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FLAME SPREAD ACROSS SHALLOW POOLS IN MODULATED OPPOSED AIR FLOW IN NARROW TUBE

机译:窄管中经过调节的相反气流中,火焰在整个浅池中扩散

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The effect of forced, opposed air flow on flame spread across shallow n-butanol pools in a narrow tube was studied experimentally. The flame spread was accompanied by pulsations, whose amplitude depended on the opposed air velocity. Dependences of the average flume speed on temperature and the opposed air velocity were obtained. The average flame speed was found to be independent of the liquid depth ahead of the flame within the experimental error. Fourier analysis has shown there are natural frequencies of pulsating of the flame. The effects of modulating frequency of forced, opposed air flow on average flame speed was studied experimentally. Response of the flame to the modulation of the opposed air velocity depends on the modulating frequency. If the modulating frequency is more than the natural frequency of pulsations of the flame then the average flame speed depends on time; at first the average flame speed increases and then gradually the value of speed comes back to the value without modulation. If frequency is close to natural frequencies of flame pulsations then the average flame speed increases.
机译:实验研究了强制反向气流对窄管中浅正丁醇池中火焰蔓延的影响。火焰蔓延伴随着脉动,脉动的幅度取决于相对的空气速度。获得了平均水槽速度对温度和相对空气速度的依赖性。发现平均火焰速度与实验误差范围内的火焰前方液体深度无关。傅立叶分析表明存在自然的火焰脉动频率。实验研究了强迫,反向气流的调节频率对平均火焰速度的影响。火焰对相反空气速度的调制的响应取决于调制频率。如果调制频率大于火焰脉动的固有频率,则平均火焰速度取决于时间;否则,平均火焰速度将取决于时间。首先,平均火焰速度增加,然后逐渐将速度值恢复为无调制值。如果频率接近火焰脉动的固有频率,则平均火焰速度会增加。

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