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An Experimental Study of Intermittent Heating Frequencies From Wind-Driven Flames

机译:风力驱动火焰间歇加热频率的实验研究

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An experimental study was conducted to understand the intermittent heating behavior downstream of a gaseous line burner under forced flow conditions. While previous studies have addressed time-averaged properties, here measurements of the flame location and intermittent heat flux profile help to give a time-dependent picture of downstream heating from the flame, useful for understanding wind-driven flame spread. Two frequencies are extracted from experiments, the maximum flame forward pulsation frequency in the direction of the wind, which helps describe the motion of the flame, and the local flame-fuel contact frequency in the flame region, which is useful in calculating the actual heat flux that can be received by the unburnt fuel via direct flame contact. The forward pulsation frequency is obtained through video analysis using a variable interval time average (VITA) method. Scaling analysis indicates that the flame forward pulsation frequency varies as a power-law function of the Froude number and fire heat-release rate, . For the local flame-fuel contact frequency, it is found that the non-dimensional flame-fuel contact frequency remains approximately constant before the local Rix reaches 1, e.g., attached flames. When Rix>1, decreases with local as Rix flames lift up. A piece-wise function was proposed to predict the local flame-fuel contact frequency including the two Rix scenarios. Information from this study helps to shed light on the intermittent behavior of flames under wind, which may be a critical factor in explaining the mechanisms of forward flame spread in wildland and other similar wind-driven fires.
机译:进行实验研究以在强制流动条件下了解气态燃烧器下游的间歇加热行为。虽然先前的研究具有解决时间平均性质,但在这里测量火焰位置和间歇热通量曲线有助于提供从火焰的下游加热的时间图像,可用于理解风力驱动的火焰扩散。从实验中提取两个频率,风中的最大火焰前向脉动频率在风的方向上有助于描述火焰区域中的火焰的运动,并且在火焰区域中的局部火焰 - 燃料接触频率,这对于计算实际热量是有用的通过直接火焰接触可以由Unburnt燃料接收的焊剂。通过使用可变间隔时间平均(VITA)方法通过视频分析获得前向脉动频率。缩放分析表明,火焰前进脉动频率随着FRoude号和火热释放率的电源律函数而变化。对于局部火焰燃料接触频率,发现非尺寸火焰 - 燃料接触频率在局部rix达到1,例如连接的火焰之前保持近似恒定。当rix> 1时,随着rix火焰升起,用本地减少。提出了一种典型的功能,以预测包括两个rix情景的局部火焰燃料接触频率。本研究的信息有助于揭示风中的火焰的间歇性行为,这可能是解释野外蔓延和其他类似风力火灾的前向火焰机制的关键因素。

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