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A Comparative Study of Ground and Underground Vibrations Induced by Bench Blasting

机译:台沟爆破诱导地下振动的比较研究

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摘要

Ground vibrations originating from bench blasting may cause damage to slopes, structures, and underground workings in close proximity to an operating open-pit mine. It is important to monitor and predict ground vibration levels induced by blasting and to take measures to reduce their hazardous effects. The aims of this paper are to determine the weaker protection objects by comparatively studying bench blasting induced vibrations obtained at surface and in an underground tunnel in an open-pit mine and thus to seek vibration control methods to protect engineering objects at the site. Vibrations arising from measurement devices at surface and in an underground tunnel at the Zijinshan Open-Pit Mine were obtained. Comparative analysis of the peak particle velocities shows that, in the greatest majority of cases, surface values are higher than underground values for the same vibration distance. The transmission laws of surface and underground vibrations were established depending on the type of rock mass, the explosive charge, and the distance. Compared with the Chinese Safety Regulations for Blasting (GB6722-2014), the bench blasting induced vibrations would not currently cause damage to the underground tunnel. According to the maximum allowable peak particle velocities for different objects, the permitted maximum charges per delay are obtained to reduce damage to these objects at different distances.
机译:源自台杆爆破的地面振动可能会损坏斜坡,结构和地下工作,靠近运行的露天矿井。重要的是要监测和预测通过爆破引起的地面振动水平,并采取措施降低其危险效果。本文的目的是通过比较研究在露天矿井的地面和地下隧道中获得的台式喷射诱导振动来确定较弱的保护物体,从而寻求振动控制方法以保护现场的工程物体。获得了从Zijinshan露天矿井的地面和地下隧道中由测量装置产生的振动。对峰值粒子速度的比较分析表明,在最大的大部分情况下,表面值高于相同振动距离的地下值。根据岩石质量,爆炸性电荷和距离的类型建立了表面和地下振动的传动规律。与中国爆破的安全规定相比(GB6722-2014),台式爆破诱导的振动目前不会对地下隧道造成损坏。根据不同物体的最大允许峰值粒子速度,获得每个延迟的允许的最大电荷以在不同的距离下减少对这些物体的损坏。

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