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Rock burst of deep circular tunnels surrounded by weakened rock mass with cracks

机译:深圆形隧道的岩爆,周围是弱化的岩体,带有裂缝

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摘要

Rock masses containing pre-existing cracks are considered as non-homogeneous geomaterials. During excavation of tunnels, pre-existing cracks may nucleate, grow and propagate through rock matrix, then secondary cracks may appear. The stress concentration at the tips of secondary cracks is comparatively large, which may lead to the unstable growth and coalescence of secondary cracks, and consequently the occurrence of fractured zones. For brittle rocks, the dissipative energy of slip and growth of pre-existing cracks and secondary crack growth is small, but the elastic strain energy storing in rock masses may be larger than the dissipative energy of slip and growth of pre-existing macrocracks and secondary crack growth. The sudden release of the residual elastic strain energy may lead to rock burst in crack-weakened rock masses. Based on this understanding, the criteria of rock burst in crack-weakened rock masses are established. The influences of the in situ stresses, micromechanical parameters and physico-mechanical parameters on the distribution of rock burst zones and area of rock burst zones are investigated in detail.
机译:包含预先存在的裂缝的岩体被认为是非均质的岩土材料。在隧道开挖过程中,先前存在的裂缝可能会形核,生长并通过岩石基体传播,然后可能会出现次要裂缝。次要裂纹尖端处的应力集中比较大,可能导致次要裂纹的不稳定生长和聚结,从而导致断裂区域的出现。对于脆性岩石,滑移和既有裂纹的增长以及次生裂纹的扩展耗能较小,但在岩体中存储的弹性应变能可能大于滑移和大裂纹和次生裂纹的耗散能。裂纹增长。残余弹性应变能的突然释放可能会导致裂弱的岩体中发生岩石破裂。在此基础上,建立了裂缝弱化岩体中岩爆的判据。详细研究了地应力,微机械参数和物理力学参数对岩爆区分布和岩爆区面积的影响。

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