译:数值建模通常是城市隧道设计中不可或缺的部分,以评估地质结构与基坑附近其他结构(建筑物,公共服务,车道等),支护和支护设计之间的相互作用。建立施工期间的警报极限。在认识到节理在岩体中起关键作用的前提下,用于这种预测的方法应该能够描述表征不连续介质的所有重要机制。在这种情况下,填充有精细材料的节理岩可能是岩体中最弱的元素,由于填充物的低摩擦特性,对其整体剪切行为具有主要影响。本文讨论了一些影响填充土岩石间断面剪切特性的相关因素。为了说明某些因素在A类预测中的作用,提出了在联合介质中进行洞室开挖的假设示例。该分析基于不连续方法,并使用不同元素程序UDEC进行。采用了一种新的半经验屈服准则,用于在恒定法向刚度条件下的土填充岩石不连续性,并将其与常规的Mohr-Coulomb滑移模型进行了比较。新标准更好地描述了岩石节理的剪切行为,导致地表感应沉降相差约50 percnet。

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