Investigation of DPM dispersion in unventilated dead-ends using transient flow modelling

Q3 Engineering
R. Morla, S. Karekal, A. Godbole
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引用次数: 0

Abstract

This paper presents a detailed study of DPM dispersion in unventilated dead-end cross-cuts in an underground mine. The dispersion and dilution of DPM was measured in dead-end with time when the air is flowing in the main gallery. Parametric studies were conducted by varying the dead-end cross-cut lengths (10 m, 15 m, 20 m and 25 m), varying cross-cut angles (450, 900 and 1,350) with the main gallery and varying the velocities (0.5 m/s, 1 m/s, 2 m/s, 3 m/s, 4 m/s) in the main gallery across the cross-cuts. The results obtained show that longer time durations are required to dilute DPM for greater dead-end cross-cut lengths and angles. For 50 m dead-end cross-cut, it took five hours to reduce DPM concentration from 820 μg/m3 to 100 μg/m3. Studies also show that higher air velocity in adjacent main gallery results in shorter dilution time durations in dead-end cross-cuts. When the air velocity is below 0.5 m/s in the main gallery, no influence of DPM dilution was observed in the unventilated cross-cut for a long time.
用瞬态流动模型研究DPM在不通风死角的分散
本文详细研究了某地下矿山不通风死角巷道中DPM的分散特性。在主廊道内空气流动的死角处测量DPM的分散和稀释随时间的变化。参数研究通过改变死角横切长度(10米、15米、20米和25米),改变横切角度(450、900和1350)与主廊道,以及改变主廊道横切速度(0.5米/秒、1米/秒、2米/秒、3米/秒、4米/秒)来进行。结果表明,为了获得更大的死角和横切长度,需要更长的时间来稀释DPM。对于50 m的死角横切,DPM浓度从820 μg/m3降低到100 μg/m3需要5 h。研究还表明,相邻主巷道的空气流速越高,在死角交叉点的稀释时间越短。当主廊道内风速低于0.5 m/s时,在不通风的横切槽内,DPM稀释长期不受影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Mining and Mineral Engineering
International Journal of Mining and Mineral Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
1.90
自引率
0.00%
发文量
1
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