首页> 外文期刊>Combustion and Flame >A filtered-laminar-flame PDF sub-grid scale closure for LES of premixed turbulent flames. Part Ⅰ: Formalism and application to a bluff-body burner with differential diffusion
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A filtered-laminar-flame PDF sub-grid scale closure for LES of premixed turbulent flames. Part Ⅰ: Formalism and application to a bluff-body burner with differential diffusion

机译:过滤层流火焰PDF子网格规模的封闭装置,用于LES预混湍流火焰。第一部分:形式主义及其在微分扩散的钝体燃烧器中的应用

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摘要

A sub-grid scale closure for Large Eddy Simulation (LES) of turbulent combustion based on physical-space filtering of laminar flames is discussed. Applied to an unstructured grid, the combustion LES filter size is not fixed in this novel approach devoted to LES with refined meshes, but calibrated depending on the local level of unresolved scalar fluctuations. The context is premixed or stratified flames, the derived model relies on four balance equations for mixture fraction and its variance, and a progress variable and its variance. The proposed formalism is based on a presumed probability density function (PDF) derived from the filtered flames. Closures for the terms of the equations that are unresolved over LES grids are achieved through the PDF. The method uses flamelet tabulated detailed chemistry and is first applied to the simulation of laminar flames (1D and 2D) over various grids for validation, before simulating a turbulent burner studied experimentally by Sweeney et al. (2012). Since this burner also features differential diffusion effects, the numerical model is modified to account for accumulation of carbon in the recirculation zone behind the bluff-body. A differential diffusion number based on the gradient of residence times is proposed, in an attempt to globally quantify differential diffusion effects in burners.
机译:讨论了基于层流火焰物理空间过滤的湍流燃烧大涡模拟(LES)的子网格规模闭合。应用于非结构化网格时,燃烧LES过滤器的大小在采用精制网格的LES的这种新颖方法中并不固定,而是根据未解决的标量波动的局部水平进行校准。上下文是预混合火焰或分层火焰,导出的模型依赖于四个比例方程来确定混合物分数及其方差,以及进度变量及其方差。拟议的形式主义基于从过滤后的火焰得出的假定概率密度函数(PDF)。 LES网格上未解决的方程式项的闭合可通过PDF来实现。该方法使用小火焰表格化的详细化学方法,首先被用于模拟各种格栅上的层流火焰(一维和二维),以进行验证,然后模拟由Sweeney等人进行实验研究的湍流燃烧器。 (2012)。由于该燃烧器还具有微分扩散效应,因此对数值模型进行了修改,以考虑在钝体后面的再循环区内积碳。提出了基于停留时间梯度的差分扩散数,以试图全局量化燃烧器中的差分扩散效应。

著录项

  • 来源
    《Combustion and Flame》 |2014年第7期|1756-1774|共19页
  • 作者单位

    CORIA - CNRS, Normandie Universite, INSA de Rouen, Technopole du Madrillet, BP 8, 76801 Saint-Etienne-du-Rouvray, France;

    CORIA - CNRS, Normandie Universite, INSA de Rouen, Technopole du Madrillet, BP 8, 76801 Saint-Etienne-du-Rouvray, France;

    CORIA - CNRS, Normandie Universite, INSA de Rouen, Technopole du Madrillet, BP 8, 76801 Saint-Etienne-du-Rouvray, France;

    CORIA - CNRS, Normandie Universite, INSA de Rouen, Technopole du Madrillet, BP 8, 76801 Saint-Etienne-du-Rouvray, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Large Eddy Simulation; Flame filtering; Turbulent combustion; Tabulated chemistry; Differential diffusion;

    机译:大涡模拟火焰过滤;湍流燃烧;列表化学;差异扩散;

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