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中国博士后科学基金(20110491476)

作品数:2 被引量:28H指数:2
相关作者:杨伟峰赵国荣吉育兵隋旺华更多>>
相关机构:中国矿业大学更多>>
发文基金:中国博士后科学基金国家自然科学基金江苏高校优势学科建设工程资助项目更多>>
相关领域:矿业工程更多>>

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薄基岩采动裂缝水砂流运移过程的模拟试验被引量:22
2012年
在分析厚松散层薄基岩下开采水砂突涌工程地质模式的基础上,设计自制了水砂混合流运移及突涌模型。试验以0.05 MPa和0.10 MPa水压力条件下的不同水砂混合物成分、不同通道裂缝宽度为例,揭示了孔隙水压力在裂缝通道中不同位置的变化特征。通过设置的模型试验,定量化地研究水砂混合物运移及涌出的多种地质信息,获得不同模型试验水砂混合流运移通道中不同位置监测的水压力变化曲线,同时分析裂缝通道水砂流速度与通道宽度的关系,观测水砂流通道溢出口出砂量与时间的变化关系。
杨伟峰隋旺华吉育兵赵国荣
关键词:薄基岩模型试验
Overburden failure and the prevention of water and sand inrush during coal mining under thin bedrock被引量:7
2011年
Coal mining under thin bedrock or thick unconsolidated soil layers brings mining problems related to these special geological conditions. The meaning of the term ''thin bedrock'' is defined through the thick- ness statistics of the coal seam and the bedrock layer. The coal-bearing strata having thick, unconsoli- dated aquifers and thin bedrock located at the Taiping Coal Mine in Shandong province were taken as a geological prototype for subsequent study. The geological, hydro-geological and engineering character- istics of the thin bedrock were analyzed. An engineering geological model was than established. Overbur- den failure and the development of ''Three Zones'' were studied by physical model tests. The rupture pattern and rock failure were analyzed for mining conditions under thin bedrock. The height of the caving zone and the freely flowing water fractured zone of different mining thicknesses were separately calcu- lated. The results show that a mining thickness greater than 3.5 m causes the height of the freely flowing water fractured zone to be sufficient to touch the weathered zone and the bottom of the Quaternary sys- tem aquifer, to various degrees. This, then, would lead to water and sand inrush into the working face. Measures to prevent water and sand flow inrush disasters by eliminating the power source are put fore- word. A field dewatering scheme was designed and observational data were obtained. The dewatering project had an obvious effect and the water level at working face number 8309 dropped to a safe level. The average draw down of the groundwater was observed to be 7.86 m. This showed that the dewatering project played a role in decreasing the hydraulic pressure and ensuring safety mining.
Yang Weifeng Xia Xiaohong Zhao Guorong Ji Yubin Shen Dingyi
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