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金属矿山 ›› 2020, Vol. 49 ›› Issue (09): 80-86.

• 采矿工程 • 上一篇    下一篇

某地下矿山顶板诱导崩落最佳爆破延时时间取值研究

蒋复量,郭锦涛,杨文超,张 超,张洪浩,马熠坤   

  1. 1. 南华大学资源环境与安全工程学院,湖南 衡阳 421001;2. 衡阳市工矿职业安全卫生技术重点实验室,湖南 衡阳 421001
  • 出版日期:2020-09-15 发布日期:2020-10-16
  • 基金资助:
    金属矿山安全与健康国家重点实验室开放基金项目(编号:2016-JSKSSYS-03);应急管理部安全生产重特大事故防治关键技术科技项目(编号:hunan-0003-2018AQ);南华大学大学生研究性学习和创 新性实验计划项目(编号:2018XJXZ078,2018XJXZ089)。

Study on the Determination of Optimal Blasting Delay Time of Inducement Dilapidation of the Roof in an Underground Mine

JIANG Fuliang,GUO Jintao,YANG Wenchao,ZHANG Chao,ZHANG Honghao,MA Yikun   

  1. 1. School of Resource & Environment and Safety Engineering,University of South China,Hengyang 421001,China;2. Hengyang City Key Laboratory of Occupational Safety and Technology, Hengyang 421001,China
  • Online:2020-09-15 Published:2020-10-16

摘要: 采空区顶板诱导崩落爆破延时时间的合理选取可以有效提高诱导崩落效果。为了确定采空区毫秒延时爆破的最优延时时间,在分析了诱导崩落的技术原理之后,以延时时间为切入点,结合某地下矿山实际 情况,建立了诱导崩落爆破数值模型,运用LS-DYNA有限元分析软件模拟了延时时间分别为20、35、50 ms下的爆炸过程,得到爆炸过程的应力云图以及各观测点有效应力随时间的变化曲线。模拟结果显示:顶板中心 部分的最小有效应力最大值受爆破延时时间影响,其中顶板两端最大有效应力最低时对应的延时时间均为35 ms。当以最大有效应力值与矿岩抗压强度的接近程度为评判依据时,分析得出预裂爆破与崩顶爆破之间的爆 破延时时间取20 ms时诱导效果最好。通过对比分析各观测点的有效应力变化情况并结合上述分析,确定延时时间为20 ms时诱导崩落效果最优。研究结果可为采用诱导冒落法开采的矿山爆破参数优化提供参考。

关键词: 地下开采, 诱导崩落, 有效应力, 抗压强度, 延时时间, 数值模拟

Abstract: Reasonable selection of the delay time of induced caving blasting in the goaf roof can effectively improve the effect of induced caving. In order to determine the optimal delay time of millisecond delay blasting in goaf, after analyzing the technical principle of induced caving, using the delay time as the starting point, combined with the actual situation of an underground mine, a numerical simulation model of induced caving blasting was established. Using the LS-DYNA finite element analysis software to simulate the explosion process with delay time of 20 ms, 35 ms and 50 ms respectively, the stress cloud diagram of the explosion process and the curve of the effective stress of each observation point with time are obtained. The simulation results show that the minimum stress and maximum value of the central part of the roof is affected by the blasting delay time, and the corresponding delay time was 35 ms when the maximum effective stress at both ends of the roof was the lowest. When judging by the proximity between the maximum effective stress and the compressive strength of ore and rock, it was concluded that the induction effect is the best when the delay blasting time between presplitting blasting and roof caving blasting was 20 ms.By comparing and analyzing the change of effective stress at each observation point, it is determined that the effect of induced caving is the best when the delay time is 20 ms. The study results can provide a reference for the optimization of blasting parameters in mines by adopting induced caving method.

Key words: underground mining, inducement dilapidation, effective stress, compressive strength, delay time, numerical simulation