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Numerical Study of Anisotropic Weakening Mechanism and Degree of Non-Persistent Open Joint Set on Rock Strength with Particle Flow Code

机译:岩石强度各向异性弱化机理和非永久性开缝集强度的颗粒流数值研究。

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The strength of a rock cut by non-persistent open joint set is controlled by complex interactions of the joint network and intact rock bridges. An extensive series of uniaxial numerical tests of the particle models are carried out under different joint fabrics and rock compression-tension strength ratios. The test results show joint dip angle is the main factor controlling the overall anisotropic strength characteristics. With joint dip angle increasing, the main failure modes successively appear as splitting failure, block rotation failure, step-path failure, planar failure, and splitting failure. Accordingly, the strength generally shows a trend of decreasing first and then increasing, and the joint dip angle corresponding to the minimum strength is biased towards 0 degrees, usually at 15 degrees-30 degrees. The damage of rock bridges is mainly controlled by tensile failure, except in planar failure mode. Joint spacing has an impact on the local anisotropic strength characteristics. The joint spacing and persistence ratio jointly control the degree of penetration difficulty of the rock bridges. The compression-tension strength ratio of intact rock uniformly affects the absolute magnitude of the jointed rock strength and does not affect its anisotropic characteristics. Based on the weakening mechanism, an empirical strength formula is established to realize the practical equivalent characterization of the anisotropic weakening degrees of the non-persistent open joint set on the rock strength.
机译:通过非持久性开放节理集切割的岩石的强度由节理网络和完整的岩石桥梁之间的复杂相互作用控制。在不同的节理结构和岩石抗压强度比下,对颗粒模型进行了一系列的单轴数值试验。试验结果表明,接头倾角是控制整体各向异性强度特性的主要因素。随着关节倾角的增加,主要破坏模式依次为分裂破坏,块体旋转破坏,阶跃路径破坏,平面破坏和分裂破坏。因此,强度通常表现出先减小然后增加的趋势,并且对应于最小强度的接头倾角被偏向0度,通常为15度至30度。除了平面破坏模式外,岩石桥梁的损坏主要由拉伸破坏控制。节距对局部各向异性强度特性有影响。节理间距和持续率共同控制了岩石桥梁的穿透难度。完整岩石的抗压强度比均匀地影响节理岩石强度的绝对大小,并且不影响其各向异性特性。基于弱化机理,建立了经验强度公式,以实现对岩石强度非持久性开放节理各向异性弱化程度的实际等效表征。

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