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An equivalent method for blasting vibration simulation

机译:爆破振动模拟的等效方法

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摘要

Due to the complicated blasting load, the diversified medium models and various constitutive relations of the rock mass, and a huge job for simulating blasting of multiple holes, it is very difficult and costly to simulate the blasting vibration accurately in numerical computation. This paper presents an equivalent simulation method so as to transform this complex dynamic problem into an approximate initial-boundary problem. The equivalent elastic boundary applied by the blasting load was developed for multiple holes according to the spatial distribution of rock damage around each blasthole. The equivalent mechanics process of the complex blasting load was performed through analysis of the expansion of the borehole volume, the growth of cracks, the movement of stemming and the outburst of detonation gases. In combination with the blasting excavation of the tailrace tunnel in the Pubugou Hydropower Station, particle vibration velocities in the surrounding rock at different distances from the explosion source were simulated by applying this equivalent method based on the dynamic finite element method. The comparison with field monitoring data indicates that this equivalent simulation method is applicable to predicting the far-field dynamic response of the ground subjected to blasting load, and the selection of rock mass properties near the equivalent elastic boundary has a significant impact on simulation results.
机译:由于复杂的爆破载荷,岩体的多种介质模型和各种本构关系以及模拟多个孔爆破的繁重工作,在数值计算中准确地模拟爆破振动是非常困难且昂贵的。本文提出了一种等效的仿真方法,可以将这个复杂的动态问题转化为一个近似的初始边界问题。根据每个爆破孔周围岩石破坏的空间分布,针对多个钻孔开发了由爆破载荷施加的等效弹性边界。通过分析钻孔体积的扩大,裂缝的增长,钻杆的运动和爆炸气体的爆发来进行复杂爆破载荷的等效力学过程。结合瀑布沟水电站尾水隧洞的爆破开挖,采用基于动态有限元的等效方法,模拟了距爆炸源不同距离的围岩中的颗粒振动速度。与现场监测数据的比较表明,该等效模拟方法适用于预测爆破荷载作用下地面的远场动力响应,等效弹性边界附近岩体性质的选择对模拟结果有重要影响。

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