深部矿井倾斜煤层采空区下回采巷道布置的数值模拟  被引量:5

Numerical simulation of arranging mining roadway under inclined seam goaf in deep mine

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作  者:肖福坤[1] 卢高明 申志亮 张峰瑞 张泽[1] 

机构地区:[1]黑龙江科技大学黑龙江省煤矿深部开采地压控制与瓦斯治理重点实验室,哈尔滨150022

出  处:《黑龙江科技学院学报》2013年第6期505-509,共5页Journal of Heilongjiang Institute of Science and Technology

基  金:教育部科学技术研究重点项目(210064)

摘  要:为减少深部矿井倾斜煤层采空区下回采巷道的变形量和卧底量,降低回采巷道的返修率,以某矿为例,分析采空区下布置回采巷道的矿压显现规律及回采巷道位置参数,并采用FLAC3D快速拉格朗日差分分析法进行数值模拟计算。结果表明:两层煤联合开采的下层位煤层回采巷道,应布置在上层位煤层已经稳定的采空区下;回采巷道与上层位煤体边缘之间的水平距离可通过取其在下层位煤层应力降低区域与下层位煤层小变形区域的取值范围的交集获得。该研究为采空区下回采巷道的位置选择提供了可靠的理论依据。This paper is devoted to studying the amount of undercover, and the roadway repair rate. reduction of the amount of roadway deformation, the This study, relying on the practical case of a mine, deals with an analysis of the behavior law governing the rock pressure of the mining roadway arranged un- der the goaf and positional parameters of mining roadway and development of numerical simulation using FLAC3D fast Lagrangian analysis method. The results show that, coal seam roadway with two layers of coal subjected to combined mining should be arranged under the goaf of the stabilized upper coal seam and the horizontal distance between the roadway and the upper coal seam is made possible by taking the intersec- tion between the stress-reducing area and small deformation area of the lower coal seam. The study may provide a reliable theoretical foundation for arranging mining roadway under goal.

关 键 词:回采巷道 矿压 深部矿井 倾斜煤层 数值模拟 

分 类 号:TD315[矿业工程—矿井建设]

 

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