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Influence of Longwall Mining on the Stability of Gas Wells in Chain Pillars

机译:长壁开采对链柱气井稳定性的影响

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Longwall mining has a significant influence on gas wells located within longwall chain pillars. Subsurface subsidence and abutment pressure induced by longwall mining can cause excessive stresses and deformations in gas well casings. If the gas well casings are compromised or ruptured, natural gas could migrate into the mine workings, potentially causing a fire or explosion. By the current safety regulations, the gas wells in the chain pillars have to be either plugged or protected by adequate coal pillars. The current regulations for the gas well pillar design are based on the 1957 Pennsylvania gas well pillar study. The study provided guidelines for gas well pillars by considering their support area and overburden depth as well as the location of the gas wells within the pillars. As the guidelines were developed for room-and-pillar mining under shallow cover, they are no longer applicable to modern longwall mining, particularly under deep cover. Gas well casing failures have occurred even though the chain pillars for the gas wells met the requirements by the 1957 study. This study presents seven cases of conventional gas wells penetrating through longwall chain pillars in the Pittsburgh coal seam. The study indicates that overburden depth and pillar size are not the only determining factors for gas well stability. The other important factors also include subsurface ground movement, overburden geology, and weak floor, as well as the construction of gas wells. Numerical modeling was used to model abutment pressure, subsurface deformations, and the response of gas well casings. The study demonstrated that numerical models are able to predict with reasonable accuracy the subsurface deformations in the overburden above, within, and below the chain pillars, and the potential location and modes of gas well failures, therefore providing a more quantifiable approach to assess the stability of the gas wells in longwall chain pillars.
机译:长壁开采对长壁链柱内的气井有重大影响。长壁开采引起的地下塌陷和基台压力会在气井套管中引起过大的应力和变形。如果气井套管受损或破裂,天然气可能会迁移到矿井中,从而可能引起火灾或爆炸。根据当前的安全法规,链式支柱中的气井必须通过适当的煤制支柱进行堵塞或保护。气井柱设计的现行法规基于1957年宾夕法尼亚州的气井柱研究。该研究通过考虑气井支柱的支撑面积,覆盖层深度以及气井在支柱内的位置,为气井支柱提供了指导。由于该指南是针对浅层地下室和柱子开采而制定的,因此它们不再适用于现代长壁开采,特别是在深层地下。即使气井的链柱满足了1957年研究的要求,气井套管还是发生了故障。这项研究提出了七例常规天然气井穿过匹兹堡煤层长壁链柱的案例。研究表明,上覆层深度和立柱尺寸并不是决定气井稳定性的唯一因素。其他重要因素还包括地下地下运动,覆盖层地质,薄弱的地层以及气井的建设。数值模拟被用来模拟基台压力,地下变形和气井套管的响应。研究表明,数值模型能够以合理的精度预测链柱上方,内部和下方覆盖层的地下变形,以及气井故障的潜在位置和模式,因此提供了一种更可量化的评估稳定性的方法长壁链柱中的气井的数量。

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