Improvement of the methodology for predicting gas-dynamic phenomena on the basis of modern sound-capturing equipment

Vyacheslav Krasnyk, Boris Deglin
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Abstract

The object of the study is the sound accompaniment of the processes of stress redistribution in the bottom part of the coal seam, which precede the release of rock, coal, and gas. Among the hazards of underground coal mining, gas-dynamic phenomena (GDP) are the most complex in nature and the most dangerous in terms of consequences of high dynamic power and the release of a large amount of mechanical energy in the form of fractures and gas in a short period of time. This leads to accidents due to sudden gassing and blockages of workings with coal and rock, as well as explosions of methane and coal dust, destruction of the workings' support, damage to machinery and mechanisms, equipment, and devices. The greatest hazard among GDPs is posed by sudden releases of coal and gas, rock and gas, gas releases with destruction of host rocks and with destruction of the ground of the workings, as well as gas breakthroughs from tectonic fault zones. Therefore, the accuracy of predicting possible gas-dynamic phenomena significantly affects the level of safety of miners. The acoustic emission (AE) method is used to predict the gas-dynamic activity of a rock massif. The analysis of acoustic emission studies based on archival data in coal seams subject to gas-dynamic activity has made it possible to substantiate the possibility of improving the accuracy of the forecast of emission hazard, which has a social and economic effect. On the basis of exploratory research and production tests, the software for automated calculations of the GDP forecast was improved and an improved Methodology for forecasting gas-dynamic phenomena based on modern sound-capturing equipment was developed. A scientific justification for the reference interval of AE observations in the conditions of a particular longwall was developed. The developed software and the forecasting methodology were tested in the conditions of the Tsentralna mine of the Toretskugol State Enterprise (Toretsk, Donetsk region, Ukraine). The practical significance of the work is that a method for predicting explosion hazard has been developed, taking into account the modern capabilities of equipment and methods of input data processing, which allows to increase the productivity of mining and tunneling operations in coal seams without reducing the safety of miners.
在现代声音捕捉设备的基础上改进预测气体动力现象的方法
研究对象是煤层底部应力再分布过程的声音伴音,该过程发生在岩石、煤和瓦斯释放之前。在地下煤矿开采的危害中,瓦斯动力现象(GDP)的性质最为复杂,其后果也最为危险,因为它具有高动力,并能在短时间内以裂缝和瓦斯的形式释放大量机械能。这就导致了煤和岩石突然冒气和堵塞工作面、甲烷和煤尘爆炸、工作面支架破坏、机械和机构、设备和装置损坏等事故。煤与瓦斯、岩石与瓦斯的突然释放、瓦斯释放与主岩的破坏、工作面地面的破坏以及构造断层带的瓦斯突入是 GDPs 中最大的危害。声发射 (AE) 方法用于预测岩体的瓦斯动力活动。根据受瓦斯动力活动影响的煤层的档案数据对声波发射研究进行分析,可以证实提高发射危险预测准确性的可能性,这对社会和经济都有影响。在探索性研究和生产试验的基础上,改进了自动计算 GDP 预报的软件,并在现代声音捕捉设备的基础上开发了改进的瓦斯动力现象预报方法。开发的软件和预测方法在 Toretskugol 国营企业 Tsentralna 矿(乌克兰顿涅茨克州 Toretsk)进行了测试。这项工作的实际意义在于,在考虑到现代设备能力和输入数据处理方法的情况下,开发了一种预测爆炸危险的方法,从而在不降低矿工安全的前提下,提高了煤层开采和掘进作业的生产率。
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