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Seismic Tomography, an Ideal but Immature Tool for Coal Bump Prediction

机译:地震层析成像,一种理想的但不成熟的煤爆预测工具

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Coal bumps remain one of the industry's most devastating but least understood phenomena. If changes to the internal conditions of the rock mass could be observed there is hope that bumps could be forecasted. Seismic tomography has been used over the past 25 years in an attempt to image these changing conditions in the vicinity of the longwall face. This paper describes the history and practical considerations of using seismic tomography in bump-prone coal mines. The implementation of seismic tomography at six different longwall mines will be described along with lessons learned. Early studies used mining independent sources of seismic energy, including explosives and sledgehammers. Subsequently more operator friendly sources, such as the mining equipment itself and mining-induced seismicity, were used. Seismic energy sensors have been placed in gateroads and on the surface above the mine. Each of these configurations has associated advantages and disadvantages. Although the results obtained have been encouraging, the application of seismic tomography to monitoring a bump-prone longwall face is still immature. The ultimate goal of clearly imaging changing stress conditions in the longwall panel in a manner that does not inhibit mining operation is still distant, yet drawing nearer. When this goal is achieved, the industry will have a capable tool for identifying locations where bumps are imminent.
机译:煤bump仍然是该行业破坏力最大但了解最少的现象之一。如果可以观察到岩体内部条件的变化,则可以预测会发生颠簸。在过去的25年中,一直使用地震层析成像技术来对长壁工作面附近的这些变化情况进行成像。本文介绍了在易爆煤矿中使用地震层析成像的历史和实践考虑。将描述在六个不同的长壁矿井中进行地震层析成像的过程以及所学到的教训。早期的研究使用了独立的地震能量源,包括炸药和大锤。随后,使用了更多操作员友好的资源,例如采矿设备本身和采矿引起的地震活动。地震能量传感器已被放置在矿井门口和地表之上。这些配置中的每一个都有相关的优点和缺点。尽管获得的结果令人鼓舞,但将地震层析成像技术用于监测易爆的长壁工作面仍然不成熟。以不抑制采矿作业的方式清晰成像长壁面板中变化的应力状况的最终目标仍然遥不可及,但越来越近。当实现此目标时,该行业将拥有一个功能强大的工具来识别即将发生颠簸的位置。

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