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Numerical study of fire spread using the level-set method with large eddy simulation incorporating detailed chemical kinetics gas-phase combustion model

机译:结合详细的化学动力学气相燃烧模型,采用大涡模拟的水平集法对火势蔓延进行数值研究

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A fire code has been developed for the purpose of modelling wildland fires via Large Eddy Simulation (LES) and the use of the level-set approach to track the flame front. Detailed chemical kinetics have been considered via the strained laminar flamelet approach for the combustion process which included the consideration of the yields of toxic volatiles such as CO, CO2 and soot production. Numerical simulations have been validated against an experimental study on the fire spread on a pine needle board under different slope angles. Peak temperatures and occurrence times during the propagation process were predicted with an overall average error of 11% and 3% respectively. This demonstrates that the flaming behaviour could be well predicted under different slope conditions. By incorporating the level set with the gas phase models, information including temperature field, toxic volatiles and soot particle concentrations can be realised in comparison to empirical fire spread models. (C) 2017 Elsevier B.V. All rights reserved.
机译:已经开发了一种防火规范,目的是通过大型涡流模拟(LES)来模拟野火,并使用水平集方法来跟踪火焰前沿。已通过应变层流小火焰方法对燃烧过程进行了详细的化学动力学研究,其中包括考虑有毒挥发物(如CO,CO2和烟灰的产生)的产率。数值模拟已经通过对不同倾斜角度下松木针板上火势蔓延的实验研究进行了验证。预测传播过程中的峰值温度和出现时间,总体平均误差分别为11%和3%。这表明在不同的斜坡条件下可以很好地预测燃烧行为。通过将水平集与气相模型合并,与经验性火灾蔓延模型相比,可以实现包括温度场,有毒挥发物和烟尘颗粒浓度在内的信息。 (C)2017 Elsevier B.V.保留所有权利。

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