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A comparative study of UDEC simulations of an unsupported rock tunnel

机译:无支撑岩石隧道UDEC模拟的比较研究

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Spatial configuration of discontinuities often defines how rock masses behave during excavation. This study investigates how different representations of this configuration influence the predictions by UDEC simulations of the mechanical behaviour of a fractured rock mass hosting an unsupported tunnel. The first set of representations is assembled by the default joint generator command JSET of UDEC, while the second set of discrete fracture network (DFN) representations is realized by a new code developed using UDEC's built-in programming language. The first set typically contains nearly uniform joint systems producing rock blocks with similar sizes and shapes. The simulations with this representation predict relatively thin and uniform failure zones around the excavation boundaries. On the contrary, the DFN's stochastic joint systems with blocks of various sizes and shapes tend to develop much thicker and localized failure zones around the excavations. The vertical, horizontal and total displacements of UDEC-DFN models are generally greater than those of UDEC-JSET models. It is suggested that numerical simulations of excavations in fractured rock masses be performed using UDEC-DFN models to realize possible range of excavation conditions and to be prepared for them by formulating alternative designs.
机译:不连续性的空间配置通常定义了岩体在开挖过程中的行为。这项研究调查了这种构造的不同表示如何通过UDEC模拟承载无支撑隧道的裂隙岩体的力学行为来影响预测。第一组表示由UDEC的默认联合生成器命令JSET组装而成,而第二组离散裂缝网络(DFN)表示由使用UDEC内置编程语言开发的新代码实现。第一组通常包含几乎均匀的节理系统,产生具有相似大小和形状的岩石块。具有这种表示形式的模拟预测了开挖边界周围相对较薄且均匀的破坏区域。相反,DFN的随机节理系统具有各种大小和形状的块,往往在开挖周围形成更厚的局部破坏区域。 UDEC-DFN模型的垂直,水平和总位移通常大于UDEC-JSET模型的位移。建议使用UDEC-DFN模型对裂隙岩体中的开挖进行数值模拟,以实现可能的开挖条件范围,并通过制定替代设计为其进行准备。

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