Rate-dependent constitutive modelling blasting crack initiation and propagation in rock masses

IF 6.9 1区 工程技术 Q2 ENERGY & FUELS
Yongjun Zhang, Meng Xu, Sijia Liu, Fei Liu, Qingsong Wang
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引用次数: 0

Abstract

This study examines the fracture mechanism of cracks and the final blasting effects on defective rock masses under blasting loads. The failure processes of jointed rock with two prefabricated joints are investigated through numerical simulations using a two-dimensional finite element method. Subsequently, simulations are performed to analyze the blasting of granite specimens with various joint arrangements, focusing on the influence of front joint length, inclination angle, and blast hole distance on failure patterns, displacement, velocity, and stress at the joint ends. The numerical results provide a comprehensive summary of various typical failure modes near blast holes and joints for the first time. Specifically, the simulation successfully captures the characteristics of the ring crack zone, wing cracks, and main crack deflection affected by the front joint. Moreover, the results highlight the shielding effect of the front joint, which enhances damage in the medium between the borehole and the joint while exhibiting the opposite effect behind the joint in terms of stress wave propagation. Overall, this study offers objective insights into the mechanics and failure characteristics of jointed rock masses under blasting loads and serves as a valuable reference for the design and optimization of blasting operations.

Abstract Image

岩体中速率相关的本构模型爆破裂纹起裂与扩展
本文研究了裂纹在爆破荷载作用下的断裂机理和对缺陷岩体的最终爆破效果。采用二维有限元数值模拟方法,研究了含两个预制节理的节理岩体的破坏过程。随后,对不同节理布置的花岗岩试样爆破进行了模拟分析,重点研究了前节理长度、倾角和爆孔距离对节理末端破坏形态、位移、速度和应力的影响。数值结果首次全面总结了爆破孔和接头附近的各种典型破坏模式。具体而言,模拟成功地捕捉了受前接头影响的环形裂纹区、机翼裂纹和主裂纹挠度的特征。此外,研究结果还突出了节理前的屏蔽作用,增强了孔与节理之间介质的损伤,而节理后的应力波传播则相反。总体而言,本研究客观地揭示了节理岩体在爆破荷载作用下的力学和破坏特征,为爆破作业的设计和优化提供了有价值的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
11.40
自引率
8.40%
发文量
678
审稿时长
12 weeks
期刊介绍: The International Journal of Coal Science & Technology is a peer-reviewed open access journal that focuses on key topics of coal scientific research and mining development. It serves as a forum for scientists to present research findings and discuss challenging issues in the field. The journal covers a range of topics including coal geology, geochemistry, geophysics, mineralogy, and petrology. It also covers coal mining theory, technology, and engineering, as well as coal processing, utilization, and conversion. Additionally, the journal explores coal mining environment and reclamation, along with related aspects. The International Journal of Coal Science & Technology is published with China Coal Society, who also cover the publication costs. This means that authors do not need to pay an article-processing charge.
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