首页> 外文会议>1st World Conference on Explosives amp; Blasting Technique, 1st, Sep 6-8, 2000, Munich/Germany >Estimation particle velocity on the basis of blast event measurements for an infrastructure excavation located nearby Istanbul
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Estimation particle velocity on the basis of blast event measurements for an infrastructure excavation located nearby Istanbul

机译:基于爆炸事件测量的伊斯坦布尔附近基础设施开挖的粒子速度估计

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The ground motion produced by detonation of an explosive charge is of a great importance regarding to vibration control and prevention of damages of nearby either above ground or buried structures. Therefore environmental problems arisen from ground vibration and air blast have been faced and discussed frequently in various industries such as mining, construction, quarry etc. where blasting is an unavoidable operation. Peak particle velocity together with frequency is still an important and useful predictor for design of cautious blasting in order to minimize the environmental issues. This paper presents the result of ground vibration measurements induced by bench blasting carried out at the excavation activity for construction of an organised industrial region (TOSB) located nearby Istanbul. Within the scope of this study, in order to predict peak particle velocity level for this site that granite encountered as major rock unit, bench blasting operations were carried out and ground vibration components were measured for all blasting events, during bench blast optimisation studies over a long period. At the end of a statistical analysis of 149 data sets, an empirical relationship between peak particle velocity and scaled distance, which gives the 50% line and the upper bound 95% prediction limit, was established with reasonable correlation and suggested to evaluate the vibration impact both past and future blasting for this site.
机译:由炸药爆炸引起的地面运动对于控制振动和防止在地面以上或埋在地下的建筑物附近的损害非常重要。因此,在采矿,建筑,采石场等各个行业中,由于爆破是不可避免的操作,因此,地面振动和鼓风引起的环境问题已经得到了面对和讨论。峰值速度与频率仍然是谨慎爆破设计的重要且有用的预测指标,以最大程度地减少环境问题。本文介绍了在基建于伊斯坦布尔附近的有组织工业区(TOSB)的开挖活动中,由台阶爆破引起的地面振动测量结果。在这项研究的范围内,为了预测花岗岩作为主要岩石单元遇到的该地点的峰值粒子速度水平,在整个台架爆炸优化研究期间,进行了台架爆破操作并测量了所有爆破事件的地面振动分量。长时间。在对149个数据集的统计分析结束时,建立了峰值粒子速度与缩放距离之间的经验关系,该关系给出了50%的线和95%的预测上限,并具有合理的相关性,并建议评估振动影响该站点的过去和未来爆破。

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