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Dynamic Response of Intermittent Jointed Rock Mass Subjected to Blast Waves

机译:爆炸波作用下间歇节理岩体的动力响应

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The propagation of blast waves in intermittent jointed rock masses will result in a complex interaction between propagating waves and rock joints. Such being the case, the analysis of dynamic response of rock masses is important to rock engineering design and stability prediction. In this paper, the fracture process of intermittent jointed rock mass subjected to blast waves and initial static field, including wing crack initiation, propagation and arrest, is analyzed using linear superposition principle and sliding crack model. Crack initiation conditions and propagation lengths under incident P-waves is put forward, and the kinking effect of propagating wing cracks subjected to S-wave is also discussed. Additional, it is demonstrated that crack arrest is controlled by static field. In order to validate the correctness of dynamic response analysis, experimental investigations were performed using lucite specimens, and the experimental results show good agreement with the analytical results.
机译:爆炸波在间歇节理岩体中的传播将导致传播波与节理之间的复杂相互作用。在这种情况下,对岩体动力响应的分析对于岩石工程设计和稳定性预测非常重要。本文采用线性叠加原理和滑移裂纹模型,分析了爆炸冲击波和初始静场作用下的节理节理岩体的破裂过程,包括机翼裂纹的产生,扩展和滞留。提出了入射P波下的裂纹萌生条件和传播长度,并讨论了在S波作用下传播的机翼裂纹的扭结效应。另外,证明了裂纹的阻止是由静电场控制的。为了验证动态响应分析的正确性,使用萤石样品进行了实验研究,实验结果与分析结果吻合良好。

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