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ARMA 12-675 Progressive failure analysis and support design of blocky rock mass based on extended key block method

机译:基于扩展钥匙块法的甲臂12-675展台失效分析与块状岩体质量的支持设计

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摘要

Traditional rock support design methods of rock slopes and tunnels are reviewed. Towards a more rational support design, not only the effects of blocks inside the rock mass on the key blocks day-lighting into the excavation directly are considered, but also whether or not these day-lighting blocks are anchored to blocks inside and forming large key blocks after support is checked. Through a realistic numerical representation of three-dimensional rock mass, different batches of key blocks are searched successively. Then the sliding forces of the key blocks in the later batches are transferred to key blocks in the earlier batches batch by batch until the first batch according to a force transfer algorithm. The resultant forces of the key blocks in the first batch are finally utilized for support design. After selection of a rock bolting scheme, the stability of the reinforced rock mass is re-assessed. Stability analysis of individual key blocks and block groups connected by rock bolts are carried out. Compared with the previous rock support methods, the present support design based on advanced key block analysis is safer and more rational for blocky rock support design.
机译:综述了传统的岩石支撑设计方法和隧道的设计方法。朝着更合理的支持设计,不仅考虑了块内块内岩体内部的块,还考虑了当天照明进入挖掘的挖掘中,而且这些日照明块是否锚固到内部并形成大键检查后的块。通过三维岩体的现实数值表示,连续搜索不同批次的关键块。然后,稍后批量中的密钥块的滑动力通过批次转移到较早批次批次中的键块,直到根据力传输算法第一批次。最终用于支撑设计的第一批次中的关键块的所得到的力。在选择岩石螺栓方案之后,重新评估增强岩体的稳定性。进行了岩石螺栓连接的各个关键块和块组的稳定性分析。与先前的岩石支持方法相比,基于先进的关键块分析的本支持设计更安全,更适用于块状岩石支撑设计。

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