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首页> 外文期刊>Computers and Geotechnics >Combined finite-discrete element modellings of rockbursts in tunnelling under high in-situ stresses
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Combined finite-discrete element modellings of rockbursts in tunnelling under high in-situ stresses

机译:高于原位应力下隧道岩爆中岩浆的组合有限离散元件

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摘要

Rockburst is one of the severe geotechnical problems that may occur while tunnelling under high in-situ stresses. Despite numerous studies in the relevant literature, the evaluation and prediction of the rockburst still remain a common challenge worldwide. In this paper, a self-developed combined finite-discrete element method (FDEM) is used to numerically investigate the rockbursts in deep tunnelling under high in-situ stresses. The rockbursts in the drainage tunnel at the Jinping II Hydropower Station are modelled and the effects of the geological and geotechnical characteristics of the site on the occurrence of rockbursts are investigated. The FDEM numerical modelling vividly simulates the fracture initiation and propagation, as well as the fragment expulsion, ejection and flyout resulting in the rockburst process that could be difficult to capture on the site or via the conventional continuum modellings. The effect of the pre-existing fault on the site is studied, and the critical roles of the location and the dip angle of the fault in determining the rockburst development around the tunnel are highlighted. Then, the effects of in-situ stresses on rockburst development are investigated by applying different lateral pressure coefficients in the model. It is found that based on the Jinping site condition, a low lateral pressure coefficient could contribute to the alleviation of the rockburst around the tunnel but the alleviation effect is relatively limited, while a high lateral pressure coefficient could result in the rockburst that breaks more rock masses on the tunnel surface. Moreover, the influences of tunnel shapes on the rockburst incidents are also studied by further modelling rockbursts around tunnels in square shape and horseshoe shape. It is found that the square shape is inadequate in controlling rockbursts at the roof and floor areas, and the most suitable tunnel shape to resist rockbursts in such field condition is the circular shape. By vividly reproducing the rockburst processes in deep tunnelling under high in-situ stresses and elaborating the effects of several critical geological and geotechnical characteristics on the rockburst development around the tunnel, this study contributes to the understanding of the associated rockburst mechanisms and is also of guiding importance for certain tunnelling designs and constructions in practice. It is also expected that the proposed method can be used to evaluate and predict the rockbursts in many other scenarios in future studies.
机译:Rockburst是在高于原位应力下隧道隧道时可能发生的严重岩土问题之一。尽管有许多在相关文献中的研究,但岩石的评估和预测仍然是全世界的共同挑战。在本文中,使用自我开发的组合有限离散元素方法(FDEM)用于在高原位应力下进行数字研究深隧道中的岩虫。调查了锦平II水电站排水隧道中的摇滚乐,调查了现场地质和岩土工程特征对岩虫发生的影响。 FDEM数值模拟生动地模拟了骨折启动和传播,以及片段驱逐,喷射和弹出,导致岩爆过程,这些过程可能难以在现场或通过传统的连续型燃料捕获。研究了预先存在的故障对网站上的效果,并且突出了隧道周围确定岩爆发的故障的关键角色和故障的倾斜角度。然后,通过在模型中施加不同的横向压力系数来研究原位应力对摇滚爆发的影响。发现基于晋平现场条件,低横向压力系数可能有助于减轻隧道周围的岩虫,但缓解效果相对有限,而高横向压力系数可能导致摇滚乐破坏更多岩石隧道表面上的肿块。此外,还通过在方形形状和马蹄形形状周围的隧道上进一步建模岩爆来研究隧道形状对摇滚乱事件的影响。结果发现,在屋顶和地板区域控制岩浆中,方形不足,以及最合适的隧道形状以抵抗这种场地条件的岩石是圆形形状。通过生动地再现深隧道的岩爆过程,在高原位应力下,并阐述了几种关键地质和岩土性特征对隧道周围岩虫发展的影响,这项研究有助于了解相关的摇滚乐机制,也是指导在实践中对某些隧道设计和结构的重要性。还有预期,该方法可用于评估和预测未来研究中许多其他情景中的摇滚乐。

著录项

  • 来源
    《Computers and Geotechnics》 |2021年第9期|104261.1-104261.22|共22页
  • 作者单位

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia;

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia|Hokkaido Univ Fac Engn Sapporo Hokkaido 0608628 Japan;

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia;

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia|Mining3 CSIRO Brisbane Qld 4069 Australia;

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia|Mining3 CSIRO Brisbane Qld 4069 Australia;

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia|South China Univ Technol Sch Civil Engn & Transportat Guangzhou 510640 Peoples R China;

    Univ Tasmania Sch Engn Hobart Tas 7001 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FDEM; Deep tunnelling; Rock fracture and fragmentation; Rockburst;

    机译:FDEM;深隧道;岩石骨折和碎片;摇滚笨蛋;

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