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Formation and evolution of gas flow channels in the abutment pressure area

机译:基台压力区气流通道的形成与演化

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The permeability of coal ahead of the working face obviously changes dues to changes in abutment pressure.The formation and evolution of gas flow channels within the abutment pressure area was studied by analyzing the fracture extension mechanism and fracture development in different zones of the abutment pressure area.Fracture and damage mechanics theory is used to understand the observations.The following two techniques were used to understand the evolution of gas flow channels:field observation of the characteristic fractures at different positions relative to the working face and fluorescence micrographs of prepared coal samples.Bending tensile fractures develop along an approximately vertical direction that forms a microscopic network of channels in areas of stress concentration.The abutment pressure affects the local stress and,hence,the local gas conduction.The fractures induced by large deformation and plastic flow form macroscopically networked channels in the reduced stress area.Closer to the working face the gas flow channels evolve from microscopic to macroscopic and from isolated to network.Gas permeability continuously increases during this time.This is corroborated by field observations of the displacement of top coal and the gas flow from gas extraction drillings.
机译:在工作面前的煤的渗透性明显改变抵抗压力变化的会费。通过分析抵靠压力区域的不同区域的裂缝延伸机制和断裂发育来研究抵靠压力区域内的气体流动通道的形成和演化.Fracture和损伤力学理论用于了解观察结果。以下两种技术用于了解气体流动通道的演变:现场观察不同位置的特征骨折相对于制备的煤样的工作面和荧光显微照片。弯曲拉伸裂缝沿着近似垂直方向发育,其形成应力集中区域的微观通道网络。邻接压力影响局部应力,因此,大变形和塑料流动形式造成的裂缝造成的裂缝宏观网络压力降低的频道a Rea。将气体流动通道从微观透视中的气流传递到宏观,从分离到NetWork.gas渗透率在此期间连续增加。通过顶部煤的位移和来自气体提取的气体流动的现场观察,渗透性和来自气体提取的气体流动的渗透率连续增加。 。

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