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Evaluation of load losses in the ventilation circuit by the use of fortification in coal mines, study case: nechí mine, amagá, antioquia

机译:通过使用煤矿设防来评估通风回路中的负荷损失,研究案例:nechímine,amagá,antioquia

摘要

The research aims to identify the variables which influence on the increase of risk for explosions in underground coal mines, especially in the accumulation of coal dust on top of the fortification, as well as analyze how these affect the load losses in the ventilation circuit and the proper evacuation of coal dust. This analysis was carried out by a guide field visits to Nechí Mine (Municipality Amagá, Antioquia) where it was observed that the coal dust accumulated significantly in the wooden doors that in the steel arches, we proceeded to simulate different geometries of fortification and the amount of these for the purpose to determine which is the geometry that contributes to reducing the load losses. After analyzing the different scenarios, the geometry that optimizes the ventilation circuit has been called geometry Circular 2, which shows reduction in load losses of up to 14.67% compared to other geometries analyzed under the same conditions. Whit this, are proposed alternatives more efficient to optimize the ventilation circuit and ensure health and safety conditions for workers inside the mine.
机译:该研究旨在确定影响地下煤矿爆炸风险增加的变量,特别是在设防设施顶部的煤尘积累方面的变量,并分析这些变量如何影响通风回路和管道中的负荷损失。适当疏散煤尘。该分析是通过对Nechí矿(安蒂奥基亚市阿马加市)的一次指导性实地考察进行的,在该实地考察中,观察到煤尘在木门中大量积累,而木门在钢拱门中,我们继续模拟了不同的设防几何形状和数量为了确定哪个几何形状有助于减少负载损失,可以选择其中的一个。在分析了不同的情况之后,优化通风回路的几何结构被称为“ Circular 2”几何图形,与在相同条件下分析的其他几何图形相比,该图形显示出的负载损失最多降低了14.67%。因此,提出了更有效的替代方案,以优化通风回路并确保矿井内工人的健康和安全条件。

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