首页> 外文会议>International symposium on rockburst and seismicity in mines >NUMERICAL SIMULATION ON EFFECT OF GAS DRAINAGE IN COAL SEAM UNDER HYDRAULIC FRACTURING
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NUMERICAL SIMULATION ON EFFECT OF GAS DRAINAGE IN COAL SEAM UNDER HYDRAULIC FRACTURING

机译:煤层气压裂煤层煤层效应的数值模拟

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Methane drainage has become an integral part of modern coal mining operations in low-permeable coal seams, thus some measures such as hydraulic fracturing and stress reducing are used to improve the permeability of coal scams and secure the safety and effectiveness of coal mining activities. In the paper, a coupled gas flow model which incorporated stress, damage and permeability evolution was briefly described and employed to simulate the changes of gas pressure around the boreholes in low-permeable coal seam under hydraulic fracturing, and the seepage mechanism of gas flow was analyzed. Numerical simulations show that the content of gas release was remarkably increased and the gas pressure around the borehole was obviously reduced, which is well agreement with the field findings. The work in the present paper is of great significance to further investigate and understand the mechanism of gas permeability evolution and the mechanism of gas drainage under hydraulic fracturing in both theory and practice.
机译:甲烷排水已成为现代煤炭开采业务的一体部分,在低可渗透的煤层中,采用液压压裂和应力减少等一些措施来改善煤炭诈骗的渗透性,并确保煤炭开采活动的安全性和有效性。在本文中,简要描述并采用掺入应力,损坏和渗透率进化的耦合气流模型,并采用在液压压裂下的低渗煤层围绕钻孔的气体压力变化,气流的渗流机制是分析。数值模拟表明,气体释放的含量显着增加,并且钻孔周围的气体压力明显减少,这与现场发现很吻合。本文的工作具有重要意义,可以进一步调查和理解液压压裂在理论和实践中的液压压裂机制的机制。

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