首页> 外文会议>ASME/JSME thermal engineering joint conference >EXPERIMENTAL STUDY ON CHARACTERISTICS OF METHANE-COAL DUST MIXTURE EXPLOSION AND ITS MITIGATION BY ULTRA-FINE WATER MIST
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EXPERIMENTAL STUDY ON CHARACTERISTICS OF METHANE-COAL DUST MIXTURE EXPLOSION AND ITS MITIGATION BY ULTRA-FINE WATER MIST

机译:超细水雾爆炸煤粉粉尘爆炸特性及其减灾试验研究

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This paper presents the results of experimental investigation on characteristics of methane-coal dust mixture explosion and its mitigation by ultra-fine water mist. Four E12-1-K type fast response thermocouples, two PCB piezotronic pressure transducers were used to obtain the temperature and pressure history of methane-coal dust mixture explosion and its mitigation by ultra-fine water mist, while a GigaView High-speed camera was used to visualize the processes. Different methane concentrations, coal dust concentrations, diameters of coal particles and volumes of ultra-fine water mist were considered for their effects on methane-coal dust mixture explosion. The temperature of explosion flame, the maximum explosion overpressure, the maximum rate of overpressure rise, and the critical volume flux of ultra-fine water mist were experimentally determined. The results show that the characteristics of the methane-coal dust mixture explosion and the mitigating efficiency by ultra fine water mist are influenced by the methane concentration, the coal dust concentration, the coal dust diameter and the applied volume flux of ultra-fine water mist. For example, both the maximum explosion overpressure and rate of overpressure rise increased with increasing of coal dust concentrations and methane concentrations. All of the test cases indicate that ultra-fine water mist can mitigate the mixture explosion and suppress the flame propagation efficiently from the images record by high speed video camera.
机译:本文介绍了关于甲烷煤尘爆炸混合物,并通过超细水雾其缓解的特性实验研究的结果。四E12-1-K型快速响应的热电偶中,两个PCB piezotronic压力换能器被用来获取甲烷煤尘混合物爆炸的温度和压力的历史和通过超细水雾其减轻,而GigaView高速照相机是用于可视化的处理。不同的甲烷浓度,煤尘浓度,直径煤颗粒和超细水雾的体积考虑其对甲烷的煤粉尘混合物爆炸效果。爆炸火焰的温度,最大爆压,超压上升的最大速率,和超细水雾的临界体积通量实验测定。结果表明,甲烷煤尘混合物爆炸和由超细水雾的减轻效率的特性由甲烷浓度,煤尘浓度,煤尘直径和超细水雾的所施加的体积流量的影响。例如,无论是最大爆压和过压上升率与煤尘浓度和甲烷浓度的增加而增加。所有的测试案例表明超细水雾可以减轻该混合物爆炸和从通过高速视频摄像机的图像记录有效地抑制火焰传播。

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