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Evaluation of the rockburst potential in longwall coal mining using passive seismic velocity tomography and image subtraction technique

机译:使用被动地震速度断层扫描和图像减法技术评估长墙煤开采岩爆势

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摘要

Rockburst is a typical dynamic disaster in underground coal mines which its occurrences relate to the mechanical quality of coal seam and surrounding rock mass and also the condition of stress distribution. The main aim of this paper is to study the potential of rockburst in a longwall coal mine by using of passive seismic velocity tomography and image subtraction technique. For this purpose, first by mounting an array of receivers on the surface above the active panel, the mining-induced seismic data as a passive source for several continuous days were recorded. Then, the three-dimensional tomograms using simultaneous iteration reconstruction technique (SIRT) for each day are created and by employing the velocity filtering, the overstressed zones are detected. In addition, the two-dimensional seismic velocity tomograms in coal seam level by slicing the three-dimensional tomograms are obtained. Then the state of stress changes in successive days by applying the image subtraction technique on these two-dimensional tomograms is considered. The results show that the compilation of filtered three-dimensional tomograms and subtracted images is an appropriate approach for detecting the overstressed zones around the panel and subsequent evaluation of rockburst potential. The research conclusion proves that the applied approach in this study in combination with field observations of rock mass status can effectively identify the rockburst-prone areas during the mining operation and help to improve the safety condition.
机译:Rockburst是地下煤矿的典型动态灾难,其出现与煤层和周围岩体的机械质量有关,以及应力分布的条件。本文的主要目的是利用被动地震速度断层扫描和图像减法技术研究长墙煤矿中摇滚乐的潜力。为此目的,首先通过将接收器阵列安装在有源面板上方的表面上,记录挖掘诱导的地震数据作为若干连续天的无源源。然后,使用每天使用同时迭代重建技术(SIRT)的三维断层图像,并通过采用速度滤波,检测到过时的区域。此外,获得了通过切割三维断层图像的煤层水平中的二维地震速度断层图像。然后,考虑了在考虑这些二维断层图像上的图像减法技术,在连续日期中应力变化的状态。结果表明,过滤的三维断层图像和减去图像的编译是一种适当的方法,用于检测面板周围的过度传感区域,随后评估岩爆潜力。研究结论证明,本研究中的应用方法与岩石质量地位的田间观察组合可以有效地识别采矿操作期间摇滚易发的地区,并有助于提高安全状况。

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