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An SMLD Joint PDF Model for Turbulent Non-Premixed Combustion Using the Flamelet Progress-Variable Approach

机译:基于小波进度可变方法的湍流非预混燃烧的SMLD联合PDF模型

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This paper provides an improved flamelet/progress variable (FPV) model for the simulation of turbulent combustion, employing the statistically most likely distribution (SMLD) approach for the joint probability density function (PDF) of the mixture fraction, Z, and of the progress parameter, I >. Steady-state FPV models are built presuming the functional shape of the joint PDF of Z and I > in order to evaluate Favre-averages of thermodynamic quantities. The mixture fraction is widely assumed to behave as a passive scalar with a mono-modal behaviour modelled by a beta-distribution. Moreover, under the hypothesis that Z and I > are statistically independent, the joint PDF coincides with the product of the two marginal PDFs. In this work we discuss these two constitutive hypotheses. The proposed model evaluates the most probable joint distribution of Z and I >, relaxing some crucial assumption on their statistical behaviour. This provides a more general model in the context of FPV approach and an effective tool to verify the adequateness of widely used hypotheses. The model is validated versus experimental data of well-known test cases, namely, the Sandia flames. The results are also compared with those obtained by the standard FPV approach, analysing the role of the PDF functional form on turbulent combustion simulations.
机译:本文为湍流燃烧的模拟提供了改进的小火焰/进度变量(FPV)模型,采用了统计上最可能分布(SMLD)的方法来计算混合物分数Z和过程的联合概率密度函数(PDF)参数,I>。建立稳态FPV模型以假定Z和I>的联合PDF的功能形状,以便评估热力学量的Favre平均。广泛假设混合分数表现为被动标量,具有通过β分布建模的单峰行为。此外,在Z和I>在统计上独立的假设下,联合PDF与两个边际PDF的乘积一致。在这项工作中,我们讨论了这两个本构假设。提出的模型评估Z和I>的最可能联合分布,从而放宽了对其统计行为的一些关键假设。这在FPV方法的背景下提供了更通用的模型,并且是验证广泛使用的假设是否适当的有效工具。该模型相对于著名测试案例(桑迪亚火焰)的实验数据进行了验证。还将结果与通过标准FPV方法获得的结果进行了比较,分析了PDF功能形式在湍流燃烧模拟中的作用。

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