首页> 外文会议>Proceedings 19th International Conference on Ground Control in Mining, 19th, Aug 8-10, 2000, Morgantown, WV, USA >Utilizing the 'Advance and Relieve' Method to Reduce Horizontal Stress Affects on the Mine Roof, A Case Study
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Utilizing the 'Advance and Relieve' Method to Reduce Horizontal Stress Affects on the Mine Roof, A Case Study

机译:使用“先行释放”方法减少对矿井顶板的水平应力影响的案例研究

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摘要

A room and pillar coal operation in central Pennsylvania was experiencing roof cutters and long running roof falls caused by high horizontal stresses. The roof conditions created hazards for the miners, and caused several production panels to be abandoned prematurely. The mine requested assistance from the National Institute for Occupational Safety and Health (NIOSH) in applying the "advance and relieve" mining to reduce the affects of the horizontal stress during panel development. The "advance and relieve" plan that was developed called for removing a pillar on one side of the panel as it was being advanced, thus creating a cave. The caving then relieved a portion of the horizontal stress across the panel. Because the horizontal stress direction is key to the success of this method, stress mapping as well as mining experience was used to establish the direction of the horizontal stress. Subsequent field measurements provided an estimate of the stress magnitude. Three panels were mined using this technique, and good roof conditions were achieved in all these panels. Instrumentation was used to monitor the stress changes in the roof created by the cave. Stress relief of over 1,000 psi was measured 120 ft from the cave and to depths of 20 ft into the roof. The lateral extent of the stress relief zone across the panels appears to be about 400 to 500 ft. This case history has provided much insight into the practical application of the "advance and relieve" method discussed in this paper.
机译:宾夕法尼亚州中部的一个房间和一个支柱煤厂正遭受着屋顶切割机的破坏,并且由于高水平应力而导致屋顶长期坠落。顶板条件对矿工造成了危害,并导致过早废弃了几块生产面板。该矿山要求美国国家职业安全与健康研究所(NIOSH)协助进行“先进和缓解”开采,以减少面板开发过程中水平应力的影响。制定的“前进和后退”计划要求在推进面板时移除面板一侧的支柱,从而创建一个洞穴。然后,塌陷减轻了整个面板的一部分水平应力。由于水平应力方向是该方法成功的关键,因此应力映射和采矿经验被用来确定水平应力的方向。随后的现场测量提供了应力大小的估计。使用该技术开采了三个面板,并且在所有这些面板中均达到了良好的屋顶条件。仪器被用来监测由洞穴产生的屋顶的应力变化。在距洞口120英尺处至屋顶的20英尺深度处,应力释放超过1,000 psi。跨面板的应力释放区域的横向范围似乎约为400至500 ft。此案例历史为本文中讨论的“提前和缓解”方法的实际应用提供了很多见识。

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