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Study on structural controled rock stability of large-scale underground caverns

机译:大型地下洞室结构控制岩石稳定性研究

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Structure controlled block failure is one of rock mass failures in underground engineering practice. This type of failure occurs typically when excavating large-span cravens in hard rock with relatively shallow depth of overburden. In such circumstance, great attention needs to be paid to the spatial distribution and the rock mechanics properties of geological structure in both engineering investigation and stability study of underground openings. On the base of previous studies of failure modes of underground openings under various conditions, the paper focus on the problem nature of large-span underground caverns in hard rock at relatively shallow depth, as well as the requirement of numerical analysis approaches and capabilities. A discontinuum numerical method of distinct element method and software package of 3DEC has been introduced and employed for the stability study of structure-controlled instability problems. It has been found, in terms of the application of this method into caverns, that 3DEC is capable in modelling both the clamping and the opening responses of geological discontinuities under compressive and tensile conditions, respectively. Consequently highly realistic results can be achieved with this approach. In addition, such discontinuum approach has shown its unique advantage in incorporating a large number of discontinuities for stability studies.
机译:结构控制块故障是地下工程实践中的岩石块之一。这种类型的故障通常发生在挖掘硬岩中的大跨度蠕动,具有相对较浅的覆盖层。在这种情况下,在地下开口的工程调查和稳定性研究中,需要支付巨大的注意力和地质结构的空间分布和岩石力学特性。在各种条件下地下开口的失效模式的基础上,纸张专注于硬岩中大跨度地下洞穴在相对较浅的深度的问题,以及数值分析方法和能力的要求。已经引入了一种不同元素方法和3DEC软件包的不连续性方法,并用于结构控制的不稳定问题的稳定性研究。就该方法的应用于洞穴而言,已经发现,3DEC能够分别能够分别在压缩和拉伸条件下建模地质不连续性的钳位和开口响应。因此,通过这种方法可以实现高度现实的结果。此外,这种不连续性方法在纳入大量不连续性方面的稳定性研究方面已经出现了独特的优势。

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