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Numerical simulation of fracture characteristics of jointed rock masses under blasting load

机译:爆破作用下节理岩体破裂特性的数值模拟

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Purpose To study fracture characteristics of jointed rock masses under blasting load, the RFPA2D analysis software for dynamic fracture of rocks based on the finite element method and statistical damage theory was used. Design/methodology/approach On this basis, this research simulated the fracture process of rock masses in blasting with different joint geometrical characteristics and mainly analysed the influences of distance from joints to blasting holes, the length of joints, the number of joints and joint angle on fracture of rock masses. Findings The calculation results show that with the constant increase of the distance from joints to blasting holes, the influences of joints on blasting effects of rock masses gradually reduced. Rock masses with long joints experienced more serious damages than those with short joints. Damages obviously increased with the changing from rock masses without joints to rock masses with joints, and when there were three joints, the further increase of the number of joints had unobvious changes on blasting effects of rock masses. Joints showed significant guidance effect on the propagation of cracks in blasting: promoting propagation of main vertical cracks deflecting to the ends of joints. Originality/value The research results are expected to provide some theoretical bases in practical application of engineering blasting.
机译:目的研究爆破荷载作用下节理岩体的断裂特性,采用基于有限元法和统计损伤理论的RFPA2D岩石动态断裂分析软件。设计/方法/方法在此基础上,模拟了具有不同节理几何特征的爆破过程中岩体的破裂过程,主要分析了节距到爆破孔的距离,节距的长度,节距的数量和节角的影响。在岩体破裂上。研究结果表明,随着节理到爆破孔距离的不断增加,节理对岩体爆破效果的影响逐渐减小。长节理的岩体比短节理的岩体遭受更大的破坏。随着无节理岩体到有节理岩体的变化,破坏明显增加,当节理数为三个时,节理数的进一步增加对岩体的爆破效果没有明显的影响。接头对爆破中的裂纹扩展具有显着的引导作用:促进偏转到接头末端的主要垂直裂纹的扩展。独创性/价值该研究成果有望为工程爆破的实际应用提供一些理论基础。

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