High-frequency fluidic oscillator

•New solution for no-moving-part oscillation generation.•Interaction of a wall-attaching air jet with captive steadily rotating vortex.•Constant Strouhal number regime at Reynolds numbers from Re ∼2600 to Re ∼6000.•Oscillating from ∼1.7kHz to ∼5kHz. There is a number of potential applications for no...

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Veröffentlicht in:Sensors and actuators. A. Physical. 2015-10, Vol.234, p.158-167
1. Verfasser: Tesar, Vaclav
Format: Artikel
Sprache:eng
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Zusammenfassung:•New solution for no-moving-part oscillation generation.•Interaction of a wall-attaching air jet with captive steadily rotating vortex.•Constant Strouhal number regime at Reynolds numbers from Re ∼2600 to Re ∼6000.•Oscillating from ∼1.7kHz to ∼5kHz. There is a number of potential applications for no-moving-part fluidic oscillators if they could oscillate in the kilohertz range and yet be of convenient, i.e. not too small size. The solution offered in this paper is based on a new oscillation principle, with stationary rotating vortex inside the chamber bounded by two attachment walls. The response to gradually increasing air flow rate has shown three distinct regimes, of prime importance being the constant Strouhal number regime at small Reynolds numbers from Re ∼2600 to Re ∼6000, oscillating at f=1.7kHz and f∼5kHz, respectively. Even higher frequency f∼8.2kHz was found in another, higher Re regime.
ISSN:0924-4247
1873-3069
DOI:10.1016/j.sna.2015.08.019