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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Modeling of Dissipation Element Statistics in Turbulent Non-Premixed Jet Flames
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Modeling of Dissipation Element Statistics in Turbulent Non-Premixed Jet Flames

机译:APS-000TH流体动力学APS划分年会 - 事件 - 湍流非预混喷射火焰耗散元素统计的建模

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The dissipation element (DE) analysis is a method for analyzing and compartmentalizing turbulent scalar fields. DEs can be described by two parameters, namely the Euclidean distance $ell$ between their extremal points and the scalar difference in the respective points $Deltaphi$. The joint probability density function (jPDF) of these two parameters $P(Deltaphi,ell)$ is expected to suffice for a statistical reconstruction of the scalar field. In addition, reacting scalars show a strong correlation with these DE parameters in both premixed and non-premixed flames.Normalized DE statistics show a remarkable invariance towards changes in Reynolds numbers. This feature of DE statistics was exploited in a Boltzmann-type evolution equation based model for the probability density function (PDF) of the distance between the extremal points $P(ell)$ in isotropic turbulence.Later, this model was extended for the jPDF $P(Deltaphi,ell)$ and then adapted for the use in free shear flows. The effect of heat release on the scalar scales and DE statistics is investigated and an extended model for non-premixed jet flames is introduced, which accounts for the presence of chemical reactions. This new model is validated against a series of DNS of temporally evolving jet flames.
机译:耗散元件(DE)分析是一种分析和分区湍流标量场的方法。 DES可以用两个参数描述,即欧几里德距离$ $ $ $ $之间的极端点和相应点$ deltaphi $的标量差异。这两种参数的联合概率密度函数(JPDF)预计会足以满足标量场的统计重建。此外,反应标量在预混合和未预混的火焰中显示出与这些DE参数的强烈相关性.Normalized de统计数据显示出令人显着的不变性朝着雷诺数的变化。在极端点$ P(ell)$ P(ell)在各向同性湍流之间的距离的概率密度函数(PDF)的基于概率密度函数(PDF)中的这种特征被利用.later,该模型为JPDF扩展了$ p(deltaphi,ell)$,然后适用于自由剪切流动。研究了热释放对标量尺度和DE统计的影响,并介绍了非预混喷射火焰的扩展模型,其占化学反应的存在。该新模型针对一系列DNS的时间上不断发展的喷射火焰验证。

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