煤矿工作网中煤尘连续爆炸的发展机理

IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Rudarsko-Geolosko-Naftni Zbornik Pub Date : 2022-01-01 DOI:10.17794/rgn.2022.1.5
V. Kostenko, O. Zavialova, S. Pozdieiev, T. Kostenko, Viktor Hvozd
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引用次数: 1

摘要

本文的目的是揭示通过将地震能量传递到位于工作地周界的煤尘上,为煤尘连续爆炸创造条件的机理。利用ANSYS软件对爆炸引起的地震波作用下空气中煤尘颗粒的运动进行了模拟。通过模拟证实,由爆炸引起的地震波在岩体中传播的速度比在工作的空气中运动的爆炸锋面要快。描述了一层煤尘在地震波作用下一秒钟内工作壁振动过程中的定性和定量行为。在爆炸机制发展的初始阶段,即事故发生前煤矿空气成分中没有可燃气体浓度或煤粉痕迹的阶段,补充了火药的动态松动阶段。结果表明,在距爆炸震源约50 m处的地震作用下,一层粉状分散煤上升到空气中,形成粉尘云,是矿井工作网中爆炸扩散进一步持续发展的始作俑者。
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Mechanism of development of coal dust continuous explosion in a network of mine workings
The objective of this paper is to reveal the mechanism of creating conditions for the continuous explosion of coal dust by transferring seismic energy to coal dust located along the perimeter of a working. The ANSYS software package was used to model the movement of coal dust particles in the air under the influence of seismic waves caused by the action of an explosion. It was confirmed by modelling that seismic waves, provoked by an explosion, propagate in the rock mass at a higher velocity than the moving explosive front in the air of a working. The qualitative and quantitative behaviour of a layer of coal dust in the process of oscillation of the working walls under the influence of seismic waves during one second was described. The stage of dynamic loosening of the powder is supplemented by the initial period of the mechanism of explosion development, when there are no combustible concentrations of gas or coal traces in the air composition of the mine working before the incident. It is established that under the seismic influence at a distance of about 50 m from the hypocentre of the explosion, a layer of powder-like dispersed coal rises into the air forming a dust cloud, which is the initiator of further continuous development of the explosion spreading in a network of mine workings.
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来源期刊
CiteScore
2.50
自引率
15.40%
发文量
50
审稿时长
12 weeks
期刊最新文献
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