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Management and Utilization of High-Pressure Floor-Confined Water in Deep Coal Mines

机译:深煤矿高压底板承压水的管理与利用

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摘要

This study analyzed the failure characteristics of the coal seam floor induced by longwall mining to manage and eliminate possible hazards associated with high pressure (8.0 MPa) floor-confined water in the Xinjulong coal mine. The disturbed floor was divided into mining failure (MF), water-resistant (WR), and confined water intrusion (CWI) zones. The MF and CWI zones have lost their ability to resist the confined water, so the WR zone is the key for preventing water inrush from the floor aquifer. A thin-plate model for the WR zone indicated that the water pressure had to be decreased to 2.4 MPa or less. Multi-well pumping was used to decrease the floor aquifer water pressure from 8.0 to 2.1 MPa. Moreover, grouting was used to block water-conducting fractures in the floor strata. In addition, classification, purification, and recycling techniques enabled 84.8% utilization of the produced mine water.
机译:这项研究分析了长壁开采引起的煤层底板的破坏特征,以管理和消除与新居龙煤矿高压(8.0 MPa)底板承压水有关的潜在危害。受扰动的地板分为采矿失败(MF),防水(WR)和密闭水浸(CWI)区。 MF和CWI区已失去抵抗承压水的能力,因此WR区是防止地面含水层涌水的关键。 WR区的薄板模型表明,水压必须降至2.4 MPa或更小。多井抽水用于将地面含水层水压从8.0 MPa降低到2.1 MPa。此外,灌浆被用来阻塞地层中的导水裂缝。此外,分类,净化和再循环技术使产出的矿井水的利用率达到了84.8%。

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