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Prediction of blast-induced flyrock using differential evolution algorithm

机译:差分演化算法预测爆炸诱发的飞石

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Flyrock is an undesirable phenomenon in blasting operations. Due to high potential to cause damage to machinery and nearby structures and to cause injuries, even fatal, to personnel, flyrock is the most dangerous adverse effect of blasting. For controlling and decreasing the effect of this phenomenon, it is necessary to predict it. Because of multiplicity of effective parameters and complexity of interactions among these parameters, empirical methods may not be fully appropriate for flyrock estimation. The scope of this study is to predict flyrock induced by blasting through a novel approach based on the combination of differential evaluation algorithm (DE) and dimensional analysis algorithm (DA). For this purpose, the parameters of 300 blasting operations were accurately recorded and flyrock distances were measured for each operation. In the next stage, two new empirical predictors were developed to predict flyrock distance. The results clearly showed the superiority of the proposed DE-DA model in comparison with the empirical approaches.
机译:飞石是爆破作业中不希望的现象。由于极有可能对机械和附近结构造成损坏,并对人员造成伤害甚至致命,飞石是爆破最危险的不利影响。为了控制和减少这种现象的影响,有必要对其进行预测。由于有效参数的多样性以及这些参数之间相互作用的复杂性,经验方法可能不适用于飞石估算。本研究的范围是通过基于差分评估算法(DE)和尺寸分析算法(DA)的一种新颖方法来预测爆破引起的飞石。为此,精确记录了300次喷砂操作的参数,并测量了每次操作的飞石距离。在下一阶段,开发了两个新的经验预测器来预测飞石距离。结果清楚地表明,与经验方法相比,所提出的DE-DA模型具有优越性。

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