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Experimental study of the characteristics of the flow in the first rows of tube banks

机译:管束第一排流动特性的实验研究

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摘要

This paper presents the experimental study of the flow instabilities in the first rows of tube banks. The study is performed using hot wire anemometry technique in an aerodynamic channel as well as flow visualizations in a water channel. In the wind channel three tube banks with square arrangement and pitch to diameter ratios P/D = 1.26,1.4 and 1.6 were studied. The Reynolds number range for the velocities measurements, computed with the tube diameter and the flow velocity in the narrow gap between tubes was 7 × 10~4-8 × 10~4. Continuous and discrete wavelets were applied to decompose the velocity results, thus allowing the analysis of phenomena in time-frequency domain. Visualizations in a water channel complemented the analysis of the hot wire results. For this purpose, dye was injected in the flow in the water channel with a tube bank with P/D= 1.26. The range of the Reynolds number of the experiments was 3 × 10~4-4 × 10~4. The main results show the presence of instabilities, generated after the second row of the tube bank, which propagates to the interior of the bank. In the resulting flow, the three orthogonal components are equally significant. The three-dimensional behavior of the flow is responsible for a mass redistribution inside the bank that leads to velocity values not expected for the studied geometry, according to the known literature. The resulting flow process can be interpreted as a secondary flow which is characteristic of tube banks.
机译:本文介绍了在第一排管束中流动不稳定性的实验研究。这项研究是通过在空气动力学通道中使用热线风速计技术以及在水通道中进行流动可视化来进行的。在风道中,研究了三个方形布置的管束,节距与直径之比P / D = 1.26、1.4和1.6。用管直径和在管之间的狭窄间隙中的流速计算出的用于速度测量的雷诺数范围为7×10〜4-8×10〜4。应用连续和离散小波分解速度结果,从而可以分析时频域中的现象。水通道的可视化补充了对热线结果的分析。为此,用P / D = 1.26的管束将染料注入水通道的流中。实验的雷诺数范围是3×10〜4-4×10〜4。主要结果表明,在第二排管束之后会产生不稳定性,该不稳定性会传播到管束的内部。在结果流中,三个正交分量同等重要。根据已知的文献,流动的三维行为导致堤岸内部的质量重新分布,从而导致所研究的几何结构没有预期的速度值。由此产生的流动过程可以解释为二次流动,这是管束的特征。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2009年第10期|2022-2034|共13页
  • 作者单位

    Programa de Pos-Graduacao em Engenharia Mecanica - PROMEC, Universidade Federal do Rio Grande do Sul - UFRGS, Rua Sarmento Leite, 425, CEP 90050-170, Porto Alegre, RS, Brazil Fundacao Universidade do Rio Grande - FURG, Rio Grande, RS, Brazil;

    Programa de Pos-Graduacao em Engenharia Mecanica - PROMEC, Universidade Federal do Rio Grande do Sul - UFRGS, Rua Sarmento Leite, 425, CEP 90050-170, Porto Alegre, RS, Brazil Universidade do Vale do Rio dos Sinos - UNISINOS, Sao Leopoldo, RS, Brazil;

    Institute de Pesquisas Hidraulicas - IPH, Universidade Federal do Rio Grande do Sul - UFRGS, Av. Bento Goncalves, 950, CEP 91501-970, Porto Alegre, RS, Brazil;

    Programa de Pos-Graduacao em Engenharia Mecanica - PROMEC, Universidade Federal do Rio Grande do Sul - UFRGS, Rua Sarmento Leite, 425, CEP 90050-170, Porto Alegre, RS, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    a, b: wavelet parameters; c(J, k): wavelet series of approximation coefficients; d(j, k): wavelet series of detail coefficients; D: diameter (m); f: frequency (Hz);

    机译:a;b:小波参数;c(J;k):近似系数的小波序列;d(j;k):细节系数的小波系列;D:直径(m);f:频率(Hz);

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