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The effect of discontinuity frequency on ground vibrations produced from bench blasting: A case study

机译:不连续频率对台式爆破产生的地面振动的影响:一个案例研究

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A good number of empirical formulae and methods dealing with the analysis of the effects of blast-induced ground vibrations have been developed. The most common approach suggested for estimating the attenuation of particle velocity on the ground is to scale the distance (scaled distance, SD). This approach makes it possible to estimate the peak particle velocity when the amount of explosive charge or the distance or both are altered.Many parameters known to have an influence on particle velocity have been used for particle velocity prediction equations. Some of these parameters are maximum charge per delay, the distance between the station and shot location, burden, inelastic attenuation factor and site factors. However, the impacts of the discontinuities existing on the benches where blasts are detonated on the propagation velocity of seismic waves have not been taken into consideration in these equations.This study aims to examine the impacts of the discontinuity frequency parameter derived through geological measurements carried out on the blasting benches or nearby in a quarry mine (Supren, Eskisehir) in Turkey on the propagation of blast-induced ground vibrations. Developed based on the geological observations carried out on the benches, the model was formed by adding discontinuity frequency parameter to the particle velocity prediction model suggested by Nicholls et al. [Nicholls HR, Johnson CF, Duvall WI. Blasting vibrations and their effects on structures. Bulletin no. 656. Washington, DC: US Bureau of Mines; 1971]. In order to research the effect of the discontinuity frequency in the bench on the blast-induced ground vibrations, the relationship between the recorded peak particle velocity, scaled distance and discontinuity frequency was statistically evaluated for the site. The established relationship and the results of the study are presented.
机译:已经开发出许多用于分析爆炸引起的地面振动影响的经验公式和方法。建议用来估计地面上粒子速度衰减的最常见方法是缩放距离(缩放距离,SD)。当炸药装药量或距离或两者都改变​​时,这种方法可以估计峰值粒子速度。已知许多对粒子速度有影响的参数已用于粒子速度预测方程。这些参数中的一些参数是每次延迟的最大电荷,测站与射击位置之间的距离,负担,非弹性衰减因子和测站点因子。但是,这些方程式并未考虑爆破爆炸台上存在的不连续性对地震波传播速度的影响,旨在研究通过地质测量得出的不连续性频率参数的影响。在爆炸台上或附近在土耳其的一个采石场(埃斯基谢希尔的一个露天矿),了解爆炸引起的地面振动的传播。该模型是根据在工作台上进行的地质观测而开发的,是通过将不连续性频率参数添加到Nicholls等人提出的粒子速度预测模型中而形成的。 [Nicholls HR,Johnson CF,Duvall WI。爆破振动及其对结构的影响。公告号656.华盛顿特区:美国矿务局; 1971]。为了研究工作台中不连续频率对爆炸引起的地面振动的影响,对该位置的记录峰值粒子速度,标定距离和不连续频率之间的关系进行了统计评估。介绍了已建立的关系和研究结果。

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