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首页> 外文期刊>Minerals >Modeling of Geometric Change Influence on Blast-Wave Propagation in Underground Airways Using a 2D-Transient Euler Scheme
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Modeling of Geometric Change Influence on Blast-Wave Propagation in Underground Airways Using a 2D-Transient Euler Scheme

机译:使用二维瞬态Euler方案对地下管道中几何变化对爆炸波传播的影响建模

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The impact of methane explosions on mining operations can never be over-emphasized. The safety of miners could be threatened and local ventilation facilities are likely to be damaged by the flame and overpressure induced by a methane explosion event, making it essential to understand the destructiveness and influence range of a specific explosion. In this paper, the attenuation effect of geometric changes, most commonly bends, obstacles, and branches, present in the way of blast-wave propagation and the capability of the selected numerical model were studied. Although some relevant experimental research has been provided, quantitative analysis is insufficient. This paper investigates the attenuation factors of seven bends, three obstacles, and two T-branch scenarios to ascertain a better insight of this potentially devastating event quantitatively. The results suggest that (1) the numerical model used is capable of predicting four of the seven validated scenarios with a relative error less than 12%; (2) the maximum peak overpressure is obtained when the angle equals 50???° for bend cases; and (3) the selected numerical scheme would overestimate the obstacle cases by around 15%.
机译:甲烷爆炸对采矿作业的影响永远不会过分强调。矿工的安全可能受到威胁,甲烷爆炸事件引起的火焰和超压可能会损害当地的通风设施,因此必须了解特定爆炸的破坏性和影响范围。本文研究了以爆炸波传播方式出现的几何变化,最常见的弯曲,障碍物和分支的衰减效应以及所选数值模型的能力。尽管已经提供了一些相关的实验研究,但是定量分析还是不够的。本文研究了七个弯道,三个障碍和两个T型分支场景的衰减因子,以定量地确定对这一潜在破坏性事件的更好了解。结果表明:(1)所使用的数值模型能够预测七个经过验证的场景中的四个,相对误差小于12%; (2)对于弯曲情况,当角度等于50°时,可获得最大峰值过压; (3)选择的数值方案将使障碍情况高估15%。

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