Experiments demonstrate that wave scale and wind affect breaking dissipation via onset threshold changes, yielding a scaling ΔE_br/E0 proportional to crest asymmetry, steepness, and breaking duration.
Kendall and Popinet, Stéphane , year=
2 Pith papers cite this work. Polarity classification is still indexing.
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Surfactants boost submicron film-drop aerosols but shut down supermicron jet-drop aerosols during collective bubble bursting in lab experiments.
citing papers explorer
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Breaking-induced energy dissipation of surface gravity waves at varying scales and co-flowing wind stresses
Experiments demonstrate that wave scale and wind affect breaking dissipation via onset threshold changes, yielding a scaling ΔE_br/E0 proportional to crest asymmetry, steepness, and breaking duration.
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Surfactant effect on collective bubble bursting and aerosol emission
Surfactants boost submicron film-drop aerosols but shut down supermicron jet-drop aerosols during collective bubble bursting in lab experiments.