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Correlating Multi-Phenomenology Measurements with Blast Design in a Copper Mine

机译:铜矿中多现象学测量与爆破设计的关联

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Blasting operations at one copper mine are studied in detail to examine the relation between blast design parameters and near-shot, in-mine, and regional seismic and acoustic observations. Five observational experiments, namely collection of blast design data, near source recordings, GPS synchronized video, near mine recordings and distant regional observations were performed during one week in August. A variety of seismic and infrasound instruments were installed near the shot, on the perimeter of the open pit mine, and at several locations up to 500 km distant. Time tagged video recordings were taken of several shots. Three shots were used in the preliminary analysis, a 350,000 lb pattern with long delays, a 60,000 lb pattern with short delays, and a 256,000 lb pattern with short delays. Maximum peak-to-peak amplitudes of the seismic signals in the mine are not a simple function of the total size of the shot, but are related to the pattern timing. Peak pressures have a less clear relation to peak pressure but match the relative amplitudes of spectra modeled from the pattern design. The predicted spectrum based upon a simple impulse model fits the observed spectrum for ground acceleration measured near the pattern and explains why in this case a pattern of 60,000 lb results in the same seismic disturbance as the 350,000 lb pattern.
机译:对一个铜矿的爆破作业进行了详细研究,以检查爆破设计参数与近爆,矿井以及区域地震和声学观测之间的关系。在八月的一个星期内,进行了五个观测实验,即爆炸设计数据的收集,近源记录,GPS同步视频,近地雷记录和远距离区域观测。在炮点附近,露天矿的周边以及最远500 km的几个位置安装了各种地震和次声仪器。带时间标签的视频录制了几张照片。在初步分析中使用了三发,延迟时间长的图案为350,000磅,延迟时间短的图案为60,000 lb,延迟时间为256,000 lb的图案。矿井中地震信号的最大峰峰值幅度并不是炮弹总大小的简单函数,而是与模式定时有关。峰值压力与峰值压力之间的关系不太清楚,但与通过图案设计建模的光谱的相对振幅相匹配。基于简单脉冲模型的预测频谱与在模式附近测得的地面加速度的观测频谱相符,并解释了为什么在这种情况下60,000 lb的模式会导致与350,000 lb模式相同的地震干扰。

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