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Flow-induced vibrations of two side-by-side circular cylinders at low Reynolds numbers

机译:在低雷诺数下的两个并排圆柱的流动诱导的振动

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摘要

Flow-induced vibrations of two side-by-side circular cylinders are numerically studied using the immersed boundary method for Reynolds numbers of 60-200. The two cylinders are constrained to vibrate only in the transverse direction. The center-to-center spacing ratio (s/D) is in the range 2.0-5.0, and the reduced velocity (U-r) is in the range 2.0-10.0. The smallest increments for s/D and U-r are 0.02 and 0.01, respectively. It was found that the vibration amplitudes, mean position shifts, lift and drag forces, spectral frequencies, and phase lags between the lift and displacement are significantly influenced by s/D and U-r, supported by (a) a wider lock-in region compared to the case of a single cylinder, (b) emergence of asymmetric vibration where the amplitudes of two cylinders are not identical, (c) the phase jump between the lift and displacement resulting from multiple harmonic frequencies, and (d) a significant drop in mean position shift accompanied by the changes in the frequency or wake pattern. Furthermore, the influences of the spacing ratio, Reynolds number, blockage ratio, and mass ratio, on asymmetric vibration with single-sided hysteresis (AV-I), are examined in detail. The AV-I with double-sided hysteresis was confirmed for the first time when the cylinder mass ratio is larger than 5.0. Published under license by AIP Publishing.
机译:使用雷诺数为60-200的雷诺数的浸没边界方法,使用浸没的边界方法进行数值研究两个并排圆柱的流动诱导的振动。两个气缸仅被约束以仅在横向方向上振动。中心到中心间距比(S / D)在2.0-5.0的范围内,速度降低(U-R)在2.0-10.0的范围内。 S / D和U-R的最小增量分别为0.02和0.01。发现振动幅度,平均位置偏移,升力和拖曳力,升力和位移之间的频谱频率和相位滞后受到S / D和UR的显着影响,由(a)相比,由更广泛的锁定区域支持对于单个气缸的情况,(b)出现不对称振动的,其中两个汽缸的幅度不相同,(c)升力和由多谐波频率产生的升力和位移之间的相位跳跃,(d)(d)显着下降平均位置偏移伴随着频率或唤醒模式的变化。此外,详细研究了间距比,雷诺数,阻塞比和质量比的影响,与单面滞后(AV-1)进行不对称振动。当圆柱质量比大于5.0时,首次确认具有双面滞后的AV-1。通过AIP发布在许可证下发布。

著录项

  • 来源
    《Physics of fluids》 |2020年第2期|共18页
  • 作者单位

    Tianjin Univ State Key Lab Hydraul Engn Simulat &

    Safety Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Hydraul Engn Simulat &

    Safety Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Hydraul Engn Simulat &

    Safety Tianjin 300072 Peoples R China;

    Univ Western Australia Sch Civil Environm &

    Min Engn 35 Stirling Highway Crawley WA 6009 Australia;

    Tianjin Univ State Key Lab Hydraul Engn Simulat &

    Safety Tianjin 300072 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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