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首页> 外文期刊>International Journal of Wildland Fire >On the existence of a steady state regime for slope and wind driven fires
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On the existence of a steady state regime for slope and wind driven fires

机译:关于斜坡和风力引发火灾的稳态机制的存在

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Forest fire behaviour analysis and prediction is based on the assumption that for a given set of boundary conditions a steady-state of fire propagation exists with a well-defined rate of spread. The evolution of a fire front for linear and point ignited fires is analysed and it is shown that, even in nominally uniform and permanent conditions, the rate of spread of the head fire does not remain constant in the general case of slope- and wind-driven fires due to joint convection and radiation effects. The basic case of a linear fire front without slope and without wind is one of the few cases for which the rate of spread is well defined and remains constant. If there is slope or wind in point ignition fires, the rate of spread of the head fire tends to increase while for linear ignition fires the contrary happens. It is shown that convective effects induced by the fire for steep slope terrain can produce the so-called 'blow-up' effect even in the absence of any other special atmospheric conditions. Therefore the definition of rate of spread of a fire and its evaluation from laboratory and field experiments is strongly questioned.
机译:森林火灾行为的分析和预测基于这样的假设:对于给定的一组边界条件,存在着具有明确定义的扩散速率的火灾传播的稳态。分析了线性点火和点点火的火前锋的演变,结果表明,即使在名义上均匀且永久的条件下,一般在倾斜和风向情况下,顶头火的蔓延率也不会保持恒定。关节对流和辐射效应导致火灾。没有坡度和没有风的线性火锋的基本情况是为数不多的情况,其蔓延速度得到了很好的定义并保持恒定。如果点点火着火时有斜坡或风,则头部火灾的蔓延率趋于增加,而线性点火着火则相反。结果表明,即使在没有其他特殊大气条件的情况下,由大火引发的对陡坡地形的对流效应也可以产生所谓的“爆破”效应。因此,对火势蔓延速率的定义及其在实验室和野外实验中的评估提出了强烈的质疑。

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