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A discrete dynamical model for flame spread over combustible flat solid surfaces subject to pyrolysis with charring―an application example to upward flame spread

机译:燃烧过程中焦炭热解的可燃平坦固体表面火焰蔓延的离散动力学模型-向上火焰蔓延的应用实例

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摘要

A discrete dynamical approach for modelling the early phase of the spread of a flame over a pyrolysing surface of a charring solid is developed. The discrete dynamical model (DDM) consists of a two-dimensional upward spread model coupled with a one-dimensional pyrolysis submodel. One numerical example of applying the DDM to the upward flame spread on a wooden board is provided. The goal of this numerical simulation was to investigate the possibility that the model could describe the transient behaviour of the spread. A qualitative comparison with one test from the literature is performed. In the numerical example, the following features are qualitatively captured: evolution of the pyrolysing area on the surface, transient pyrolysis depth, transient 'flame spread patterns' (two-dimensional contour maps of mass flux of gasified fuel, of surface temperature and of pyrolysis depth) and the total mass loss rate.
机译:开发了一种离散的动力学方法,用于模拟在炭化固体的热解表面上火焰传播的早期阶段。离散动力学模型(DDM)由二维向上扩展模型和一维热解子模型组成。提供了将DDM应用于在木板上蔓延的向上火焰的一个数值示例。此数值模拟的目的是研究模型可以描述扩展的瞬态行为的可能性。使用文献中的一项测试进行了定性比较。在数值示例中,定性地捕获了以下特征:表面上热解区域的演变,瞬时热解深度,瞬时“火焰蔓延模式”(气化燃料质量通量,表面温度和热解的二维轮廓图)深度)和总质量损失率。

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