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Numerical evaluation of weakly turbulent flow patterns of natural convection in a square enclosure with differentially heated side walls

机译:带有不同加热侧壁的方形罩壳中自然对流的弱湍流模式的数值评估

摘要

This article presents the results of numerical evaluation of weakly turbulent natural convection of air in a rectangular enclosure with differentially heated side walls and adiabatic horizontal walls. The turbulence in the natural convection was described by k-ε equations, which were solved by Strang splitting, while average thermal and fluid flow fields were described by statistically averaged equations, which were solved by the projection method PmIII. The combined application of projection method and the Strang splitting characterizes the numerical method in this study. Numerical results for Rayleigh number 1.58 × 109 have revealed reasonable agreement with the existing experimental ones, with some discrepancy attributable to the adiabatic boundary conditions on the horizontal walls. The results are also in good agreement with some published numerical results, particularly at higher Rayleigh numbers. However, comparison with the latest experimental data reveals that the turbulent heat flux model is not quite capable of giving satisfactory temperature distribution.
机译:本文介绍了在带有差热侧壁和绝热水平壁的矩形外壳中,空气的弱湍流自然对流的数值评估结果。自然对流中的湍流由k-ε方程描述,通过Strang分裂求解,而平均热流场和流体流场由统计平均方程描述,通过投影方法PmIII求解。投影方法与Strang分裂相结合的应用是本研究中数值方法的特征。瑞利数为1.58×109的数值结果与现有的实验结果合理吻合,其中一些差异是由于水平壁上的绝热边界条件引起的。结果也与一些已公开的数值结果非常吻合,尤其是在较高的瑞利数下。然而,与最新的实验数据进行比较表明,湍流热通量模型不能完全提供令人满意的温度分布。

著录项

  • 作者

    Niu J; Zhu Z;

  • 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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