煤炭工程 ›› 2019, Vol. 51 ›› Issue (2): 87-91.doi: 10.11799/ce201902020

• 研究探讨 • 上一篇    下一篇

点火位置对独头巷道瓦斯爆炸火焰参数影响实验??

解北京,王亮,严正   

  1. 中国矿业大学(北京)
  • 收稿日期:2018-05-04 修回日期:2018-06-27 出版日期:2019-02-20 发布日期:2019-03-19
  • 通讯作者: 解北京 E-mail:bjxie1984@163.com

Influence of ignition location on flame parameters of gas explosion in single heading tunnel

  • Received:2018-05-04 Revised:2018-06-27 Online:2019-02-20 Published:2019-03-19

摘要: 在实验室模拟独头巷道的小型方形管道内,采用微细热电偶、离子电流传感器和火焰光信号传感器,测试了闭口终端处和距离闭口终端200mm、400mm、600mm、800mm位置处五种点火情况下甲烷-空气预混火焰锋面传播过程中温度、离子电流强度及速度的变化情况。实验结果表明:闭口终端点火时,火焰锋面向开口端传播过程中各截面的温度先减小后增大|距离闭口终端200mm、400mm、600mm、800mm处点火时,火焰传播过程中点火处的温度均最高,火焰向闭口端传播过程中温度有逐渐降低的趋势。不同位置点火时,火焰向开口端传播速度是闭口端传播速度的20倍左右|闭口终端处、距离闭口终端200mm处点火火焰向开口方向传播过程中,火焰传播速度均呈现先增大后减小再增大的趋势|火焰向闭口方向传播过程中,火焰传播速度较小,但有逐渐增大的趋势|离子电流峰值的变化趋势与火焰传播的速度基本吻合,说明火焰向开口端传播比向闭口端传播更剧烈。

关键词: 瓦斯爆炸, 火焰温度, 火焰速度, 离子强度

Abstract: In the laboratory simulation of a small square pipe with a single head, a micro thermocouple, an ion current sensor and a flame optical signal sensor were used to test the change of temperature, ion current intensity and velocity during the two conditions of the ignition of the top and the 400mm position at the top of the distance. The experimental results show that: When the ignition occurs at the top 400mm position, the temperature is higher during the propagation of the flame to the closed end, and the highest temperature in the pipe is greater than the maximum temperature of 623K at the top of the ignition. The velocity of the flame propagating to the two sides of the pipe produces a difference of several times, the maximum velocity to the closed end is only 0.89m/s, and the speed of spreading to the outlet reaches 20 m/s, less than the speed 33.33m/s at the exit at the top of the ignition. The peak value of ion current propagating to the closed end is 0.03μA, while the peak value of ion current reaches 0.38μA at the top ignition. At the top of the ignition, the velocity of the flame spread in the pipe and the peak value of the ion current are large. It shows that the combustion reaction of the premixed gas flame at the top ignition is more intense.

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