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Numerical simulation of rock mass blasting using particle flow code and particle expansion loading algorithm

机译:粒子流量代码和粒子膨胀加载算法岩体爆破数值模拟

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摘要

Numerical simulation of limestone rock mass blasting was carried out using the two-dimensional particle flow code (PFC2D) within the discrete element modeling framework, and the explosion load was loaded using the particle expansion algorithm. A field experiment of rock blasting was also carried out from which the size of the blasting funnel and the maximum blasting vibration velocity were recorded. The simulation results were compared with the experimental results in two aspects: the blasting result and the post-explosion effect. From the comparison, it has been observed that the size of the blasting funnel obtained from the numerical simulation shows a good agreement with the field experiment. However, in the case of the post-explosion effect (the blasting vibration velocity), the results of the numerical simulation and the vibration velocity curve obtained from the field test show disagreement to a certain extent. This demonstrates that the particle expansion loading algorithm is reliable in simulating the rock blasting process. The results of this research serve as a reference for subsequent applications of the PFC method in the field of rock blasting.
机译:利用离散元素建模框架内的二维颗粒流量代码(PFC2D)进行了石灰岩岩体爆破的数值模拟,并使用粒子扩展算法加载爆炸载荷。还记录了岩石爆破的田间试验,从中记录了喷砂漏斗的尺寸和最大爆破振动速度。将仿真结果与实验结果进行了比较了两个方面:爆破结果和爆炸后效应。从比较中,已经观察到从数值模拟中获得的爆破漏斗的尺寸显示出与现场实验的良好一致性。然而,在爆炸后效果(爆破振动速度)的情况下,数值模拟的结果和从现场测试中获得的振动速度曲线在一定程度上显示出不同程度的分歧。这表明粒子膨胀负载算法在模拟岩石爆破过程时是可靠的。该研究的结果是作为PFC方法在岩石爆破领域的后续应用的参考。

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