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Deformation mechanisms in a coal mine roadway in extremely swelling soft rock

机译:极膨胀软岩中煤矿巷道的变形机制

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摘要

The problem of roadway support in swelling soft rock was one of the challenging problems during mining. For most geological conditions, combinations of two or more supporting approaches could meet the requirements of most roadways; however, in extremely swelling soft rock, combined approaches even could not control large deformations. The purpose of this work was to probe the roadway deformation mechanisms in extremely swelling soft rock. Based on the main return air-way in a coal mine, deformation monitoring and geomechanical analysis were conducted, as well as plastic zone mechanical model was analysed. Results indicated that this soft rock was potentially very swelling. When the ground stress acted alone, the support strength needed in situ was not too large and combined supporting approaches could meet this requirement; however, when this potential released, the roadway would undergo permanent deformation. When the loose zone reached 3 m within surrounding rock, remote stress p∞ and supporting stress P presented a linear relationship. Namely, the greater the swelling stress, the more difficult it would be in roadway supporting. So in this extremely swelling soft rock, a better way to control roadway deformation was to control the releasing of surrounding rock’s swelling potential.
机译:膨胀软岩中的巷道支护问题是采矿期间具有挑战性的问题之一。对于大多数地质条件,两种或更多种支持方法的组合可以满足大多数巷道的要求;但是,在极膨胀的软岩中,联合方法甚至无法控制较大的变形。这项工作的目的是探究极膨胀的软岩中的巷道变形机理。基于煤矿的主要回风通道,进行了变形监测和岩土力学分析,并对塑性区力学模型进行了分析。结果表明,该软岩可能非常溶胀。当地面应力单独作用时,原地需要的支撑强度不会太大,并且组合支撑方法可以满足此要求;但是,当释放这种潜力时,巷道将发生永久变形。当围岩内松散区达到3 m时,远处应力p∞和支撑应力P呈线性关系。即,膨胀应力越大,在巷道支撑中将越困难。因此,在这种极度膨胀的软岩中,控制巷道变形的更好方法是控制释放周围岩体的膨胀潜力。

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