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Entropy Filtered Density Function for Large Eddy Simulation of Turbulent Reacting Flows.

机译:湍流反应流大涡模拟的熵滤波密度函数。

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摘要

Analysis of local entropy generation is an effective means to optimize the performance of energy and combustion systems by minimizing the irreversibilities in transport processes. Large eddy simulation (LES) is employed to describe entropy transport and generation in turbulent reacting flows. The entropy transport equation in LES contains several unclosed terms. These are the subgrid scale (SGS) entropy flux and entropy generation caused by irreversible processes: heat conduction, mass diffusion, chemical reaction and viscous dissipation. The SGS effects are taken into account using a novel methodology based on the filtered density function (FDF). This methodology, entitled entropy FDF (En-FDF), is developed and utilized in the form of joint entropy-velocity-scalar-turbulent frequency FDF and the marginal scalar-entropy FDF, both of which contain the chemical reaction effects in a closed form. The former constitutes the most comprehensive form of the En-FDF and provides closure for all the unclosed filtered moments. This methodology is applied for LES of a turbulent shear layer involving transport of passive scalars. Predictions show favor- able agreements with the data generated by direct numerical simulation (DNS) of the same layer. The marginal En-FDF accounts for entropy generation effects as well as scalar and entropy statistics. This methodology is applied to a turbulent nonpremixed jet flame (Sandia Flame D) and predictions are validated against experimental data. In both flows, sources of irreversibility are predicted and analyzed.
机译:通过最小化运输过程中的不可逆性,分析局部熵产生是优化能源和燃烧系统性能的有效手段。大涡模拟(LES)用于描述湍流反应流中的熵传递和产生。 LES中的熵传输方程包含几个未封闭的项。这些是由不可逆过程(热传导,质量扩散,化学反应和粘性耗散)引起的亚网格规模(SGS)熵通量和熵生成。使用基于滤波密度函数(FDF)的新颖方法将SGS效果考虑在内。这种名为熵FDF(En-FDF)的方法以联合熵-速度-标量-湍流频率FDF和边际标量-熵FDF的形式开发和使用,它们都包含封闭形式的化学反应效应。前者构成En-FDF的最全面形式,并为所有未闭合的滤波力矩提供闭合。该方法适用于涉及被动标量传输的湍流剪切层的LES。预测显示与同一层的直接数值模拟(DNS)生成的数据具有良好的一致性。边际En-FDF解释了熵产生的影响以及标量和熵统计。该方法应用于湍流的非预混合射流火焰(Sandia Flame D),并根据实验数据验证了预测结果。在这两种流程中,都对不可逆源进行了预测和分析。

著录项

  • 作者

    Safari, Mehdi.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Engineering Mechanical.;Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:22

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