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Coupling Effect of Intruding Water and Inherent Gas on Coal Strength Based on the Improved (Mohr-Coulomb) Failure Criterion

机译:基于改进的(Mohr-Coulomb)破坏准则的侵入水与固有气体对煤强度的耦合效应

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When employing hydraulic processes to increase gas drainage efficiency in underground coal mines, coal seams become a three-phase medium, containing water intruding into the coal pores with the inherent occurrence of gas. This can change the stress state of the coal and cause instability. This work studied the mechanical properties of coal containing water and gas and derived an appropriate failure criterion. Based on mixture theory of unsaturated porous media, the effective stress of coal, considering the interaction of water and gas, was analyzed, and the failure criterion established by combining this with the Mohr?¢????Coulomb criterion. By introducing the stress factor of matrix suction and using fitted curves of experimentally determined matrix suction and moisture content, the relationships between coal strength, gas pressure, and moisture content were determined. To verify the established strength theory, a series of triaxial compression strength tests of coal containing water and gas were carried out on samples taken from the Songzao, Pingdingshan, and Tashan mines in China. The experimental results correlated well with the theoretical predictions. The results showed a linear decrease in the peak strength of coal with increasing gas pressure and an exponential reduction in peak strength with increasing moisture content. The strength theory of coal containing water and gas can become an important part of multiphase medium damage theory.
机译:当采用水力过程来提高地下煤矿的瓦斯抽采效率时,煤层变成了一种三相介质,其中含有水,这些瓦斯由于固有的瓦斯而侵入煤层。这会改变煤的应力状态并导致不稳定。这项工作研究了包含水和气的煤的力学性能,并得出了适当的破坏准则。基于非饱和多孔介质的混合理论,分析了煤的有效应力,考虑了水和天然气的相互作用,并结合Mohr ???????库仑准则建立了破坏准则。通过引入基体吸力的应力因子并使用实验确定的基体吸力和水分含量的拟合曲线,确定了煤强度,气压和水分含量之间的关系。为了验证已建立的强度理论,对从中国松藻,平顶山和塔山矿山采集的样品进行了一系列含水和瓦斯的煤三轴抗压强度测试。实验结果与理论预测吻合良好。结果表明,随着气体压力的增加,煤的峰值强度呈线性下降,而随着水分含量的增加,峰值强度呈指数下降。包含水和气的煤的强度理论可以成为多相介质破坏理论的重要组成部分。

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