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首页> 外文期刊>Advances in civil engineering >Space-Time Evolution Laws of Zonal Disintegration in Deep Underground Caves Based on Coordination Deformation between the Bolt Body and Surrounding Rock
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Space-Time Evolution Laws of Zonal Disintegration in Deep Underground Caves Based on Coordination Deformation between the Bolt Body and Surrounding Rock

机译:基于螺栓体与周围岩石之间的协调变形的地下洞穴区分解的时效演变规律

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Zonal disintegration refers to the special phenomenon whereby fractured zones and intact zones appear alternately in deep-buried surrounding rocks under high stress conditions, which are different from that of the shallow rock mass. Because the divisional rupture law in engineering practice is closely related to the force characteristics of the bolt body, this paper analyzed stress distribution rules of the same bolt body at different times and that of different bolt bodies at the same time in the case of zonal disintegration based on coordination deformation between the bolt body and surrounding rock. The nonlinear rheological mechanics model of rock mass on the elastic-plastic interface under the maximum support pressure was established. It puts forward the theoretical calculation formula about the mechanics criterion and breakdown moment of the zonal disintegration. Using the mechanics model of interaction between a bolt and the surrounding rock, the distribution locations along the bolt body of the anchor neutral points and its maximum axial forces were discussed with the multiple theoretical neutral points. Furthermore, the location and width of each fracture zone were back analyzed. The results show that the rock mass on the elastic-plastic interface of the surrounding rock has a significant creep effect after the excavation of the deep underground cave. While maximum deviator stress of the rock mass is more than its long-term strength, the rock mass will fracture along a radial direction and come into the fractured zone. The multiple redistribution of the surrounding rock stress will generate alternate distribution phenomena of the fractured zone and intact zone. Meanwhile, the distribution regularity of the peaks and troughs interval of the displacement of surrounding rock leads to multiple neutral points along the anchor length direction. The computed results of zonal disintegration through the back analysis can reflect the actual space-time evolution laws of zonal disintegration in deep underground caves.
机译:区域崩解是指特殊的现象,由此在高压条件下的深埋围岩中交替地出现裂缝区域和完整区域的特殊现象,这与浅岩体的深埋岩体不同。由于工程实践中的分区破裂法与螺栓体的力特性密切相关,所以在区分解的情况下,本文分析了不同时间在不同时间和不同螺栓体中的螺栓体的应力分布规则基于螺栓体与周围岩石之间的协调变形。建立了最大支撑压力下弹性界面岩体的非线性流变力学模型。它提出了关于区域崩解的机械标准和击穿力矩的理论计算公式。利用螺栓和周围岩石之间的相互作用的机械模型,沿着多个理论中性点讨论了锚子中性点的螺栓体的分布位置及其最大轴向力。此外,对每个裂缝区的位置和宽度分析分析。结果表明,周围岩石的弹性界面上的岩体在挖掘地下洞穴的挖掘后具有显着的蠕变效果。虽然岩石质量的最大偏差应力超过其长期强度,但岩体将沿径向方向裂缝并进入裂缝区。周围岩石应力的多次重新分布将产生裂缝区和完整区域的交替分布现象。同时,峰值的峰值的分布规律和围岩位移的间隔导致沿锚固长度方向的多个中性点。通过后分析的区间解体的计算结果可以反映深层地下洞穴中的区域崩解的实际时空演化定律。

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