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Appropriate Mining System for Residual Coal Around End-slopes in Chinese Surface Coal Mines

机译:中国露天煤矿边坡附近剩余煤的适宜开采系统

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A great deal of coal will be left under the final end-walls in Chinese surface coal mines because of lower slope angle in shovel-truck mining systems and larger mining depths. In traditional surface mining systems, the coal under the end-walls will be buried by the inner dumping site, and these coal resources are generally abandoned. Considering these situations, the application of end-wall mining systems was considered in order to recover the residual coal around the end-wall. This mining system can improve economic benefits by exploiting haulage and ventilation roadways from end-walls and utilizing the existing transportation systems. In order to develop the appropriate pillar design methodology for the end-wall mining system, several empirical formulas and methods were discussed based on the formulas developed so far and the mechanics properties of coal and rocks in the Chinese coal mine. From the results of a series of theoretical and numerical analyses, it can be concluded that the coal pillar width calculated by the Mark-Bieniawski formula may serve as an important reference for pillar design in end-wall mining systems, and the end-wall mining system can increase the coal recovery from residual coal resources around highwall and reduce the effect of underground mining operation on slope stability.
机译:由于铲车式采矿系统的倾斜角较小且开采深度较大,因此中国露天煤矿的最终端壁下方会留有大量煤炭。在传统的露天采矿系统中,端壁下方的煤炭将被内部倾卸场掩埋,这些煤炭资源通常被废弃。考虑到这些情况,考虑了端壁开采系统的应用,以便回收端壁周围的残余煤。通过利用端壁的运输和通风道并利用现有的运输系统,该采矿系统可以提高经济效益。为了开发适用于端壁开采系统的支柱设计方法,根据目前开发的公式以及中国煤矿的煤和岩石的力学特性,讨论了几种经验公式和方法。通过一系列理论和数值分析的结果,可以得出结论,由Mark-Bieniawski公式计算出的煤柱宽度可为端壁采矿系统和端壁采矿中的柱子设计提供重要参考。该系统可以提高高墙周围剩余煤炭资源中的煤炭采收率,并减少地下采矿作业对边坡稳定性的影响。

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