Hydrodynamic cavitation through a bio-inspired fast-closing plunger mechanism: experiments and simulations

Experimental and numerical results are reported for the internal and external flow fields evolving in a bio-inspired snapping plunger. The experimental evidence underlines the nature of the dynamic-coupling between the processes taking place inside and outside the device. Two main structures dictate...

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Veröffentlicht in:Bioinspiration & biomimetics 2022-05, Vol.17 (4), p.45001
Hauptverfasser: Godínez, F A, Guzmán, J E V, Salinas-Vázquez, M, Valdés, R, Palacios, C, Chávez, O
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Sprache:eng
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Zusammenfassung:Experimental and numerical results are reported for the internal and external flow fields evolving in a bio-inspired snapping plunger. The experimental evidence underlines the nature of the dynamic-coupling between the processes taking place inside and outside the device. Two main structures dictate the properties of the external flow field: a strong jet which is followed by a vortex ring. Internally, complex patterns of cavitating structures are simultaneously produced in the chamber and the venturi-like conduit. We find the cavitation cycle to be suitably described by the Rayleigh-Plesset model and, thus, proceed to characterize the coupling of both fields in terms of the fluctuations of the velocity. All main parameters, as well as the energy released to the fluid during the collapse, are found to be within the same order-of-magnitude of previously known experimental results for isolated bubbles of comparable size.
ISSN:1748-3182
1748-3190
DOI:10.1088/1748-3190/ac6920