Numerical simulations of gravitational planar liquid sheet flows, interacting with unconfined gaseous environments located on both sides of the liquid phase, are performed through Volume-of-Fluid (VOF) technique. The global unsteady dynamics of the non-parallel flow is analyzed by perturbing the initial steady configuration by means of a Gaussian bump in the transverse velocity component of relatively very small amplitude, thereby exciting sinuous modes. Thanks to the development of a theoretical linear one-dimensional model, more physical insights are gained on the flow system. It is found that surface tension plays a stabilizing role for the gravitational sheet, and for relatively high values of density ratio rr of gaseous-to-liquid phases it becomes unstable. An analogy is shown between the global unstable behavior exhibited by the liquid sheet as rr increases, and the shear-induced global instability found by Tammisola et al. [“Surface tension-induced global instability of planar jets and wakes”, J. Fluid Mech. 713, 632–658 (2012)] for planar jet and wake flows of two immiscible fluids in the presence of surface tension.

UNSTEADY DYNAMICS OF FREE-INTERFACE GRAVITATIONAL LIQUID SHEET FLOWS / DELLA PIA, Alessandro; Chiatto, Matteo; DE LUCA, Luigi. - (2021), pp. 1-12. (Intervento presentato al convegno 14th World Congress on Computational Mechanics (WCCM) tenutosi a Virtual nel 11-15 January 2021).

UNSTEADY DYNAMICS OF FREE-INTERFACE GRAVITATIONAL LIQUID SHEET FLOWS

Alessandro Della Pia
Primo
;
Matteo Chiatto
Secondo
;
Luigi de Luca
Ultimo
2021

Abstract

Numerical simulations of gravitational planar liquid sheet flows, interacting with unconfined gaseous environments located on both sides of the liquid phase, are performed through Volume-of-Fluid (VOF) technique. The global unsteady dynamics of the non-parallel flow is analyzed by perturbing the initial steady configuration by means of a Gaussian bump in the transverse velocity component of relatively very small amplitude, thereby exciting sinuous modes. Thanks to the development of a theoretical linear one-dimensional model, more physical insights are gained on the flow system. It is found that surface tension plays a stabilizing role for the gravitational sheet, and for relatively high values of density ratio rr of gaseous-to-liquid phases it becomes unstable. An analogy is shown between the global unstable behavior exhibited by the liquid sheet as rr increases, and the shear-induced global instability found by Tammisola et al. [“Surface tension-induced global instability of planar jets and wakes”, J. Fluid Mech. 713, 632–658 (2012)] for planar jet and wake flows of two immiscible fluids in the presence of surface tension.
2021
UNSTEADY DYNAMICS OF FREE-INTERFACE GRAVITATIONAL LIQUID SHEET FLOWS / DELLA PIA, Alessandro; Chiatto, Matteo; DE LUCA, Luigi. - (2021), pp. 1-12. (Intervento presentato al convegno 14th World Congress on Computational Mechanics (WCCM) tenutosi a Virtual nel 11-15 January 2021).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/847263
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