תקציר
We explore the thermal field related to the self-propulsion of floating liquid marbles filled with aqueous ethanol. Cherenkov-like thermal waves arising from self-propulsion are registered. The opening angle of the thermal field Cherenkov triangle is governed by the inter-relation between the velocity of self-propulsion and the phase velocity of the capillary waves. The self-propulsion is driven by soluto-capillarity accompanied by thermo-capillarity. A semiquantitative analysis of the effect is presented. The empirical selection rule for capillary waves responsible for the mass, momentum, and heat transfer is outlined. The soluto-capillarity leads to much stronger spatial variations of the surface tension than the thermo-capillarity.
| שפה מקורית | אנגלית |
|---|---|
| עמודים (מ-עד) | 695-699 |
| מספר עמודים | 5 |
| כתב עת | Journal of Physical Chemistry B |
| כרך | 124 |
| מספר גיליון | 4 |
| מזהי עצם דיגיטלי (DOIs) | |
| סטטוס פרסום | פורסם - 30 ינו׳ 2020 |
טביעת אצבע
להלן מוצגים תחומי המחקר של הפרסום 'Cherenkov-Like Surface Thermal Waves Emerging from Self-Propulsion of a Liquid Marble'. יחד הם יוצרים טביעת אצבע ייחודית.פורמט ציטוט ביבליוגרפי
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