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Underground rockfall stability analysis using the numerical manifold method

机译:地下流落岩稳定性的数值流形分析

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摘要

The present study applies the numerical manifold method (NMM) as a tool to investigate the rockfall hazard in underground engineering. The crack evolution technique with crack initiation and propagation criterion, which has been successfully applied to handle cracking problems in rocks, is used in this study. A rockbolt element is introduced, which is first validated by a simple case. The mechanism of the rockbolt in reinforcing a layered rock mass is then investigated through a four-layered rock beam example. The developed NMM is then used to investigate the rockfall instability caused by either natural joints or mining induced fractures in an underground power station house or a tunnel. The results illustrate that the developed NMM can not only capture the entire dynamic process of the rockfall but also locate the key-block successfully. As such, corresponding reinforcement methods can be chosen reasonably.
机译:本研究应用数值流形方法(NMM)作为研究地下工程中崩塌危害的工具。这项研究采用了具有裂纹萌生和扩展准则的裂纹演化技术,该技术已成功地应用于解决岩石中的裂纹问题。引入了一个rockbolt元素,该元素首先通过一个简单的案例进行验证。然后通过四层岩梁实例研究了锚杆加固层状岩体的机理。然后,将开发的NMM用于调查地下电站房屋或隧道中自然节理或采矿引起的裂缝引起的落石失稳。结果表明,所开发的NMM不仅可以捕获落石的整个动态过程,而且可以成功地定位关键块。这样,可以合理地选择相应的加固方法。

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