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Characterization of a mine fire using atmospheric monitoring system sensor data

机译:使用大气监测系统传感器数据表征地雷的火灾

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摘要

Atmospheric monitoring systems (AMS) have been widely used in underground coal mines in the United States for the detection of fire in the belt entry and the monitoring of other ventilation-related parameters such as airflow velocity and methane concentration in specific mine locations. In addition to an AMS being able to detect a mine fire, the AMS data have the potential to provide fire characteristic information such as fire growth — in terms of heat release rate — and exact fire location. Such information is critical in making decisions regarding fire-fighting strategies, underground personnel evacuation and optimal escape routes. In this study, a methodology was developed to calculate the fire heat release rate using AMS sensor data for carbon monoxide concentration, carbon dioxide concentration and airflow velocity based on the theory of heat and species transfer in ventilation airflow. Full-scale mine fire experiments were then conducted in the Pittsburgh Mining Research Division’s Safety Research Coal Mine using an AMS with different fire sources. Sensor data collected from the experiments were used to calculate the heat release rates of the fires using this methodology. The calculated heat release rate was compared with the value determined from the mass loss rate of the combustible material using a digital load cell. The experimental results show that the heat release rate of a mine fire can be calculated using AMS sensor data with reasonable accuracy.
机译:大气监测系统(AMS)已在美国的地下煤矿中广泛使用,用于检测安全带入口处的火灾以及监测其他与通风有关的参数,例如特定矿井位置中的气流速度和甲烷浓度。除了AMS能够检测到地雷之外,AMS数据还具有提供火灾特征信息的潜力,例如火灾的增长(根据放热率)和确切的火灾位置。这些信息对于制定消防策略,地下人员疏散和最佳逃生路线至关重要。在这项研究中,根据通风气流中热量和物质传递的理论,开发了一种方法,该方法使用AMS传感器数据针对一氧化碳浓度,二氧化碳浓度和气流速度来计算火灾的放热率。然后,在匹兹堡矿业研究部的安全研究煤矿中使用具有不同火源的AMS进行了大规模的矿场火灾实验。从实验中收集的传感器数据用于使用这种方法计算火灾的放热率。使用数字式称重传感器将计算出的放热率与根据可燃材料的质量损失率确定的值进行比较。实验结果表明,可以使用AMS传感器数据以合理的精度计算地雷的热释放率。

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  • 期刊名称 other
  • 作者

    L. Yuan; R.A. Thomas; L. Zhou;

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  • 年(卷),期 -1(69),6
  • 年度 -1
  • 页码 57–62
  • 总页数 19
  • 原文格式 PDF
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