岩石爆破基础理论研究进展与展望Ⅳ—损伤评价

Advancements and future prospects in the fundamental theories of rock blasting research Ⅳ — Damage evaluation

  • 摘要: 巷道爆破成型的关键在周边,周边爆破的效果决定了爆破成型质量与围岩损伤程度。本文基于分形理论,建立了爆破损伤“宏观-细观-微观”与“点-线-面-体”的“三观四维”综合评价体系。“三观”评价体系以损伤的几何尺度为划分依据,宏观维度(几何尺度> 10-3 m):岩石破碎块度;细观维度(几何尺度:10-6 ~ 10-3 m):裂隙扩展范围;微观维度(几何尺度< 10-6 m):微观断口形貌。“四维”评价体系以损伤的空间分布为划分依据,点:围岩某点位取心CT扫描;线:围岩内部钻孔窥视;面:爆破表面成型质量;体:围岩跨孔声波测试。应用“三观四维”评价体系可精准获取围岩的爆破损伤程度与范围,对爆破损伤机理的揭示与损伤的精细控制有重要的指导意义。

     

    Abstract: The critical aspect of roadway blasting contour is perimeter blasting. The effectiveness of perimeter blasting has a significant impact on both the quality of the blasting contour and the extent of damage to the surrounding rock. Drawing upon fractal theory, a comprehensive evaluation system encompassing "macroscopic - mesoscopic - microscopic" and "point - line - surface - cube" dimensions has been established. The "three scales" evaluation system is founded on the geometric scale of damage. The macroscopic scale (geometric scale > 10-3 m) assesses the degree of rock fragmentation; the mesoscopic scale (geometric scale: 10-6 ~ 10-3 m) evaluates crack propagation range; and the microscopic scale (geometric scale < 10-6 m) examines microscopic fracture morphology. The "four dimensions" evaluation system is based on the spatial distribution of damage. Point refers to CT scanning conducted on a rock core, line pertains to borehole imaging inside surrounding rock, surface relates to blasting contour quality, and cube involves cross-hole acoustic wave testing within surrounding rock. The implementation of the " three scales and four dimensions" evaluation system enables an accurate assessment of both the degree and extent of blasting damage. This approach holds significant guiding importance for elucidating the mechanisms underlying blasting damage and for achieving precise control over such damage.

     

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