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Measurement of pressure drop in drainage boreholes and its effects on the performance of coal seam gas extraction: a case study in the Jiulishan Mine with strong coal and gas outburst dangers

机译:排水孔压降的测量及其对煤层瓦斯抽采性能的影响-以煤与瓦斯突出强烈危险的九里山矿为例

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摘要

Although it is a well-accepted belief in the petroleum industry that horizontal well productivity can be limited by the pressure drop within the wellbore, little has been reported regarding how this pressure drop affects gas extraction from a coal seam and its further effects on mitigating coal and gas outburst dangers in coal. One of the major reasons for this scarcity is that the pressure-drop distribution in horizontal drainage boreholes is difficult to obtain. In this study, measurements of pressure drops in 54 drainage boreholes were performed in the No. 2(1) coal seam, which is the primary mining layer of Jiulishan Mine and poses a strong danger of coal and gas outbursts. Next, a coupled governing finite-element model, which includes the pressure drop in the borehole, Darcy flow in fractures, gas diffusion in the matrix blocks, and the dynamic evolution of the permeability of coal, was developed and implemented using a finite-element method to quantify the pressure-drop effects. Field tests of the pressure drops indicate that the pressure increases in a parabolic form with the increasing depth of the borehole, and lower outer end pressure is associated with larger pressure increments. The numerical results indicate that the pressure drop does affect the coal seam gas extraction, the pressure around the borehole increases with increasing borehole depth, and the increment of the pressure becomes larger when the borehole's drainage effect is enhanced. However, the impact is small and can be ignored in engineering.
机译:尽管在石油工业中人们普遍认为水平井产能会受到井眼内压力降的限制,但是关于这种压力降如何影响煤层瓦斯抽采及其对缓解煤层气的进一步影响的报道很少。和瓦斯突出的危险。这种稀缺的主要原因之一是很难获得水平排水井眼中的压降分布。在这项研究中,在九里山矿的主要开采层2(1)煤层中对54个排水孔的压降进行了测量,这对煤和瓦斯突出具有很大的危险。接下来,使用有限元模型开发并实现了耦合控制有限元模型,该模型包括井眼中的压降,裂缝中的达西流,基质块中的气体扩散以及煤渗透性的动态演化。量化压降效果的方法。压降的现场测试表明,压力随着井眼深度的增加呈抛物线形增加,而较低的外部末端压力与较大的压力增量相关。数值结果表明,压降的确影响了煤层气的开采,井眼周围的压力随井眼深度的增加而增加,而当井眼的排空效果增强时,压力的增量将变大。但是,影响很小,在工程中可以忽略。

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