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现代矿业 ›› 2026, Vol. 42 ›› Issue (07): 113-117.

• 采矿工程 • 上一篇    下一篇

基于WipFrag块度定量分析的高海拔露天矿爆破参数优化

佟晓勇1 谭 刚1 杨玉祥1 刘 强1 王 璐1 陈 辉2   

  1. 1. 新疆地质工程有限公司;2. 新疆大学地质与矿业工程学院
  • 出版日期:2026-07-25 发布日期:2026-08-03

Optimization of Blasting Parameters in High Altitude Open-pit Mine Based on WipFrag Block Quantitative Analysis

TONG Xiaoyong1 TAN Gang1 YANG Yuxiang1 LIU Qiang1 WANG Lu2 CHEN Hui2   

  1. 1. Xinjiang Geological Engineering Co., Ltd.;2. College of Geology and Mining Engineering, Xinjiang University
  • Online:2026-07-25 Published:2026-08-03

摘要: 爆破参数设计直接影响露天矿山爆破破碎质量与开采成本。针对高海拔露天矿爆破 能量耗散严重、能量分配不均、爆后大块率偏高、块度分布不均等问题,以新疆某露天矿深孔台阶爆 破工程为研究背景,开展爆破参数优化研究。初始采用矩形布孔方式,炮孔排距设置为 6.0 m× 4.0 m,基于爆破能量控制理论优化布孔形式与参数,改用梅花形交错布孔,调整炮孔排距为 5.0 m× 4.0 m。依托 WipFrag 软件对爆堆块度进行定量分析,系统对比优化前后的爆破破碎效果。试验结 果表明,原爆破方案爆堆均匀性较差,特征粒径 D50为 388.91 mm,粒径大于 464 mm 的大块占比 44.03%,最大块度可达 1 302.09 mm。参数优化后爆破效果提升显著,最优工况下大块率降至 2.84%,D50平均降低 192.11 mm,岩石平均球度小幅减小,块度破碎更加均匀,最大矿块尺寸缩减至 604.69 mm。该优化方案可有效改善爆破能量分布状态,提升爆破作业效率,减少二次破碎工作 量,降低矿山铲装、运输等后续工序生产成本,可为高海拔露天矿爆破参数设计提供工程参考。

关键词: 爆破参数, 块度分析, 大块率, WipFrag软件, 露天矿

Abstract: The design of blasting parameters directly affects the blasting crushing quality and mining cost of open-pit mines. Aiming at the problems of serious blasting energy dissipation, uneven energy distri⁃ bution, high block rate after blasting and uneven block distribution in high-altitude open-pit mines, the op⁃ timization of blasting parameters is studied based on the deep-hole bench blasting project of an open-pit mine in Xinjiang. Initially, the rectangular hole arrangement method was adopted, and the hole row spacing is set to 6.0 m×4.0 m. Based on the blasting energy control theory, the hole arrangement form and parame⁃ ters were optimized, and the plum-shaped staggered hole arrangement was used to adjust the hole row spac⁃ ing to 5.0 m ×4.0 m. Based on WipFrag software, the fragmentation of blasting pile is quantitatively ana⁃ lyzed, and the blasting crushing effect before and after optimization was systematically compared. The test results show that the uniformity of the original blasting scheme is poor, the characteristic particle size D50 is 388.91 mm, the proportion of large blocks with particle size greater than 464 mm is 44.03 %, and the maxi⁃ mum block size can reach 1 302.09 mm. After the optimization of the parameters, the blasting effect is sig⁃ nificantly improved. Under the optimal working conditions, the bulk rate is reduced to 2.84 %, the D50 is re⁃ duced by 192.11 mm on average, the average sphericity of the rock is slightly reduced, the fragmentation is more uniform, and the maximum ore block size is reduced to 604.69 mm. The optimization scheme can ef⁃fectively improve the distribution of blasting energy, improve the efficiency of blasting operation, reduce the workload of secondary crushing, reduce the production cost of subsequent processes such as shovel loading and transportation, and provide engineering reference for the design of blasting parameters in high-altitude open-pit mines.

Key words: blasting parameters, fragmentation analysis, block rate, WipFrag software, open-pit mine