首页> 外文会议>SME Annual Conference Expo >CONTROLLING CROSSCUT DAMAGE IN RESPONSE TO EXCESSIVE LEVELS OF HORIZONTAL STRESS: CASE STUDY AT THE SUBTROPOLIS MINE, PETERSBURG, OH
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CONTROLLING CROSSCUT DAMAGE IN RESPONSE TO EXCESSIVE LEVELS OF HORIZONTAL STRESS: CASE STUDY AT THE SUBTROPOLIS MINE, PETERSBURG, OH

机译:控制横冲伤害响应过度水平应力水平的伤害:彼得斯堡矿山矿的案例研究

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The Subtropolis Mine is a room-and-pillar mine extracting the Vanport Limestone near Petersburg, Ohio. In February of 2018, mine management began implementing a new layout to better control the negative effects of excessive levels of horizontal stress. Almost immediately, the conditions in the headings improved. Conversely, and as expected, stress-related damage concentrated within crosscuts. Over the last 18 months, the mine operator has diligently experimented with different techniques/methods to lessen the impact of the instabilities in the outby crosscuts. The range of controls used by the mine operator include, angled crosscuts, crosscut offsets, increase distance between crosscuts, arched crosscuts, cable bolted crosscuts, altered blasting pattern, and windows. A window is used to resist roof deformation by leaving a strong brow of roof rock within the crosscuts. A window reduces the crosscut dimensions vertically and, in some applications, horizontally. With each application of engineering controls, conditions were monitored and analyzed using observational and measurement techniques. In every case, the advantages in ground conditions were weighed against its impacts to haulage, ventilation, and other mining considerations. This paper examines how each engineering control was implemented and assessed. All these controls are based on well-established geomechanics principles, but experience has shown that local modifications are needed to deal with the unique local conditions such as geology, mining method, mine equipment, and in situ stress conditions.
机译:Subotroolis Mine是一个房间和柱子矿山,提取俄亥俄州彼得堡附近的Vanport石灰岩。 2018年2月,矿山管理开始实施新的布局,以更好地控制过度水平应力水平的负面影响。几乎立即,标题中的条件改善了。相反,正如预期的那样,与压力相关的损伤集中在横切。在过去的18个月中,矿山运营商已经努力尝试不同的技术/方法,以减少不稳定性在出台横切中的影响。矿井操作员使用的控制范围包括,成角度的横切,横切偏移,横切之间的距离,拱形横切,电缆用螺栓横切,改变的爆破图案和窗户之间的距离。窗户用于通过在横切卷中留下强大的屋顶岩石来抵抗屋顶变形。窗口垂直降低横切尺寸,并且在某些应用中水平。随着每次应用工程控制,使用观察和测量技术监测和分析条件。在每种情况下,将地面条件的优点加上其对运输,通风和其他采矿考虑的影响。本文介绍了如何实施和评估每个工程控制。所有这些控件都基于良好的地质力学原理,但经验表明,需要局部修改来处理地质,采矿方法,矿井设备等独特的本地条件,以及原位应力条件。

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