首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Increasing Oxygen Mass Fraction in Blind Headings of a Plateau Metal Mine by Oxygen Supply Duct Design: A CFD Modelling Approach
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Increasing Oxygen Mass Fraction in Blind Headings of a Plateau Metal Mine by Oxygen Supply Duct Design: A CFD Modelling Approach

机译:基于供氧管道设计的高原金属矿盲砚氧质量分数增加研究:一种CFD建模方法

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摘要

Hypoxia problem has always been a difficult point in plateau tunneling projects. To solve this problem, a blind heading face in a plateau metal mine in western China was taken as the physical model, and the computational fluid dynamics was used to analyze the oxygen mass fraction distribution and oxygen-increasing effect in 1 m, 3 m, and 5 m roadway sections from the heading face. The optimal ventilation system was first built to obtain the optimum height and length of the airflow ducts. Then different cases with various oxygen supply duct designs were built in 2 scenarios. The results found that different oxygen supply duct design has significant influence on the oxygen distribution in the heading face. Also, each design has different optimal height of oxygen outlet. The oxygen supply effect is best when some small holes are made in the oxygen supply duct to diffuse oxygen to the working surface. The finding of this paper is helpful for effective and economical oxygen supply in roadway excavation of plateau metal mine and tunnel.
机译:缺氧问题一直是高原隧道工程的难点。为解决该问题,以西部某高原金属矿山盲镦面为物理模型,运用计算流体力学分析了从镦头面开始1 m、3 m、5 m巷道断面的氧质量分数分布及增氧效应。首先构建最佳通风系统,以获得气流管道的最佳高度和长度。然后,在2个场景中构建了具有不同供氧管道设计的不同案例。结果表明,不同的供氧管道设计对航向面氧分布有显著影响。此外,每种设计都有不同的氧气出口最佳高度。当在供氧管道上开一些小孔,将氧气扩散到工作表面时,供氧效果最好。研究结果有助于高原金属矿山和隧道巷道开挖有效、经济地供氧。

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