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The Caving and Sliding Control of Surrounding Rocks on Large Coal Roadways Affected by Abutment Pressure

机译:受基台压力影响的大型煤巷巷道围岩冒顶滑移控制

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For the caving and sliding control of roadways with large cross-section, thick mudstone roof and abutment pressure influence, the cable truss system is proposed and its support mechanism is thoroughly analyzed in this paper. Furthermore, according to the geometric size and ground pressure conditions on field coal roadways No. 101, No. 102 and No. 103 in Xinyuan Coal Mine, three types of cable truss support systems are designed for obtaining the optimum cable truss support system. Then the corresponding parameters for each support design are determined by use of the numerical simulation method, and three kinds of support systems are put into practice. The field observation results show that roof should be effectively controlled by the normal cable truss structure consisting of two long cables and one connector, and both coal sides can be protected by the simplified cable truss structure composed of two short cables and one channel bar. Finally, the optimal support system is gotten which is much better than the other two support designs in rock deformation control effect and economic profits.
机译:为了对大断面,厚泥岩顶板和桥台压力影响的巷道进行冒顶和滑移控制,提出了缆索桁架系统,并对其支撑机理进行了详尽的分析。此外,根据新源煤矿101、102、103号野外煤巷的几何尺寸和地面压力条件,设计了三种类型的电缆桁架支撑系统,以获得最佳的电缆桁架支撑系统。然后通过数值模拟的方法确定每种支护设计的相应参数,并将三种支护系统付诸实践。现场观察结果表明,应采用由两根长电缆和一根连接器组成的普通电缆桁架结构有效地控制顶板,由两根短电缆和一根槽钢组成的简化电缆桁架结构可以保护煤层的两侧。最后,获得了最优的支护系统,在岩石变形控制效果和经济效益上均优于其他两种支护设计。

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