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首页> 外文期刊>Advances in civil engineering >Field Measurement and Numerical Modelling Study on Mining-Induced Subsidence in a Typical Underground Mining Area of Northwestern China
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Field Measurement and Numerical Modelling Study on Mining-Induced Subsidence in a Typical Underground Mining Area of Northwestern China

机译:中国西北典型地下矿区采矿沉降的现场测量与数值模拟研究

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Mining-induced subsidence is a great concern for environmental protection in underground mining areas in China and all over the world. In view of the fact that the research on land degradation above underground coal mines are completely or partially independent of coal mining activity and the fact that the mechanism behind mining-induced subsidence has not been well understood, this study presents a field measurement and numerical study of mining-induced subsidence with respect to mining activity of three adjacent longwall panels in a coal mine in Northwest China. This study shows that surface subsidence lags far behind panel extraction or mining activity. The profiles of ground surface are dominated and manifested by the subsurface strata structures. The subsidence influence throughout the whole length of a longwall panel varies. Stability of strata structures within overburden before the final subsidence controls the stability of ground surface land. Chain pillars of 20 m between panels of 240 m wide with cover depth of 600 m have been crushed in the gob and do not have any function in supporting the overburden strata. The final subsidence of the three adjacent panels is far to come in the future and the land reuse above underground coal mines should be carefully planned by making sure that the gob is completely compacted or no potential secondary subsidence occurs in the future.
机译:采矿诱导的沉降是中国和世界各地地下采矿区环境保护的极大关注。鉴于地下煤矿上方的土地退化研究完全或部分地独立于煤炭开采活动,并且挖掘诱导沉降后的机制尚未得到很好的理解,这项研究提出了一种现场测量和数值研究中国西北地区煤矿三个相邻长墙板采矿活动的采矿活动。本研究表明,表面沉降远远落后于面板提取或采矿活动。地面的轮廓由地下地层结构主导并表现出。整个长墙板整个长度的沉降影响变化。最后沉降前覆盖层内层结构的稳定性控制地面土地的稳定性。在覆盖覆盖深度的覆盖深度为600米的覆盖柱之间的平板电池板间20米的链柱已被压碎,并没有任何功能支持覆盖层。未来,三个相邻面板的最终沉降远远抵达,应通过确保GOB完全压实或在未来发生潜在的次要沉降,仔细举行地下煤矿的土地重用。

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