首页> 外文会议>Annual Conference on Explosives and Blasting Technique vol.2; 20050206-09; Orlando,FL(US) >The Effects of the Topographic Bench on Ground Motion from Mining Explosions
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The Effects of the Topographic Bench on Ground Motion from Mining Explosions

机译:采矿爆炸对地形运动的影响

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Understanding the effects of the bench on ground motion can improve the design of cast blasts and achieve improved blast efficiency while remaining below vibration requirements. A new dataset recorded in September 2003 from a coal mine in Arizona has allowed us to examine the excitation of short-period Rayleigh-type surface waves from four simultaneously-detonated explosions in and below a topographic bench of a mine. The explosions were recorded on a network of over 150 seismic sensors, providing an extensive understanding of the ground motion radiation patterns from these explosions. We detonated two separate explosions (~3 tons and ~1.5 tons ANFO) in the deepest pit of the mine, thus the explosions were shot to solid rock. Within 25 meters of these two explosions, we detonated two additional explosions of similar explosive yields in a bench, thus these explosions were shot to the free face. Radiation patterns and spectral ratios from the explosions show increased amplitudes (by a factor of 1.5 to 2) at azimuths behind the bench relative to the amplitudes in front of the bench. We compared these findings to seismic observations from two ~1.5 million pound cast blasts at the same mine and found similar radiation patterns. Modeling of these blasts shows that the variations in ground motion are caused by the topographic bench as a result of 1) horizontal spalling of the rock falling into the pit and 2) non-linear scattering near the free-face. We also note that shooting to a buffer (previously blasted rock) causes the azimuthal variations to be significantly reduced.
机译:了解工作台对地面运动的影响可以改善抛丸的设计,提高抛丸效率,同时保持振动要求以下。 2003年9月从亚利桑那州一个煤矿记录的新数据集,使我们能够检查矿山地形台地中和下方四次同时爆炸的爆炸的短周期瑞利型表面波的激发。爆炸记录在由150多个地震传感器组成的网络中,可让您深入了解这些爆炸引起的地震动辐射方向图。我们在矿山最深的矿井中引爆了两次单独的爆炸(〜3吨和〜1.5吨ANFO),因此爆炸被击中了坚硬的岩石。在这两次爆炸的25米之内,我们又在长凳上引爆了另外两次爆炸,爆炸的产量相似,因此这些爆炸被击中了自由面。爆炸的辐射图和光谱比显示出,相对于工作台前的振幅,工作台后方的方位角振幅增加了1.5到2倍。我们将这些发现与来自同一矿山的两次〜150万磅铸造爆炸的地震观测结果进行了比较,发现了相似的辐射方向图。对这些爆炸的建模表明,地面运动的变化是由地形台架引起的,这是由于1)落入坑中的岩石水平剥落和2)自由面附近的非线性散射所致。我们还注意到,向缓冲区(以前是爆破的岩石)射击会大大降低方位角变化。

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