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Research on mining technology of extra-thick coal seam under rich water aquifers in a bitter cold steppe region

机译:富含水含水层下富厚煤层采矿技术研究

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The Mindong Mine, which belongs to the Shenhua group, China, is located in the bitter cold steppe region of the eastern part of Inner Mongolia, where the ecological environment is seriously restricted by underground water. In order to reduce the destruction of extra-thick coal seam mining to underground aquifer and the fragile surface grassland ecosystem, field engineering detections, theoretical analysis and simulation experiments were adopted to study the reasonable mining method of extra-thick coal seam under rich water aquifer in Mindong Mine. Through the research on mining geological conditions and hydrogeological condition of mine, three extra-thick aquifers were detected over the roof of 16-3up coal seam, the first mining coal seam of mine. The upper water-enriched region was detected by the joint geophysical prospecting methods combined ground transient electromagnetic method and underground DC electrical method. The height of water-flowing fractured zone and its ratio to the mining height were measured through numerical simulation and grout loss of boreholes. By adjusting the mining height of coal seam to avoid the height of water flowing fractured zone reaching the upper aquifer, the aim of preventing groundwater system from destroying was achieved. Field practices indicate that the underground water is stable and the grassland ecosystem of mine is well protected.
机译:闽东矿,属于神华集团,中国,位于内蒙古,那里的生态环境受到严重地下水限制东部的严寒草原地区。为了减少特厚煤层开采到地下含水层和脆弱的表面草原生态系统,现场工程检测,理论分析和仿真实验的破坏被采纳,研究在富水含水层特厚煤层合理开采方法闽东矿。通过对矿山地质条件及矿井水文地质条件的研究,经16-3up煤层,矿井首采煤层的顶板检测到三个超厚含水层。上层水富集的区域是由联合地球物理勘探方法相结合地瞬变电磁法和地下DC电方法检测。流水-裂隙区,其比例相对采矿高度的高度是通过数值模拟和钻孔泥浆损失来测量。通过调整煤层开采高度,以避免水裂隙带的到达上含水层的高度,以防止地下水系统从的目的了摧毁达到了。现场实践表明,地下水是稳定的和我的草原生态系统得到很好的保护。

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