基于岩体质量分区的爆破网络优化研究与应用

    Optimization and application of blasting networks based on rock mass classification zoning

    • 摘要: 针对某高原矿山局部区域出现的岩体非均质特性导致的爆破能量损耗、大块率及粉状率较高的问题,基于基本岩体力学参数进行爆破区域划分及网络优化。以矿山NW2采区为例将其分为三个爆破区域,分别为硬岩区(Zone I)、中硬岩区(Zone II)和软岩区(Zone III),并结合理论分析证实其合理性。基于各区域特征,设计差异化“之”字形起爆网络:Zone I采用短延时强化应力波叠加效应;Zone II取消排间延时,以42 ms孔间延时实现爆破漏斗扩增与后冲控制;Zone III采用长延时降低应变率以保护围岩。现场实践证明,优化后方案使爆破块度分布趋近正态分布,大块率与粉矿率显著降低,为矿山其他区域精细化爆破提供了理论支持与技术支撑。

       

      Abstract: To address the issues of blasting energy loss, high boulder rate, and high fine powder rate caused by the heterogeneous characteristics of rock mass in local areas of a plateau mine, blasting area division and network optimization are conducted based on basic rock mass mechanical parameters. Taking the NW2 mining area of the mine as an example, it is divided into three blasting zones, namely: Hard Rock Zone (Zone I), Medium-Hard Rock Zone (Zone II), and Soft Rock Zone (Zone III). The rationality of this division is verified through theoretical analysis. Based on the characteristics of each zone, a differentiated “zigzag” initiation network is designed: for Zone I, a short delay is adopted to enhance the stress wave superposition effect; for Zone II, the inter-row delay is eliminated, and an inter-hole delay of 42 ms is used to achieve blasting crater expansion and backbreak control; for Zone III, a long delay is applied to reduce the strain rate and protect the surrounding rock mass. Field practice has shown that the optimized scheme makes the blasting fragment size distribution approach a normal distribution, and the boulder rate and fine powder rate are significantly reduced. This provides theoretical and technical support for the refined blasting in other areas of the mine.

       

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