首页> 外文期刊>Fire Safety Journal >Analysis of methodologies for calculating the heat release rates of mining vehicle fires in underground mines
【24h】

Analysis of methodologies for calculating the heat release rates of mining vehicle fires in underground mines

机译:地下矿山火灾中车辆火灾热释放率的计算方法分析

获取原文
获取原文并翻译 | 示例
       

摘要

Four different methodologies for calculating the ignition of different components on a mining vehicle in a mine drift were analysed. The results were compared with two full-scale fire experiments on mining vehicles. The four different methods are based on physical relations for fire spread between combustible components of the mining vehicles. The first two methods use a critical heat flux as ignition criterion while the other two methods use an ignition temperature. A sensitivity analysis was performed and the most influencing parameter of the methods was further analyzed. The calculated results were compared with the measured results from the experiments. The two methodologies applying an ignition temperature criterion were ruled out at as the surface temperatures of all fuel components never achieved the corresponding ignition temperatures. For the two methods applying a critical heat flux criterion it was found that the expression not including a flame radiation term was not suitable as it was found that the flame radiation played an important part with respect to spread mechanisms. The expression containing a flame radiation term was found to come very close to the observed ignition times, except in the case of the left, rear tyre of the drilling rig where it predicted a much higher ignition time than the one observed. The difference is unclear and would have to be investigated further. It was also found that the surface heat losses had none effect on the output results and could therefore be neglected in the calculations. In the case of the wheel loader the calculated heat release rate curves did not match the measured curve as well as in the case of the drilling rig. The difficulty in this case consists of accurately predicting the mechanical failure of a component - in this case a suction hose - that would initiate the very significant hydraulic oil pool fire.
机译:分析了四种用于计算矿山漂移中采矿车辆上不同部件点火的方法。将结果与采矿车上的两个全面火灾实验进行了比较。四种不同的方法基于矿山车辆可燃部件之间火势蔓延的物理关系。前两种方法使用临界热通量作为点火标准,而其他两种方法使用点火温度。进行了敏感性分析,并进一步分析了该方法中影响最大的参数。将计算结果与实验测量结果进行比较。由于所有燃料成分的表面温度从未达到相应的点火温度,因此排除了采用点火温度标准的两种方法。对于应用临界热通量准则的两种方法,发现不包括火焰辐射项的表达式不合适,因为发现火焰辐射在扩散机理方面起着重要的作用。发现包含火焰辐射项的表述与观察到的点火时间非常接近,除了在钻机的左后轮胎的情况下,它预测的点火时间比观察到的要长得多。差异尚不清楚,必须进一步调查。还发现表面热损失对输出结果没有影响,因此在计算中可以忽略不计。在轮式装载机的情况下,以及在钻机的情况下,计算出的放热率曲线与实测曲线都不匹配。这种情况下的困难包括准确预测部件的机械故障-在这种情况下为抽吸软管-会引发非常大的液压油池着火。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号