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The correction method of air velocity transducer in underground mine roadway

机译:地下矿井巷道空气速度传感器的校正方法

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As the air velocity is unevenly distributed in the underground mine roadway section, the hanging position and correction method of air velocity transducer have seriously affect the monitoring accuracy. In order to improve the air velocity monitoring accuracy, this paper ascertains 4 main impacted factors including section shape, section height, section width and average value of air velocity. Combining with the computational fluid simulation technology, the orthogonal test method and the dimensionless approach, the distribution of air velocity are analyzed in the vertical midline of the roadway section. The applications show that the best hanging position of air velocity transducer is the 0.8 times relative height from the bottom border, and the correction formula is ν;' = 0.9573 ν; + 0.0027. It can provide the protection for realizing the automation of mine ventilation optimization and control.
机译:由于空气速度不均匀地分布在地下矿井道路部分中,空气速度传感器的悬挂位置和校正方法严重影响了监控精度。为了提高空气速度监测精度,本文确定了4个主要影响因素,包括截面形状,截面高度,截面宽度和空气速度平均值。结合计算流体仿真技术,正交试验方法和无量纲方法,在巷道部分的垂直中线分析了空气速度的分布。应用表明,空气速度传感器的最佳悬挂位置是底部边界的相对高度的0.8倍,校正公式是ν;' = 0.9573‰; + 0.0027。它可以为实现矿井通风优化和控制的自动化提供保护。

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