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Micromixing Models for PDF Simulations of Turbulent Premixed Flames

机译:用于湍流预混火焰PDF模拟的微混合模型

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Transported probability density function (TPDF) methods are attractive for modeling turbulent flames as the highly nonlinear chemical reactions appear in closed form. The ability of the TPDF methods to capture complex phenomena such as extinction and re-ignition has been well demonstrated for turbulent non-premixed flames. However challenges remain when applying the TPDF methods to turbulent premixed flames, for which modeling molecular diffusion is difficult because the local species gradients may be strongly influenced by chemical reactions. The specification of a constant mechanical-to-scalar timescale ratio to relate the scalar mixing timescale to the turbulence timescale is questionable for premixed flames in the flamelet regime. In this paper, recent progress on scalar mixing is reviewed with particular focus on the analysis and modeling of the scalar mixing timescales in turbulent premixed flames using direct numerical simulation (DNS) datasets. The scalar dissipation rate of the progress variable from temporally evolving turbulent lean premixed H2-air flames in the thin reaction zone regime is analyzed using the chemical explosive mode analysis to understand its dependence on combustion modes and transient flame features. Moreover, models for the mixing timescale of the progress variable are discussed, with a focus on a recently developed hybrid mixing timescale model. This work concludes with a discussion on modeling differential diffusion in turbulent premixed flames.
机译:传输概率密度函数(TPDF)方法对于湍流火焰建模非常有吸引力,因为高度非线性的化学反应以封闭形式出现。对于湍流的非预混火焰,TPDF方法捕获复杂现象(如熄灭和重燃)的能力已得到充分证明。但是,当将TPDF方法应用于湍流预混火焰时,仍然存在挑战,因为难以对分子扩散进行建模,因为局部物种梯度可能会受到化学反应的强烈影响。对于小火焰区域中的预混合火焰,将机械混合标量时间比例与标量混合时间标度与湍流时间标度相关联的恒定机械/标量时间标度比的规范存在疑问。在本文中,对标量混合的最新进展进行了综述,特别是使用直接数值模拟(DNS)数据集对湍流预混火焰中标量混合时间尺度的分析和建模。使用化学爆炸模式分析来分析稀薄反应区状态下随时间演变的湍流稀薄预混H2空气火焰的进度变量的标量耗散率,以了解其对燃烧模式和瞬态火焰特征的依赖性。此外,讨论了进度变量的混合时标的模型,重点是最近开发的混合混合时标模型。这项工作以讨论湍流预混火焰中的微分扩散模型为结尾。

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