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管道中鋯粉云火焰傳播的溫度與速度特性

Flame temperature and propagation speed characteristics of zirconium dust cloud flame propagation in pipelines

  • 摘要: 粉末狀的鋯金屬不僅燃燒速度快,而且燃燒釋放出的熱量非常高,作為高能燃料被廣泛應用在航天和軍工領域.鋯金屬以粉塵云的形態燃燒時,大量微小懸浮鋯顆粒燃燒會形成具有一定面積的火焰,采用實驗方法研究鋯粉云火焰在豎直管道中的溫度和速度特性.研究結果表明,熱電偶處的鋯粉云最高火焰溫度與瞬間火焰傳播速度有相同變化趨勢,都隨鋯粉云質量濃度增加先增大后減小.當鋯粉云質量濃度為0.625 kg·m-3時,出現最高火焰溫度,可達1777.81℃,在此條件下管道中最快火焰傳播速度可達39.7 m·s-1.當質量濃度超過0.625 kg·m-3后,熱電偶處的鋯粉云最高火焰溫度與瞬間火焰傳播速度都會降低,主要是由于富燃料燃燒、管道中氧氣不足而導致顆粒不能完全燃燒.實驗得到了不同質量濃度鋯粉云的最高火焰溫度值與最快火焰傳播速度.

     

    Abstract: Zirconium powder is widely applied as high-energy fuel for it has not only a faster burning speed but also a stronger burning heat. Flame comes into being from the combustion of zirconium dust cloud with a lot of zirconium particles suspending in the air. A transient flame propagation experimental system was established to study the flame temperature and flame propagation speed characteristics of zirconium dust cloud in a vertical pipeline. The results indicate that the maximum flame temperature and the maximum flame propagation speed of zirconium dust cloud have the same changing trend at thermocouple positions, i. e., both their values increase firstly and then decrease with the increasing concentration of zirconium dust cloud. The maximum flame temperature reaches 1777.81℃and the maximum flame propagation speed is up to 39.7 m·s-1 when the concentration of zirconium dust cloud at 0.625 kg·m-3. But when the concentration exceeds 0.625kg·m-3, both the maximum flame temperature and the maximum flame propagation speed decrease. The main reason is that zirconium particles occur incompletely burning owing to rich fuel combustion in the pipeline.

     

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