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Flame propagation behaviors and temperature characteristics in polyethylene dust explosions

机译:聚乙烯粉尘爆炸中的火焰传播行为和温度特性

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To reveal the flame propagation mechanism in polyethylene (PE) dust explosions, the flame propagation behaviors and temperature characteristics of polyethylene dust clouds were experimentally studied in an open duct. Flame propagations in polyethylene dust clouds with different concentrations and particle size distributions were recorded using high-speed photography. The flame temperatures were measured using two fine thermocouples comprising Pt-Pt/Rh13% wires of diameter 25 pm. Because of severe agglomeration, the minimum explosible concentration of polyethylene particles with diameter 75 mu m was higher than that of the particles with diameter 75-100 mu m. It was observed that the flame front gradually became continuous as the particle size increased with the same polyethylene dust concentration of 300 g/m(3). With higher polyethylene dust concentration, the flame front of the polyethylene particles of size 75 mu m could quickly become discrete, and the floating flame appeared early, while the flame front of the 100-212 mu m polyethylene particles transformed from a continuous flame into several independent diffusion flames. It was demonstrated that the flame propagation velocities were not constant, and that they fluctuated owing to the turbulence and expansion of the combustion products. The average flame propagation velocity increased initially, and then decreased with increasing dust concentration. The peak velocity of the polyethylene particles of size 75 gm was 4.79 m/s at a mass density of 300 g/m(3), while the peak velocity of the 75-100 pm particles was 4.55 m/s at a mass density of 400 g/m(3), and that of the 100-212 pm particles was 2.67 m/s at a mass density of 500 g/m(3). In addition, it was found that the maximum flame temperatures of the different polyethylene particles were approximately the same; the temperatures were 1585.4 degrees C, 1511.8 degrees C, and 1508.4 degrees C for the polyethylene particles of sizes of 100-200 mu m, 75 mu m, and 75-100 mu m, respectively. This phenomenon may be caused by the combustion behavior of the molten polyethylene particles. When the dust concentration is increased within the optimum concentration, flame temperature increased with the increase in flame propagation velocity. The flame temperature of the polyethylene particles of size 75 mu m decreased as the flame propagation velocity decreased, while the flame temperature of the 75-100 pm polyethylene particles did not change significantly. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了揭示聚乙烯(PE)粉尘爆炸中的火焰繁殖机制,在开放管道中实验研究了聚乙烯粉尘云的火焰传播行为和温度特性。使用高速摄影记录具有不同浓度和粒度分布的聚乙烯粉尘云中的火焰繁殖。使用包含直径25μm的Pt-Pt / RH13%电线的两个细热电偶测量火焰温度。由于重聚,具有直径颗粒的最小明显浓度。 75 mu m高于直径75-100 mu m的颗粒的75亩。观察到,随着粒径增加,火焰前沿逐渐变得连续,随着300g / m(3)的相同的聚乙烯粉尘浓度增加。具有更高的聚乙烯粉尘浓度,聚乙烯颗粒的尺寸颗粒的火焰前部可以迅速变为离散,并且漂浮火焰早期出现,而100-212μm的火焰前面从连续火焰转化的聚乙烯颗粒进入几个独立的扩散火焰。证明火焰传播速度不是恒定的,并且由于燃烧产物的湍流和膨胀,它们波动。平均火焰传播速度最初增加,然后随着粉尘浓度的增加而降低。聚乙烯颗粒的尺寸颗粒的峰值速度为4.79m / s,质量密度为300g / m(3),而75-100pm颗粒的峰值速度为4.55m / s。质量400g / m(3)的密度,100-212pm颗粒的密度为2.67m / s,质量密度为500g / m(3)。此外,发现不同聚乙烯颗粒的最大火焰温度大致相同;温度为1585.4摄氏度,1511.8℃和1508.4℃,分别为100-200μm,75μm和75-100μm的尺寸的聚乙烯颗粒。这种现象可能是由熔融聚乙烯颗粒的燃烧行为引起的。当粉尘浓度在最佳浓度内增加时,火焰温度随着火焰传播速度的增加而增加。随着火焰传播速度降低,聚乙烯颗粒的致乙烯颗粒的火焰温度随着火焰传播速度而降低而减小,而75-100pM的致火焰温度不会显着变化。 (c)2018 Elsevier B.v.保留所有权利。

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