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Fracture characterization and rock mass behavior induced by blasting and mechanical excavation of shafts in Horonobe Underground Research Laboratory

机译:Horonobe地下研究实验室爆破爆破和机械挖掘引起的骨折特征及岩体散裂

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In high-level radioactive disposal projects, it is important to investigate the extent of the excavation-damaged zone (EDZ) for safety assessment because EDZ can provide a migration pathway for radionuclides from the facility. To investigate the quantitative differences between EDZs formed because of blasting and mechanical excavation, we studied the characteristics of fractures induced by excavation based on fracture mapping performed during shaft sinking (V- and E-Shafts). As a result, it was found that blasting excavation can lead to the formation of a large number of newly created fractures (EDZ fractures) compared with mechanical excavation. In addition, the seismic velocity (P-wave velocity) measured during blasting excavation (E-Shaft) was lower than that measured during mechanical excavation (V-Shaft). Furthermore, we found that the support pattern that reinforces forward rocks to be appropriate for limiting damage to the shaft wall.
机译:在高级放射性处置项目中,重要的是要研究安全性评估的挖掘损坏区(EDZ)的程度,因为EDZ可以为来自设施提供放射性核素的迁移途径。为了研究由于爆破和机械开挖而形成的EDZ之间的定量差异,我们研究了基于轴下沉(V-和E轴)的断裂映射,通过挖掘裂缝引起的裂缝特性。结果,发现爆破挖掘能导致与机械开挖相比,形成大量新产生的骨折(EDZ骨折)。另外,在爆破挖掘(E轴)期间测量的地震速度(P波速度)低于机械挖掘(V轴)期间测量的地震速度(P波速度)。此外,我们发现支持岩石的支撑图案适当地限制轴壁的损坏。

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