...
首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >A CFD model to evaluate variables of the line brattice ventilation system in an empty heading
【24h】

A CFD model to evaluate variables of the line brattice ventilation system in an empty heading

机译:一种CFD模型,以评估空标题中的线路散发通风系统变量

获取原文
获取原文并翻译 | 示例
           

摘要

Blind headings in room and pillar coal mines are a major source of methane and coal dust. Most methane and coal dust explosions therefore occur in the blind headings. The primary cause of these explosions is the disruption of the local ventilation system. Line brattice (LB) ventilation systems are used to ventilate blind headings by directing air from the last through road (LTR) into the heading. The amount of air available to ventilate the face of the empty heading depends on the heading dimension, settings of the LB, and velocity of air in the LTR. LBs are commonly installed by underground supervisory staff based on work experience, which may result in ineffective ventilation. The correct installation of LBs remains a challenge.In this study, a validated computational fluid dynamics (CFD) model has been used to analyse the effect of the LB ventilation system variables on the air flow rates close to the face of the empty heading. Full-scale three-dimensional models with various heading heights, heading depths, LB settings, and LTR velocities were simulated. The air flow rates and patterns at various locations inside the heading were analysed. A comparative study was carried out to quantify the effect of each of these system variables on the flow rates close to the face of the heading. Based on the findings, a user-friendly numerical model was formulated that can be used to estimate the flow rate close to the face of an empty heading for different practical settings of the system variables. This model can help the supervisory staff to swiftly implement the ventilation plan according to the regulations and the mine standards. The model can also serve as part of the curriculum for educating future mining engineers.
机译:房间和柱煤矿的盲目是甲烷和煤尘的主要来源。因此,大多数甲烷和煤尘爆炸发生在盲目标题中。这些爆炸的主要原因是局部通风系统的破坏。线路布丁(LB)通风系统用于通过将空气从最后通道(LTR)引导到标题中通过向盲目的标题通风。可用于通风的空气量的空气头部的表面取决于标题尺寸,LB的设置和LTR中空气的速度。 LBS通常由地下监管人员根据工作经验安装,这可能导致通风无效。正确安装LBS仍然是挑战。在本研究中,已用于分析LB通风系统变量对空转率靠近空头的空气流速对空气流速的影响。模拟了具有各种标题高度,前线深度,LB设置和LTR速度的全尺寸三维模型。分析了标题内部各个位置处的空气流速和图案。进行了比较研究以量化这些系统变量对靠近标题的脸部的流速的影响。基于调查结果,配制了一种用户友好的数值模型,其可用于估计用于系统变量的不同实际设置的空标题的靠近的流速。该型号可以帮助监督人员根据法规和矿山标准迅速实施通风计划。该模型还可以作为教育未来采矿工程师的课程的一部分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号