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Application of seismic velocity tomography in underground coal mines: A case study of Yima mining area, Henan, China

机译:地震速度层析成像技术在地下煤矿中的应用-以河南义马矿区为例

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摘要

A better understanding of geological structures, stress regimes, and rock burst risks around longwall mining panels can allow for higher extraction efficiency with reduced safety concerns. In this paper, the stress change of rock mass was first examined by using ultrasonic technique into laboratory-scale rock samples. Subsequently, the active and passive seismic velocity tomograms were simultaneously applied into two study cases with fieldscale. Similar characteristics can be found between the active and passive tomography results. More specifically, in the first case, a geological discontinuity was clearly indicated by a linear image in both active and passive seismic tomography results. The results of the second case suggest that seismic tomography can be used to infer stress redistribution, and assess rock burst hazard or locate high-seismicity zones. Ultimately, comparisons have been made between the results of active and passive seismic tomography. Active tomography is found to be better applied in accurately detecting stress distribution and geological structures prior to the extraction of longwall panels, while passive tomography has advantages in continuously monitoring the stress changes and assessing rock burst potential during the mining of longwall panels. This study is expected to increase the safety and efficiency of the underground mining.
机译:更好地了解长壁开采板块周围的地质结构,应力状态和岩爆风险,可以提高开采效率,同时减少安全隐患。本文首先采用超声技术研究了实验室规模岩石样品中岩体的应力变化。随后,将主动和被动地震速度断层图同时应用于两个具有现场规模的研究案例。在主动和被动层析成像结果之间可以发现类似的特征。更具体地说,在第一种情况下,在主动和被动地震层析成像结果中,线性图像清楚地表明了地质不连续性。第二种情况的结果表明,地震层析成像可用于推断应力重新分布,评估岩爆危险或定位高地震带。最终,在主动和被动地震层析成像的结果之间进行了比较。发现主动断层扫描可以更好地应用于在提取长壁板之前准确地检测应力分布和地质结构,而被动断层扫描在连续监测应力变化和评估长壁板开采过程中的岩爆潜力方面具有优势。这项研究有望提高地下采矿的安全性和效率。

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