Numerical modeling of internal flow in a fluidic oscillator

  • Pandey, Raunak Jung
  • Kim, Kwang-Yong
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초록

A numerical investigation of a fluidic oscillator was performed to understand the unsteady internal flow field and geometrical effects on the performance using three-dimensional unsteady Reynolds-averaged Navier-Stokes equations. Effects of the two geometrical parameters, i.e., the inlet width of the mixing chamber and outlet throat width, on peak jet velocity ratio at the exit and pressure drop through the oscillator, were evaluated. The unsteady simulation was performed using shear stress transport turbulence model with air as working fluid at Reynolds number 30000. Computational results showed good qualitative and quantitative agreements with available experimental results for the flow structure and frequency of the oscillating jet. Results of the parametric study suggested that the inlet width affected significantly the flow in the fluidic oscillator, while effects of the throat width on the performance parameters were not remarkable.

키워드

Fluidic oscillatorPeak jet velocity ratioPressure dropParametric studyUnsteady Reynolds-averaged Navier-Stokes equationsPERFORMANCESEPARATIONJETS
제목
Numerical modeling of internal flow in a fluidic oscillator
저자
Pandey, Raunak JungKim, Kwang-Yong
DOI
10.1007/s12206-018-0205-x
발행일
2018-03
유형
Article; Proceedings Paper
저널명
Journal of Mechanical Science and Technology
32
3
페이지
1041 ~ 1048