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Extension of the eddy dissipation concept and smoke point soot model to the LES frame for fire simulations

机译:将涡流消散概念和烟点烟尘模型扩展到LES框架以进行火灾模拟

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摘要

The eddy dissipation concept (EDC) is extended to the large eddy simulation (LES) framework following the same logic of the turbulent energy cascade as originally proposed by Magnussen but taking into account the distinctive roles of the sub-grid scale turbulence. A series of structure levels are assumed to exist under the filter width "A" in the turbulent energy cascade which spans from the Kolmogorov to the integral scale. The total kinetic energy and its dissipation rate are expressed using the sub-grid scale (SGS) quantities. Assuming infinitely fast chemistry, the filtered reaction rate in the EDC is controlled by the turbulent mixing rate between the fine structures at Kolmogorov scales and the surrounding fluids. In order to extend the laminar smoke point soot model (SPSM) to LES, the partially stirred reactor (PaSR) concept is used to relate the filtered soot formation rate to the soot chemical time scale, which is assumed to be proportional to the laminar smoke point height (SPH) of the fuel. The turbulent mixing time scale for soot is computed as a geometric mean of the Kolmogorov and integral time scale. A new soot oxidation model is also developed by imitating the gas phase combustion within EDC. The newly extended EDC and SPSM are implemented in the open source FireFOAM solver and tested with two medium scale heptane and toluene pool fires with promising results.
机译:涡流消散概念(EDC)扩展到了大涡流模拟(LES)框架,遵循了Magnussen最初提出的湍流能量级联的相同逻辑,但考虑到了子网格尺度湍流的独特作用。假定在从Kolmogorov到积分标度的湍流能量级联中的过滤器宽度“ A”下存在一系列结构能级。总动能及其耗散率使用子网格规模(SGS)量表示。假设化学反应无限快,EDC中过滤后的反应速率受Kolmogorov规模的精细结构与周围流体之间的湍流混合速率控制。为了将层流烟尘点烟灰模型(SPSM)扩展到LES,使用部分搅拌反应器(PaSR)概念将过滤后的烟灰形成速率与烟灰化学时间尺度相关联,假定烟灰化学时间尺度与层流烟尘成比例燃料的点高(SPH)。烟灰的湍流混合时间标度被计算为Kolmogorov和积分时间标度的几何平均值。通过模仿EDC内的气相燃烧,还开发了一种新的烟尘氧化模型。新扩展的EDC和SPSM在开源FireFOAM求解器中实现,并用两种中等规模的庚烷和甲苯池火进行了测试,结果令人满意。

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  • 来源
    《Fire Safety Journal》 |2014年第2期|12-26|共15页
  • 作者单位

    Centre for Fire and Explosion Studies, School of Mechanical and Automotive Engineering, Kingston University, Friars Avenue, London SW15 3DW, UK;

    School of Engineering, University of Warwick, Library Road, Coventry CV4 7AL, UK;

    Centre for Fire and Explosion Studies, School of Mechanical and Automotive Engineering, Kingston University, Friars Avenue, London SW15 3DW, UK;

    Centre for Fire and Explosion Studies, School of Mechanical and Automotive Engineering, Kingston University, Friars Avenue, London SW15 3DW, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Eddy dissipation concept; Smoke point soot model; Urge eddy simulation; FireFOAM; Pool fire;

    机译:涡流消散概念;烟点烟灰模型;敦促涡流模拟;FireFOAM;池火;

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