Back to Search Start Over

Flow field of impinging sweeping jets

Authors :
Gennaro Cardone
Gerardo Paolillo
Carlo Salvatore Greco
Tommaso Astarita
Paolillo, G.
Greco, C. S.
Cardone, G.
Astarita, T.
Paolillo, Gerardo
Greco, Carlo Salvatore
Cardone, Gennaro
Astarita, Tommaso
Source :
14th International Symposium on Particle Image Velocimetry. 1
Publication Year :
2021
Publisher :
Paul V. Galvin Library/Illinois Institute of Technology, 2021.

Abstract

Sweeping jets are oscillating jets generated by fluidic oscillators, i.e., devices designed to produce an oscillation of the flow without the use of any moving parts (Raghu, 2013). A typical configuration of such devices consists of an expansion chamber connected to a high-pressure supply via a converging nozzle and provided with feedback channels. The oscillating motion in the expansion chamber is triggered by an inherent flow instability and sustained by the flow rate across the feedback channels. Recently, sweeping jets have been studied in flow control applications for noise reduction, separation and circulation control over airfoils, control of resonant cavity oscillations and deflection of jets. The advantageous features of fluidic actuators, among which are the wide range of operating frequencies (up to kHz with meso-scale) and the distributed momentum addition, have also stimulated an increasing interest in their application to electronics cooling. Several recent studies on the convective heat transfer from impinging sweeping jets (e.g., Hossain et al., 2018; Park et al., 2018) have shown that, compared to conventional round jets, they offer higher cooling rates with better uniformity at least for small jet-to-plate spacings.

Details

ISSN :
27697576
Volume :
1
Database :
OpenAIRE
Journal :
14th International Symposium on Particle Image Velocimetry
Accession number :
edsair.doi.dedup.....1447eeb9d3101e4a72d18d12ab3fa4fc