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Experimental research on dynamic concentration distribution for combustible dust based on ultrasonic-electric hybrid detection

机译:基于超声电动杂交检测的可燃粉尘动态浓度分布的试验研究

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摘要

The concentration distribution of combustible dust determines thermal intensity distribution during an explosion. Current measurements for dust concentration have their particular limitations. Targeting this, we proposed an "ultrasonic-electric" hybrid detection system and a fusion model. We deployed 12 of the ultrasonic-electric hybrid systems in orthogonal arrays to comprehensively observe the clouds. First, the ultrasonic-electric hybrid detection systems obtained concentration data in real time, and those data were calculated by fusion model. Then, the clouds and their concentrations changing with time were depicted. We analyzed those trends and found certain patterns in them. Our approach can provide a fast, accurate way to detect concentrations of dynamic and complex dust. Finally, the corresponding relationship between the dust concentration distribution and its explosive heat intensity distribution is obtained. The results show that the thermal distribution of combustible dust at a concentration of 20-120 g/m~3 is proportional to the concentration. This is important for preventing dust explosions and reducing the thermal intensity of explosions.
机译:可燃粉尘的浓度分布在爆炸过程中确定热强度分布。灰尘浓度的电流测量具有其特定的限制。瞄准这一点,我们提出了“超声波电动”混合检测系统和融合模型。我们在正交阵列中部署了12个超声波电动混合系统,以全面地观察云。首先,超声波电动混合检测系统实时获得浓度数据,并通过融合模型计算这些数据。然后,描绘了云层及其随时间变化的浓度。我们分析了这些趋势,并发现了某些模式。我们的方法可以提供一种快速,准确的方法来检测动态和复杂灰尘的浓度。最后,获得了粉尘浓度分布与其爆炸性热强度分布之间的相应关系。结果表明,浓度为20-120g / m〜3的可燃粉尘的热分布与浓度成比例。这对于防止粉尘爆炸并降低爆炸的热度很重要。

著录项

  • 来源
    《Heat and mass transfer》 |2020年第5期|1673-1684|共12页
  • 作者单位

    Beijing Institute of Technology School of Mechatronical Engineering Beijing 100081 China;

    Beijing Institute of Technology School of Mechatronical Engineering Beijing 100081 China;

    Key Laboratory of Modern Measurement & Control Technology of Education Beijing Information Science and Technology University Beijing 100192 China;

    Beijing Institute of Aerospace Control Devices Beijing 100081 China;

    Beijing Institute of Technology School of Mechatronical Engineering Beijing 100081 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Concentration detection; Ultrasonic-electric hybrid detection; Data fusion; Explosion heat distribution;

    机译:浓度检测;超声电动杂交检测;数据融合;爆炸热分布;

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