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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Field observations and numerical studies of horizontal stress effects on roof stability in US limestone mines
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Field observations and numerical studies of horizontal stress effects on roof stability in US limestone mines

机译:现场观察和水平应力对美国石灰岩矿山顶板稳定性影响的数值研究

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摘要

Limestone formations in the United States can be subject to relatively high horizontal stresses due to the existence of tectonic loading of the limestone strata. Underground limestone mines use the room and-pillar method, in which 12-10 18-m-wide rooms are typically excavated. The stability of these excavations can be compromised by the horizontal stress, resulting in a rockfall hazard. Rockfalls are the cause of 15 percent of all reportable injuries in underground limestone mines. Horizontal stress related damage can occur in the form of guttering along one or more sides of an excavation, roof beam buckling or oval shaped roof falls, with the long axis perpendicular to the major horizontal stress. Numcrical analyses show that the pillar layout and orientation of the mine workings have an effect on the horizontal stress distribution within the roof. The effects of high horizontal stresses can be mitigated by orientating the heading development direction parallel to the maximum horizontal stress, reducing the number of cross cuts and offsetting the cross cuts to limit the potential lateral extent of horizontal stress related roof falls. The modeling approach described in this paper can be used as a tool to evaluate potential roof failure and optimize the stability of room and pillar layouts.
机译:由于存在石灰岩地层的构造载荷,美国的石灰岩地层可能会承受较高的水平应力。地下石灰石矿使用房柱式方法,通常开挖12至18米宽的房间。这些开挖的稳定性可能因水平应力而受损,从而导致崩塌危险。在地下石灰岩矿山中,落石事故占所有报告伤害的15%。与水平应力有关的破坏可能以开挖的一侧或多边,屋檐梁的屈曲或椭圆形的屋顶坠落为沟槽的形式发生,长轴垂直于主要水平应力。数值分析表明,矿井工作的支柱布局和方向对顶棚内的水平应力分布有影响。可以通过将航向发展方向与最大水平应力平行地定向,减少横切的数量以及使横切偏移以限制水平应力相关的屋顶崩落的潜在横向范围,来缓解高水平应力的影响。本文中描述的建模方法可以用作评估潜在屋顶故障并优化房间和支柱布局稳定性的工具。

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