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A term-by-term direct numerical simulation validation study of the multi-environment conditional probability-density-function model for turbulent reacting flows

机译:湍流反应多环境条件概率密度函数模型的逐项直接数值模拟验证研究

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摘要

The multi-environment conditional probability-density-function (MECPDF) approach for modeling extinction and re-ignition in turbulent nonpremixed reacting flows in analyzed. A unique derivation of the model is given, which makes use of numerical Gaussian quadrature in addition to physical assumptions. The new derivation offers insight into the physical meaning of model terms and offers a more rigorous method for model validation. The assumptions required to close the dissipation terms are validated term by term using data from direct numerical simulations of an inert and a reacting scalar in decaying isotropic turbulence. Results show convergence of the numerical quadrature with an increasing number of quadrature points. Also, good agreement is shown for the physical model assumptions required to close the mixed dissipation and the progress-variable dissipation terms. The MECPDF methods is also demonstrated to offer the flexibility to incorporate either micromixing or otherwise more sophisticated models for the mixing between regions of the flow that exhibit differing degrees of extinction.
机译:用于分析湍流非预混反应流中的熄灭和重燃的多环境条件概率密度函数(MECPDF)方法。给出了模型的唯一推导,该推导除了物理假设之外还利用了数字高斯正交。新的推导提供了对模型项的物理含义的洞察力,并为模型验证提供了更严格的方法。使用耗散的各向同性湍流中的惰性和反应性标量的直接数值模拟数据,逐项验证了关闭耗散项所需的假设。结果表明,随着正交点数量的增加,数值正交函数收敛。此外,对于关闭混合耗散和进度可变耗散项所需的物理模型假设也显示出良好的一致性。还证明了MECPDF方法具有灵活性,可以结合微混合或其他更复杂的模型来显示不同消光程度的流动区域之间的混合。

著录项

  • 作者

    Smith S. T.; Fox Rodney O.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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