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Energy release induced rockbursts based on butterfly-shaped plastic zones in roadways of coal reservoirs

机译:能源释放诱导基于煤储层道路的蝴蝶形塑料区的摇滚乐

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摘要

According to the theories of rockburst based on butterfly-shaped plastic zones, a plane strain mechanical model was established for stress distribution around the holes in homogeneous elastoplastic media. Based on the Mohr-Coulomb yield criterion and the generalized form of Hooke’s law, the equation for the elastic strain-energy density of units at a 3D stress state was deduced. On this basis, the energy absorption and release in rocks surrounding a roadway during the evolution thereof in a coal reservoir tend to rock bursting were quantified. Through Flac 3D 5.0 numerical simulation software, the energy released from a homogeneous circular roadway at different development states of plastic zones was investigated. By investigating conditions at the 21141 working face in Qianqiu Coal Mine, Henan Province, China, subjected to rockburst, a numerical model was established to calculate the energy released by a rockburst working face. The calculated results approximated the data monitored at the outburst site, with the same energy level recorded. The theoretical calculation for energy release from the rock surrounding a roadway is expected to reference engineering practice.
机译:根据基于蝴蝶形塑料区的摇滚骨折理论,建立了一种平面应变机械模型,用于均匀弹塑性介质孔周围的应力分布。基于Mohr-Coulomb产值标准和Hooke定律的广义形式,推导出3D应力状态下的单位弹性应变能量密度的等式。在此基础上,在煤储层中的进化期间围绕道路围绕道路的岩石的能量吸收和释放倾向于岩石爆裂。通过FLAC 3D 5.0数值模拟软件,研究了塑料区不同发展状态的均匀循环道路中释放的能量。通过调查河南省河丘煤矿21141个工作面的条件,中国河南省经过摇滚爆发,建立了一个数值模型,以计算岩石工作面释放的能量。计算结果近似于突出站点监视的数据,记录了相同的能量水平。预计围绕道路周围的岩石的能量释放的理论计算将参考工程实践。

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