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Field investigation to measure airflow velocities of a shuttle car using independent routes at a central Appalachian underground coal mine

机译:使用独立路线在Appalachian地下煤矿中央路线测量穿梭车的气流速度的现场调查

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Canopy air curtains on roof bolting machines have been proven to protect miners from respirable dust, preventing their overexposure to dust. Another desired application for canopy air curtains is in the compartments of shuttle cars. The challenges faced in developing the design of canopy air curtains for shuttle cars include mine ventilation rates in tandem with the shuttle car tram speeds. The resulting cab airspeeds may exceed 182 m/min (600 fpm), as found in the present study conducted in a central Appalachian underground coal mine by U.S. National Institute for Occupational Safety and Health (NIOSH) researchers. Prior research and laboratory testing had indicated that successfully protecting a miner in high air velocities is difficult, because the clean air from the canopy air curtain is unable to penetrate through the high-velocity mine air. In this study, the dust concentrations to which a shuttle car operator was exposed were measured, and air velocities experienced by the operator were measured as well using a recording vane anemometer. The results indicate that the highest exposure to respirable dust, 2.22 mg/m3, occurred when the shuttle car was loading at the continuous miner, where the average airspeed was 48 m/min (157 fpm). While tramming, the operator was exposed to 0.77 mg/m3 of respirable dust with an average airspeed of 62 m/min (203 fpm). This study indicates that a canopy air curtain system can be designed to greatly reduce an operator's exposure to respirable dust by providing clean air to the operator, as the majority of the operator's dust exposure occurs in air velocities slower than 61 m/min (200 fpm).
机译:屋顶螺栓机上的天篷空气窗帘已被证明是保护矿工免受可吸入灰尘的影响,防止其过度灰尘。用于树冠空气窗帘的另一个所需应用位于梭车的隔间中。开发穿梭汽车冠层空气窗帘设计的挑战包括串联的矿井通风率,带有班车车电车速度。所得到的驾驶室空速可能超过182米/分钟(600 FPM),如美国国家职业安全和健康(Niosh)研究人员中的Appalachian地下煤矿中的本研究中发现。现有的研究和实验室测试表明,在高空气速度中成功保护矿工是困难的,因为来自遮篷空气幕的清洁空气无法穿透高速矿井空气。在该研究中,测量了梭子轿厢操作员的灰尘浓度,并使用记录叶片风速计测量操作员经历的空气速度。结果表明,在连续矿工加载梭子时,发生了最高暴露于可吸入的粉尘,2.22mg / m3,平均空速为48米/分钟(157 fpm)。在碰撞时,操作员暴露于0.77mg / m 3的可吸入粉尘,平均空速为62米/分钟(203fpm)。本研究表明,通过向操作员提供清洁空气,可以设计平台空气幕系统通过向操作员提供清洁空气来大大减少操作者对可吸入灰尘的暴露,因为在空气速度较慢的速度暴露于61米/分钟(200fpm )。

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