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Effects of an underlying drainage gallery on coal bed methane capture effectiveness and the mechanical behavior of a gate road

机译:下层排水廊对煤层气捕获效率和闸道力学行为的影响

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Degassing of a coal bed via cross-measure boreholes from an underlying drainage gallery (UDG) is a reliable method for safeguarding a gate road against gas outbursts. Predicting the influence of the UDG on the gate road plays a key role in the optimal design of roadways to ensure safe excavation, support, and maintenance. In this paper, numerical simulations were conducted to assess the effects of in situ stress and the roadway layout on coal bed methane capture effectiveness and the mechanical behavior of a gate road. The results indicate that the influence of the UDG on the gate road increases as the angle between the major horizontal stress and the gate road is increased or when roadway separation is decreased. After excavating the UDG, the permeability distribution across the coal bed can be divided into distinct zones. The gate road should correspond as closely, as possible to the high permeability zone that develops in the rib area of the UDG, and permeability enhancement measures should be implemented in the low permeability zone. Staggering the roadways can prevent stress concentrations during the excavation of the gate road, but staggered roadways exhibit asymmetric distributions of plasticity and deformation. Therefore, roadway support in cases of staggered roadways should be biased toward the sidewall close to the adjacent excavation. These results provide important insights for layout planning and efficiency maximization of the UDG. Field test results matched well with the simulations. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过地下排水沟(UDG)的交叉测量钻孔对煤层进行脱气是一种保护闸道免受瓦斯突出的可靠方法。预测UDG对闸道的影响在巷道优化设计中起关键作用,以确保安全的开挖,支撑和维护。在本文中,进行了数值模拟,以评估原位应力和巷道布局对煤层气捕获效率和闸道力学行为的影响。结果表明,随着主水平应力与闸道之间的夹角增大或巷道间距减小,UDG对闸道的影响增大。开挖UDG后,整个煤层的渗透率分布可分为不同的区域。闸道应尽可能与UDG肋骨区域中形成的高渗透率区域相对应,并且应在低渗透率区域中实施渗透率增强措施。交错巷道可以防止在闸道开挖过程中应力集中,但是交错巷道表现出可塑性和变形的不对称分布。因此,在巷道交错的情况下,巷道支撑应朝靠近邻近基坑的侧壁偏置。这些结果为UDG的布局规划和效率最大化提供了重要的见识。现场测试结果与仿真结果非常吻合。 (C)2015 Elsevier B.V.保留所有权利。

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