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CFD analysis on gas distribution for different scrubber redirection configurations in sump cut

机译:集水槽中不同洗涤塔改向配置下气体分布的CFD分析

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摘要

The National Institute for Occupational Safety and Health’s Office of Mine Safety and Health Research recently developed a series of models using computational fluid dynamics (CFD) to study the gas distribution around a continuous mining machine with various fan-powered flooded bed scrubber discharge configurations. CFD models using Species Transport Model without reactions in FLUENT were constructed to evaluate the redirection of scrubber discharge toward the mining face rather than behind the return curtain. The following scenarios are considered in this study: 100 percent of the discharge redirected back toward the face on the off-curtain side of the continuous miner; 100 percent of the discharge redirected back toward the face, but divided equally to both sides of the machine; and 15 percent of the discharge redirected toward the face on the off-curtain side of the machine, with 85 percent directed into the return. These models were compared against a model with a conventional scrubber discharge, where air is directed away from the face into the return. The CFD models were calibrated and validated based on experimental data and accurately predicted sulfur hexafluoride (SF6) gas levels at four gas monitoring locations. One additional prediction model was simulated to consider a different scrubber discharge angle for the 100 percent redirected, equally divided case. These models identified relatively high gassy areas around the continuous miner, which may not warrant their use in coal mines with medium to high methane liberation rates. This paper describes the methodology used to develop the CFD models, and the validation of the models based on experimental data.
机译:美国国家职业安全与健康研究所矿山安全与健康研究办公室最近开发了一系列模型,其中使用计算流体力学(CFD)研究了具有各种风扇动力淹没床洗涤塔排放配置的连续采矿机周围的气体分布。构造了使用FLUENT中没有反应的物质迁移模型的CFD模型,以评估洗涤塔排出物朝向采矿面而不是返回帘幕后的重定向。在这项研究中考虑了以下情况:连续采矿机的100%排放物被重定向回朝向偏帘侧的工作面; 100%的排出物重新导向面部,但均分到机器的两侧; 15%的排放物重新定向到机器的非帘幕侧的面部,其中85%的排放物被引导到回流口。将这些模型与具有常规洗涤器排放的模型进行了比较,在常规洗涤器排放的情况下,空气从工作面被引导到回流管中。根据实验数据对CFD模型进行了校准和验证,并在四个气体监测位置准确预测了六氟化硫(SF6)气体水平。模拟了一个附加的预测模型,以针对100%重新定向的等分情况考虑不同的洗涤塔排放角度。这些模型确定了连续采矿机周围较高的瓦斯区域,这可能不保证将其用于甲烷释放速率中等至较高的煤矿。本文介绍了用于开发CFD模型的方法,并基于实验数据对模型进行了验证。

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