首页> 外文会议>2012 SME annual meeting amp; exhibit. >COMPUTATIONAL FLUID DYNAMICS STUDY OF TRACER GAS DISPERSION IN A MINE AFTER DIFFERENT VENTILATION DAMAGE SCENARIOS
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COMPUTATIONAL FLUID DYNAMICS STUDY OF TRACER GAS DISPERSION IN A MINE AFTER DIFFERENT VENTILATION DAMAGE SCENARIOS

机译:不同通风破坏情景下矿井中示踪气体扩散的计算流体动力学研究

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Tracer gases are an effective method for assessment of mine ventilation systems, but their dispersion characteristics can differ substantially as ventilation parameters, such as flow path and velocity, vary. This research utilizes Computational Fluid Dynamics (CFD) to model a simplified full scale model mine, details a sensitivity study examining mesh size for an underground coal mine simulation, and examines gas dispersion parameters to determine the optimal model methods for simulation of tracer gases in underground coal mines. These models can be used to determine how a given tracer gas profile might be generated in a mine or areas of a mine that are not accessible, for example, immediately following a mine disaster. Accurate simulation scenarios can allow for the remote determination of the status of the ventilation network, but the sensitivity of the simulation at mine scale must be carefully examined.
机译:示踪气体是评估矿井通风系统的有效方法,但随着通风参数(例如流路和速度)的变化,其示踪特性可能会大不相同。这项研究利用计算流体动力学(CFD)对简化的全尺寸模型矿井进行建模,详细介绍了一项敏感性研究,该研究检查了地下煤矿模拟的网格大小,并研究了气体扩散参数以确定模拟地下示踪气体的最佳模型方法。煤矿。这些模型可用于确定给定的示踪气体剖面如何在矿井或矿井中无法访问的区域(例如,矿难发生后立即产生)生成。准确的模拟方案可以远程确定通风网络的状态,但是必须仔细检查矿井规模下模拟的敏感性。

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