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An explicit algebraic Reynolds stress and heat flux model for incompressible turbulence : Part I non-isothermal flow

机译:不可压缩湍流的显式代数雷诺应力和热通量模型:第一部分非等温流动

摘要

Tensor representation theory is used to derive an explicit algebraic model that consists of an explicit algebraic stress model (EASM) and an explicit algebraic heat flux model (EAHFM) for two-dimensional (2-D) incompressible non-isothermal turbulent flows. The representation methodology used for the heat flux vector is adapted from that used for the polynomial representation of the Reynolds stress anisotropy tensor. Since the methodology is based on the formation of invariants from either vector or tensor basis sets, it is possible to derive explicit polynomial vector expansions for the heat flux vector. The resulting EAHFM is necessarily coupled with the turbulent velocity field through an EASM for the Reynolds stress anisotropy. An EASM has previously been derived by Jongen and Gatski [10]. Therefore, it is used in conjunction with the derived EAHFM to form the explicit algebraic model for incompressible 2-D flows. This explicit algebraic model is analyzed and compared with previous formulations including its ability to approximate the commonly accepted value for the turbulent Prandtl number. The effect of pressure-scrambling vector model calibration on predictive performance is also assessed. Finally, the explicit algebraic model is validated against a 2-D homogeneous shear flow with a variety of thermal gradients.
机译:张量表示理论用于推导一个显式代数模型,该模型由二维(2-D)不可压缩非等温湍流的显式代数应力模型(EASM)和显式代数热通量模型(EAHFM)组成。用于热通量矢量的表示方法与用于雷诺应力各向异性张量的多项式表示的方法相适应。由于该方法基于矢量或张量基集的不变量的形成,因此可以为热通量矢量导出显式多项式矢量展开。对于雷诺应力各向异性,所得的EAHFM必须通过EASM与湍流场耦合。 EASM以前是由Jongen和Gatski提出的[10]。因此,它与导出的EAHFM结合使用以形成不可压缩的二维流的显式代数模型。分析该显式代数模型,并将其与以前的公式进行比较,包括能够近似湍流普朗特数的公认值的能力。还评估了加扰矢量模型校准对预测性能的影响。最后,针对具有多种热梯度的二维均质切变流,验证了显式代数模型。

著录项

  • 作者

    So RMC; Jin LH; Gatski TB;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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