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首页> 外文期刊>Journal of Mines, Metals & Fuels >Propagation mechanism of water-bearing cracks in deep rock mass under blasting disturbance
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Propagation mechanism of water-bearing cracks in deep rock mass under blasting disturbance

机译:爆破干扰下深层岩石质量下耐水裂缝的传播机理

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摘要

Based on the principle of fracture mechanics, this paper studies the mechanical model of water-bearing crack development in deep rock mass under blasting disturbance, and derives the expression of the dynamic and static coupling strength of the rock mass. In the meantime, the crack initiation and propagation of tensile shear and compressive shear cracks were investigated to disclose the effect of blasting disturbance, water pressure, geostress and crack angle on crack propagation, and to obtain the formula of crack propagation length. The formula was implemented in a case study. The results show that, in tensile-shear fracture, the geostress accelerates the crack propagation in the same direction; in compressive-shear fracture, the crack inclination angle of the position most vulnerable to compressive-shear fracture varies with the internal friction angle of the rock mass; the blast disturbance load, in a certain sense, elevates the water pressure in the cracks; the crack propagation length decreases in a near linear pattern with the increase in the distance from the explosion source.
机译:基于骨折力学原理,本文研究了爆破干扰下深层岩体耐水裂纹发育的机械模型,源于岩体的动态和静态耦合强度的表达。同时,研究了拉伸剪切和压缩剪切裂缝的裂纹启动和传播,公开了爆破干扰,水压,根瘤和裂缝角对裂纹传播的影响,并获得裂纹传播长度的公式。该公式在案例研究中实施。结果表明,在拉伸剪切裂缝中,地磁素在相同方向上加速了裂缝传播;在压缩剪切断裂中,最容易受压剪切骨折的位置的裂纹倾斜角随岩体的内部摩擦角而变化;在某种意义上,爆炸扰动负荷升高了裂缝中的水压;裂缝传播长度以近线性模式降低,随着爆炸源的距离增加。

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