Blast Design for Underground Mining: Technical Optimization, Safety, and Impact Control
DOI:
https://doi.org/10.18687/LACCEI2026.1.1.1792Keywords:
underground blasting, burn cut, electronic detonators, fragmentation, mining efficiency.Abstract
This study evaluates three underground blasting designs V-cut, Burn cut, and Parallel cut applied to fractured andesite, compact limestone, and hard granodiorite, aiming to determine the most efficient and safe blasting pattern. The research combined geomechanical characterization, 3D simulation using JKSimBlast, and field tests with vibration and gas monitoring. Results show that the Burn cut, combined with Electronic Detonators (EED), achieved the best performance: average fragmentation D80 ≈ 18 cm, 30% reduction in overbreak, vibrations <9 mm/s, and advance ≈ 3.0 m per blast, maintaining optimal energy consumption. Ventilation time was also reduced by 37% due to lower gas emissions. The study concludes that the integration of digital modeling, geometric optimization, and electronic timing significantly improves efficiency, safety, and environmental control in underground blasting operations.Downloads
Published
2026-07-27
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Copyright (c) 2026 LACCEI
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How to Cite
Luque Luque, E. O., & Guevara Vásquez, K. V. (2026). Blast Design for Underground Mining: Technical Optimization, Safety, and Impact Control. LACCEI, 1(14). https://doi.org/10.18687/LACCEI2026.1.1.1792