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首页> 外文期刊>Journal of turbomachinery >Effect of uneven wall heating conditions under different buoyancy numbers for a one side rib-roughened rotating channel
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Effect of uneven wall heating conditions under different buoyancy numbers for a one side rib-roughened rotating channel

机译:一侧肋粗化旋转通道在不同浮力下壁加热条件不均匀的影响

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This paper investigates the impacts of uneven wall heating conditions under different buoyancy numbers on flow field and heat transfer performance of a rotating channel with one side smooth and one side roughened by 45 deg inclined ribs. Parametric Reynoldsaveraged Navier-Stokes (RANS) simulations were conducted under two different wall heating conditions: only ribbed wall heated, as in experiment setup, and all walls heated, under three different buoyancy numbers. Results are compared, when available, with experimental results. Numerical results show that uneven wall heating has only a minor impact on nonrotating cases and very low buoyancy rotating cases. However, it has a significant influence, on both, the heat transfer behavior and the flow field, when the buoyancy number is large. In the ribbed trailing rotating tests, the all walls heated cases show significantly higher heat transfer rate than only the ribbed wall heated cases. The discrepancy is enlarged as buoyancy number increases. The heat transfer in the all walls heated case increases monotonically with the buoyancy number, whereas in the ribbed wall, heated case is slight reduced. In the ribbed leading rotating tests, the heat transfer sensitivity to the heating conditions is not conspicuous, and for both cases, the heat transfer level slightly reduced as the buoyancy number increased. The flow field investigation shows that there is a significant displacement of main flow in the all walls heated cases than only the ribbed wall heated cases under high buoyancy numbers. This displacement is due to the buoyancy effect and responsible for the heat transfer differences in uneven heating problems. According to the results obtained in the paper, we conclude that when buoyancy effects are relevant, the heating settings can play a significant role in the heat transfer mechanisms and therefore in the experimental and numerical results.
机译:本文研究了不同浮力条件下壁面加热条件不均匀对旋转通道的流场和传热性能的影响,该旋转通道的一侧光滑且一侧经45度倾斜肋进行了粗糙化处理。在两种不同的壁加热条件下进行了参数雷诺平均Navier-Stokes(RANS)模拟:在实验设置中仅肋壁加热,而所有壁在三种不同的浮力下加热。将结果(如果有)与实验结果进行比较。数值结果表明,不均匀的壁加热对非旋转情况和旋转浮力非常低的情况影响很小。但是,当浮力数很大时,它对传热行为和流场都有重大影响。在带肋的尾随旋转测试中,与仅带肋的壁加热案例相比,所有带壁加热的案例显示出明显更高的传热率。随着浮力数的增加,差异会扩大。在所有壁加热的情况下,热传递随浮力数单调增加,而在带肋壁的情况下,加热的情况则略有减少。在肋状前导旋转测试中,对加热条件的传热敏感性不明显,并且在两种情况下,随着浮力数的增加,传热水平都会略有降低。流场研究表明,在高浮力的情况下,与仅肋壁加热箱相比,所有壁加热箱中主流都有明显的位移。这种位移是由于浮力作用引起的,并且是不均匀加热问题中传热差异的原因。根据本文获得的结果,我们得出结论,当浮力效应相关时,加热设置可以在传热机理中发挥重要作用,因此在实验和数值结果中也可以发挥重要作用。

著录项

  • 来源
    《Journal of turbomachinery》 |2017年第11期|111011.1-111011.10|共10页
  • 作者

    Wang Zhi; Corral Roque;

  • 作者单位

    School of Aeronautics and Space, Universidad Politecnica de Madrid, Madrid, Spain;

    Advanced Engineering Direction, Industria de TurboPropulsores S.A., Alcobendas, Spain;

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  • 正文语种 eng
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