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Reduction in Aeolian Tone for a Laminar Flow Past a D-Shaped Cylinder Using Arc-Shaped Splitter Plates

  • Bo Luo
  • , Xiangyi Chen
  • , Wuli Chu
  • , Kyle Jiang
  • , Qiao Chen
  • , Guoliang Qin
  • Xi'an Jiaotong University
  • Tsinghua University
  • University of Birmingham

Research output: Contribution to journalArticlepeer-review

Abstract

This investigation is to address the aerodynamic noise generated from laminar flow over a D-shaped cylinder at a low Reynolds number (Re). Proposed is a novel assembly of arc-shaped splitter plates to effectively reduce the aeolian tone for the D-shaped cylinder. The two-dimensional flow field is simulated at an Re of 160 to investigate the mechanism of reducing the sound of the arc-shaped plates. The radiated sound has been predicted by Ffowcs Williams and Hawkings (FW-H) acoustic analogy. To verify calculations, the predicted results of a circular cylinder have been compared with the data in the literature. The results reveal that the introduction of the arc plates decreases the lift and drag fluctuations as well as the vortex shedding frequency in comparison with the no-arc plate case. The pressure and velocity fluctuations in the wake zone are reduced by the arc plates due to vortex shedding suppression. The application of the arc plates shows an effective control of sound, leading to a maximum reduction in sound pressure level (SPL) by almost 34 dB.

Original languageEnglish
Article number321
JournalAerospace
Volume13
Issue number4
DOIs
StatePublished - Apr 2026

Keywords

  • D-shaped cylinder
  • aeroacoustics
  • reduction in sound
  • splitter plate
  • vortex shedding suppression

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