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Mitigation of a Massive Sandstone Channel's Impact on Longwall Face Evaluation and Enhancement of Hydraulic Fracturing Technique

机译:巨大砂岩通道对长墙面评价的影响及改进水力压裂技术

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This paper presents the evaluation, enhancement and comparison of two hydraulic fracturing techniques which were employed to mitigate the impact of a massive sandstone channel on two successive longwall faces. The hydraulic fracturing technique and Longwall Visual Analysis (LVA) software were initially employed to mitigate the impact of thick, massive sandstoneroof during mining of longwall Panel 21. Improved longwall face conditions and productivity were observed as Panel 21 mined through the sandstone channel. However, moderate sandstone fractures and falls at the face were still present in areas where hydraulic fracture influence was not present. Such adverse conditions caused two to three weeks of production delays due to large face cavities, jammed face conveyor and subsequent face gluing. Based on the mining experience in Panel 21, and site-specific roof geology in Panel 22, a modified and more effective hydraulic fracturing program was employed. Fewer well-placed holes were drilled, and larger volume of water was pumped into each hole in order to propagate the individual horizontal pancake fractures over a larger area, thereby enhancing caving and relieving face pressure caused by overhang of the massive sandstone. Longwall Visual Analysis (LVA) software was also employed at Panel 22 to predict the cavity risk index and guide the longwall face crew in double-pulling shields behind the shearer drum. This helped to reduce the tip-to-face distance at the critical spots along the longwall face, which helped mitigate the formation of the roof cavities and failure of massive sandstone onto the face conveyor. Underground observations, face advance rate and face rock delay analysis confirmed that longwall face conditions and advance rate in Panel 22were significantly improved comparedto those of Panel 21. Consequently, safety and productivity were improved.
机译:本文介绍了两种液压压裂技术的评估,增强和比较,这些技术被用于减轻大量砂岩通道对两个连续的长墙面的影响。最初采用液压压裂技术和LongWALL视觉分析(LVA)软件来减轻厚度耐磨性的砂钢在长壁板21的开采过程中的影响。通过砂岩通道开采的面板21观察到改进的长壁面条条件和生产率。然而,适度的砂岩骨折和脸部落在液压断裂影响不存在的区域仍然存在。这种不利条件由于大面腔,干扰面输送机和随后的面部胶合而导致两到三周的生产延迟。基于面板21中的采矿经验,以及面板22中的特定于地的屋顶地质,采用了改进的和更有效的液压压裂程序。钻出井下放置的孔,泵入每个孔中的较大体积的水,以便在较大的区域上传播各个水平煎饼骨折,从而增强由块状砂岩的悬垂引起的塌陷和缓解面压。 LongWALL视觉分析(LVA)软件还采用了面板22,以预测腔体风险指数,并引导剪切机后面的双拉屏蔽中的长墙脸部机组人员。这有助于减小长墙面沿着长壁面的临界点处的尖端距离,这有助于减轻屋顶腔的形成和大规模砂岩在面部输送机上的故障。地下观察,面部前进率和面岩延迟分析证实,与面板21相比,Longwall面部条件和前进率显着改善。因此,提高了安全性和生产率。

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