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首页> 外文期刊>International Journal of Wildland Fire >Modelling firebrand transport in wildfires using HIGRAD/FIRETEC.
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Modelling firebrand transport in wildfires using HIGRAD/FIRETEC.

机译:使用HIGRAD / FIRETEC对野火中的火标运输进行建模。

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摘要

Firebrand transport is studied for disc and cylindrical firebrands by modelling their trajectories with a coupled-physics fire model, HIGRAD/FIRETEC. Through HIGRAD/FIRETEC simulations, the size of possible firebrands and travelled distances are analysed to assess spot ignition hazard. Trajectories modelled with and without the assumption that the firebrands' relative velocities always equal their terminal velocities are. Various models for the flight and combustion of disc- and cylindrical-shaped firebrands are evaluated. Eight simulations are performed with surface fuel fires and four simulations are performed with combined surface and canopy fuels. Firebrand trajectories without terminal velocity are larger than those from models with terminal velocity. Discs travel further than cylinders, as discs are aerodynamically more favourable. Thin discs burning on their faces and tall cylinders burning around their circumference have shorter lifetimes than thin discs burning from their circumference or longer cylinders burning from their ends. Firebrands from canopy fires, with larger size and potential to ignite recipient fuel, travel further than firebrands from surface fires. In the simulations, which included a line fire ignition in homogeneous fuels on flat terrain, the firebrand launching patterns are very heterogeneous, and the trajectories and landing patterns are dominated by the coupled fire-atmosphere behaviour.
机译:通过使用耦合物理火灾模型HIGRAD / FIRETEC对圆盘和圆柱状火星的轨迹进行建模,研究了火星运输。通过HIGRAD / FIRETEC模拟,分析了可能的火星大小和行进距离,以评估点着火危险。在假定和不假定火品牌的相对速度始终等于其最终速度的情况下对轨迹进行建模。评估了盘形和圆柱形火种飞行和燃烧的各种模型。对地面燃料着火进行了八次模拟,对地面燃料和冠层混合燃料进行了四次模拟。没有终极速度的Firebrand轨迹要比有终极速度的模型大。圆盘比气缸走得更远,因为圆盘在空气动力学方面更有利。与在圆周上燃烧的薄盘或从两端燃烧的长圆柱相比,在其表面燃烧的薄盘和在其圆周上燃烧的高圆柱体的寿命短。冠层火产生的火星比地面火产生的火星传播的范围更大,并且具有点燃受助燃料的潜力。在模拟中,包括在平坦地形上以均质燃料进行的线火点火,火印的发射模式非常不均一,并且轨迹和着陆模式由耦合的火-气行为主导。

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