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The importance of fire-atmosphere coupling and boundary-layer turbulence to wildfire spread

机译:火气耦合和边界层湍流对野火蔓延的重要性

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The major source of uncertainty in wildfire behavior prediction is the transient behavior of wildfire due to changes in flow in the fire's environment. The changes in flow are dominated by two factors. The first is the interaction or 'coupling' between the fire and the fire-induced flow. The second is the interaction or 'coupling' between the fire and the ambient flow driven by turbulence due to wind gustiness and eddies in the atmospheric boundary layer (ABL). In the present study, coupled wildfire-atmosphere large-eddy simulations of grassland fires are used to examine the differences in the rate of spread and area burnt by grass fires in two types of ABL, a buoyancy-dominated ABL and a roll-dominated ABL. The simulations show how a buoyancy-dominated ABL affects fire spread, how a roll-dominated ABL affects fire spread, and how fire lines interact with these two different ABL flow types. The simulations also show how important are fire-atmosphere couplings or fire-induced circulations to fire line spread compared with the direct impact of the turbulence in the two different ABLs. The results have implications for operational wildfire behavior prediction. Ultimately, it will be important to use techniques that include an estimate of uncertainty in wildfire behavior forecasts.
机译:野火行为预测中不确定性的主要来源是由于火灾环境中的流量变化而引起的野火的瞬态行为。流量变化受两个因素控制。首先是火与火引起的水流之间的相互作用或“耦合”。第二个是火与大气湍流和大气边界层(ABL)中的涡流驱动的环境流动之间的相互作用或“耦合”。在本研究中,使用野火-大气大涡模拟的草地大火来研究两种类型的ABL(浮力为主的ABL和滚动为主的ABL)的草地大火蔓延速度和燃烧面积的差异。 。模拟显示了浮力为主的ABL如何影响火势蔓延,侧倾为主的ABL如何影响火势蔓延以及火线如何与这两种不同的ABL流类型相互作用。模拟还表明,与两种不同ABL中湍流的直接影响相比,火气耦合或火源环流对火线蔓延的重要性。结果对运行野火行为预测具有影响。最终,使用在野火行为预测中包括不确定性估计的技术将非常重要。

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