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A method for prevent water inrush from karst collapse column: a case study from Sima mine, China

机译:一种防止岩溶塌陷柱突水的方法-以中国司马矿为例

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摘要

Mining-induced groundwater inrush could result in serious economic losses and casualties. This disaster usually depends on geological structure, such as the karst collapse column (KCC). It could reduce the aquifuge thickness, causing a great risk of water bursting. In order to assess the impact of mining on the KCC, we have developed a complete set of methods, including three-dimensional seismic exploration, connectivity experiment, water injection experiment in two sidewalls, numerical simulation based on Drucker-Prager (DP) elastoplastic damage theory. This method is used to test the size, type and the damage thickness of theKCCnamedDX1in Sima mine, and the results indicate that the type of DX1 is good cementation. In addition, under the influence of the shear stress at the coal wall and the unloading at the goaf, a significant compressive damage zone with a large damage thickness will form at the sidewall of theKCC. As the roof collapses, the backfill is compacted and the maximum damage thickness gradually moves to the other side of the KCC. Eventually, an asymmetric inverted saddle-shaped damage distribution is formed with a maximum compression damage depth of 32.5 m. The results provide a basis for preventing water inrush from KCC.
机译:采矿引起的地下水涌入可能导致严重的经济损失和人员伤亡。这场灾难通常取决于地质结构,例如岩溶塌陷柱(KCC)。这样做可能会降低含水层的厚度,从而导致很大的水破裂风险。为了评估采矿对KCC的影响,我们开发了一套完整的方法,包括三维地震勘探,连通性实验,两个侧壁的注水实验以及基于Drucker-Prager(DP)弹塑性损伤的数值模拟理论。用该方法测试了司马矿DX1型KCC的大小,类型和破坏厚度,结果表明DX1型是良好的胶结作用。另外,在煤壁处的剪切应力和采空区的卸荷的影响下,将在KCC的侧壁处形成具有较大破坏厚度的明显的压缩破坏区域。随着屋顶塌陷,回填土被压实,最大破坏厚度逐渐移至KCC的另一侧。最终形成不对称的倒鞍形损坏分布,最大压缩损坏深度为32.5 m。研究结果为防止KCC涌水提供了依据。

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