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Numerical simulation of the morphological effect of rock joints in the processes of concentrating elastic strain energy: a direct shear study

机译:弹性应变能量岩体过程中岩关节形态学效应的数值模拟:直接剪切研究

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摘要

Rockburst in coalmines is the result of the release of the elastic strain energy (ESE) stored in rock and coal masses. The examination of the elastic strain energy (ESE) along rock joint is important to evaluate the shear strength of rock masses. The morphology of joints and the strength of rock masses are considered as the key factors influencing the distribution of the ESE. In this study, a three-dimensional model is developed to quantify the influence of the morphological effect of rock joint (by varying the amplitude and wavelength of the joint) and different materials (coal or rock) on the distribution of the ESE. The results show that when the wavelength of the joint reaches about 5 similar to 20% of the length of the model and the amplitude of joint reaches about 2 similar to 10% of the height of the model, a relative high concentration of the ESE was found at the left and right crests, togeher with a low concentration in the middle crests. For most cases, the maximum ESE generally has a similar order of magnitude (10(8)similar to 10(9) J) and approximately arched trend for different wave amplitudes for the joints. However, in cases of the flattest joint only reaches about 10(-16) J. Regarding the influence of different materials on ESE, the rock-rock system generally has a similar distribution of ESE with the rock-coal system, but the latter one concentrates much more ESE. The coal-rock system has the smallest ESE. This recognition of the highly unbalanced distribution of ESE will certainly help to effectively reduce the potential failure of rocks under the CNL boundary conditions.
机译:煤矿中的摇滚乐是储存在岩石和煤炭质量中的弹性应变能量(ESE)的结果。沿岩石关节的弹性应变能量(ESE)的检查对于评估岩体的剪切强度是重要的。关节的形态和岩体的力量被认为是影响ESE分布的关键因素。在该研究中,开发了一种三维模型,以量化岩石关节(通过改变关节的幅度和波长)和不同材料(煤或岩)对ESE分布的影响。结果表明,当接头的波长达到约5时,类似于模型长度的20%,并且关节幅度达到约2的幅度相似的约2%,ESE的相对高浓度在左右嵴中发现,地铁,中间嵴浓度低。对于大多数情况,最大ESE通常具有类似的数量级(10(8),类似于10(9)J),并且对于接头的不同波振积的大约拱形趋势。然而,在拼接接头的情况下只达到大约10(-16)J.关于不同材料对ESE上的影响,岩石系统通常具有与岩煤系统类似的ESE分布,但后者浓缩更多的ESE。煤层岩系统具有最小的ESE。这种对ESE的高度不平衡分布的认识肯定有助于有效地降低CNL边界条件下岩石的潜在失效。

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