Enhanced bubble growth near an advancing solidification front
arXiv:2402.06409 · doi:10.1017/jfm.2024.777
Abstract
Frozen water might appear opaque since gas bubbles can get trapped in the ice during the freezing process. They nucleate and then grow near the advancing solidification front, due to the formation of a gas supersaturation region in its vicinity. A delicate interplay between the rate of mass transfer and the rate of freezing dictates the final shapes and sizes of the entrapped gas bubbles. In this work, we experimentally and numerically investigate the initial growth of such gas bubbles that nucleate and grow near the advancing ice front. We show that the initial growth of these bubbles is governed by diffusion and is enhanced due to a combination of the presence of the background gas concentration gradient and the motion of the approaching front. Additionally, we recast the problem into that of mass transfer to a moving spherical object in a homogeneous concentration field, finding good agreement between our experimental data and the existing scaling relations for that latter problem. Lastly, we address how fluid flow around the bubble might further affect this growth and qualitatively explore this through numerical simulations.
19 pages, 10 figures
References in corpus (16)
- Freezing as a path to build complex composites
- Freeze-Casting of Porous Ceramics: A Review of Current Achievements and Issues
- Ice-templated porous alumina structures
- Universality of Tip Singularity Formation in Freezing Water Drops
- Five-dimensional imaging of freezing emulsions with solute effects
- A bouncing oil droplet in a stratified liquid and its sudden death
- Role of natural convection in the dissolution of sessile droplets
- Periodic bouncing of a plasmonic bubble in a binary liquid by competing solutal and thermal Marangoni forces
- Marangoni instability of a drop in a stably stratified liquid
- Stress accumulation around ice in a temperature gradient
- Contact Line Catch Up by Growing Ice Crystals
- Marangoni instabilities of drops of different viscosities in stratified liquids
- Bifurcation tracking on moving meshes and with consideration of azimuthal symmetry breaking instabilities
- Thin-Film-Mediated Deformation of Droplet during Cryopreservation
- On the rising and sinking motion of bouncing oil drops in strongly stratified liquids
- Freezing-induced topological transition of double-emulsion