Tears of Wine

ORAL

Abstract

‘Tears of wine’ refer to the rows of wine-drops that spontaneously emerge within a glass of strong wine. Evaporation-driven Marangoni flows near the meniscus of water-alcohol mixtures drive liquid upward forming a thin liquid film, and a rim forms near the moving contact line. Eventually the rim undergoes an instability, thus forming drops, that roll back into the bulk reservoir as the so-called tears of wine. Most studies in literature argue the evaporation of more volatile, lower surface tension component (alcohol) results in a concentration-dependent surface tension gradient that drives the climbing flow within the thin film. Though it is well-known that evaporative cooling can create temperature gradients that could provide additional contribution to the climbing flows, the role of thermocapillary flows is less well-understood. Furthermore, the patterns, flows and instabilities that occur near the rim, and determine the size and periodicity of tears, are not well-studied. Using experiments and theory, we visualize and analyze the formation and growth of tears of wine. The sliding drops, released from the rim towards the bulk reservoir, show oscillations and a cascade of fascinating flows that are analyzed for the first time.

Presenters

  • Vivek Sharma

    Chemical Engineering, University of Illinois - Chicago, Chemical Engineering, Univ of Illinois - Chicago

Authors

  • Prerana Rathore

    Chemical Engineering, Univ of Illinois - Chicago

  • Chenxian Xu

    Chemical Engineering, Univ of Illinois - Chicago

  • Vivek Sharma

    Chemical Engineering, University of Illinois - Chicago, Chemical Engineering, Univ of Illinois - Chicago