煤炭工程 ›› 2015, Vol. 47 ›› Issue (11): 87-89.doi: 10.11799/ce201511028

• 研究探讨 • 上一篇    下一篇

松散层段立井井筒破坏的试验研究及判据分析

许延春,高玉兵   

  1. 中国矿业大学(北京)
  • 收稿日期:2014-08-03 修回日期:2014-09-07 出版日期:2015-11-12 发布日期:2015-12-07
  • 通讯作者: 高玉兵 E-mail:490905377@qq.com

Experimental Research and Judgment Criteria Analysis on Shaft Failure in Loose Strata

  • Received:2014-08-03 Revised:2014-09-07 Online:2015-11-12 Published:2015-12-07

摘要: 为深入探究松散层段井壁破坏的机理,以东滩煤矿西风井为例,在其附近松散层内部进行工业性试验,并利用光纤光栅监测系统对地层应变变化情况进行检测;以挡土墙理论为依据,对井壁附加应力进行理论分析,并根据第四强度理论提出了井壁破坏的判据模型。抽水试验表明,抽水使得下组含水层水量减少,土层固结压缩,压应力增加,而中组松散层下沉滞后于下组松散层,造成中组松散层处于拉伸状态;补水试验表明,补水量每增加1000m3,松散层传感器的应变变化量平均增大1.61με,且随着水量的增加,下组松散层压应变明显减小,说明水量变化对地层影响显著;对井壁附加应力计算发现,含水层疏水会导致滑动线与水平面的夹角减小,从而导致土层锥体体积增大,附加应力增加。

关键词: 松散层, 井壁, 破坏机理, 附加应力, 立井井筒

Abstract: In order to further study on the failure mechanism of vertical shaft in loose strata, an industrial test has been carried out in loose strata around west breeze well in Dongtan Coal Mine and the Fiber Bragg Grating system was used to monitor the change of strain in loose strata. In addition, additional stress of shaft lining was calculated theoretically based on the theory of retaining wall and the criterion of shaft wall fracture model was built based on the fourth strength theory. Pumping water test shows that water reduction led to consolidation of clayey and increment of compressive stress in lower coal group aquifer, it also led to clayey be in a state of tension in middle coal group aquifer because that movement of clayey in middle coal group aquifer lags behind that in lower coal group aquifer. Supplying water test shows that for each 1000m3 water increase, there was 1.61με increased strain variation of the clayey, and with the increment of water, the compressive strain decreased obviously, which shows the clayey is heavily influenced by the change of flow; For calculating the additional stress of shaft, it is found that the angel between slip line and horizontal plane decreases with the loss of aquifer, which lead to increase in size of soil centrum, causing increment of additional stress of shaft.

Key words: loose strata, shaft lining, failure mechanism, additional stress

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